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COSMIC: exploring the world's knowledge of somatic mutations in human cancer

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COSMIC, the Catalogue Of Somatic Mutations In Cancer (http://cancer.sanger.ac.uk) is the world's largest and most comprehensive resource for exploring the impact of somatic mutations in human cancer. Our latest release (v70; Aug 2014) describes 2 002 811 coding point mutations in over one million tumor samples and across most human genes. To emphasize depth of knowledge on known cancer genes, mutation information is curated manually from the scientific literature, allowing very precise definitions of disease types and patient details. Combination of almost 20 000 published studies gives substantial resolution of how mutations and phenotypes relate in human cancer, providing insights into the stratification of mutations and biomarkers across cancer patient populations. Conversely, our curation of cancer genomes (over 12 000) emphasizes knowledge breadth, driving discovery of unrecognized cancer-driving hotspots and molecular targets. Our high-resolution curation approach is globally unique, giving substantial insight into molecular biomarkers in human oncology. In addition, COSMIC also details more than six million noncoding mutations, 10 534 gene fusions, 61 299 genome rearrangements, 695 504 abnormal copy number segments and 60 119 787 abnormal expression variants. All these types of somatic mutation are annotated to both the human genome and each affected coding gene, then correlated across disease and mutation types.

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  • Research Article
  • Cite Count Icon 1
  • 10.1158/1538-7445.am2015-62
Abstract 62: COSMIC: Combining the world's knowledge of somatic mutation in human cancer
  • Aug 1, 2015
  • Cancer Research
  • Simon A Forbes + 15 more

COSMIC, the Catalogue Of Somatic Mutations In Cancer (http://cancer.sanger.ac.uk) is the world's largest and most comprehensive online resource for exploring the impact of somatic mutations in human cancer. Live since 2004, the 71st release (Nov 2014) describes over 2 million mutations in more than 1 million tumour samples across most human genes. To emphasise depth of knowledge on known cancer genes, mutation information is curated manually from the scientific literature, allowing very precise definitions of disease types and clinically relevant patient details. Combination of over 20,000 published studies gives substantial resolution of how mutations and phenotypes relate in human cancer, providing insights into the stratification of populations and new diseases behind known biomarkers. Conversely, our curation of over 15,000 cancer genome studies emphasises knowledge breadth, driving discovery of new unrecognised cancer-driving hotspots and molecular targets. Our high-resolution curation approach is globally unique, giving substantial insight into molecular biomarkers in human oncology. For example, BRAF is well characterized in skin melanoma, transiently treatable with inhibitors such as Vemurafenib. It is also well known in colorectal cancer, which is largely non-responsive to BRAF inhibitors. COSMIC's unique approach demonstrates the impact of BRAF mutations in much less well-known cancers, for instance, Hairy Cell Leukaemia (89% of samples mutated) and Langerhans Cell Histiocytosis (49%), both of which respond remarkably well to BRAF inhibitors. Converse to skin melanoma, our curations suggest BRAF has a minimal role in Uveal melanoma (6% of Uveal tumors mutated for BRAF), with higher mutation rates in other genes (particularly GNA11, BAP1 and GNAQ), suggesting different mechanisms behind this disease. In addition to describing over two million coding point mutations across cancer, COSMIC also details more than six million non-coding mutations, 10,567 gene fusions, 61,232 genome rearrangements, 702,652 abnormal copy number segments, and more than 6 million abnormal expression variants. All these types of somatic mutation are annotated to both the human genome and each affected coding gene, then correlated across disease and mutation types. As increasing amounts of genetic data are gathered into COSMIC across human cancer, our annotations are beginning to emphasise events with a higher impact in cancer, highlighting the more functional coding mutations and major amplifications and deletions. This concept of high-impact data is being extended across the entire COSMIC system, much more strongly defining genes and mutations which drive oncogenesis. Citation Format: Simon A. Forbes, Dave Beare, Prasad Gunasekaran, Kenric Leung, Charambulos Boutselakis, Minjie Ding, Mingming Jia, Tisham De, Nidhi Bindal, Chai Yin Kok, Sally Bamford, Sari Ward, Charlotte Cole, Jon Teague, Michael R. Stratton, Peter J. Campbell. COSMIC: Combining the world's knowledge of somatic mutation in human cancer. [abstract]. In: Proceedings of the 106th Annual Meeting of the American Association for Cancer Research; 2015 Apr 18-22; Philadelphia, PA. Philadelphia (PA): AACR; Cancer Res 2015;75(15 Suppl):Abstract nr 62. doi:10.1158/1538-7445.AM2015-62

  • Research Article
  • 10.1158/1538-7445.am2014-5326
Abstract 5326: COSMIC: Enhancing the world's knowledge of somatic mutations in human cancer
  • Sep 30, 2014
  • Cancer Research
  • C Boutselakis + 16 more

COSMIC, the Catalogue Of Somatic Mutations In Cancer (http://cancer.sanger.ac.uk) is the world's largest and most comprehensive online resource for exploring the impact of somatic mutations in human cancer. Now running for over 10 years, the 67th release (Oct 2013) describes 1592109 mutations in 947213 tumour samples across 25606 genes. This information is curated manually from the scientific literature, and automatically from genome resequencing consortium data portals. Full curation of the scientific literature provides in-depth understanding of the impact that each gene has in human cancer, and this has been achieved for 127 point-mutated cancer genes, and 185 fusion gene pairs. Curated genes are selected from the Cancer Gene Census (http://cancer.sanger.ac.uk/census), a listing of all genes with substantial evidence implicating them in cancer promotion, currently numbering 513 and updated frequently. The mutations discovered in the re-sequencing of over 8000 tumour genomes are now present in COSMIC (viewable in isolation from the genic curations, http://cancer.sanger.ac.uk/wgs). In addition, the Sanger has now fully exome sequenced 1015 common cancer cell lines, identifying 1146874 coding mutations annotated for functional significance, and this is available exclusively in COSMIC at (http://cancer.sanger.ac.uk/cell_lines). While COSMIC has focused on point mutations and gene fusions, many other mutation mechanisms cause oncogenesis and these are now being integrated. The 67th COSMIC release includes copy number mutations integrated into the database and major web page views. To allow easy graphical examination of this data, copy number information was reduced to ‘gain’ and ‘loss’ annotations for inclusion in histograms and tables, with much more precise detail available with a further click. Copy number data is available in detail for every gene in COSMIC, and also for every tissue. Exploring cancer via COSMIC’s Cancer Browser (http://cancer.sanger.ac.uk/cosmic/browse/tissue), results not just in a plot of the most mutated genes, but now also a circular genome plot summarizing the copy number gains and losses across all the samples from that tumour type, all explorable in more detail via clicks on the pictures. As the genomic data increases in COSMIC, it is becoming more important to qualitatively annotate the information, indicating which is more important or significant to oncogenesis. We are now building systems to better highlight known or putative functional mutations, improving the signal-to-noise ratio of cancer genome resequencing. Citation Format: C Boutselakis, S A. Forbes, P Gunasekaran, M Jia, D Beare, N Bindal, C Y. Kok, K Leung, D Minjie, R Shepherd, S Bamford, S Ward, C Cole, J W. Teague, M Stratton, P Campbell, U McDermott. COSMIC: Enhancing the world's knowledge of somatic mutations in human cancer. [abstract]. In: Proceedings of the 105th Annual Meeting of the American Association for Cancer Research; 2014 Apr 5-9; San Diego, CA. Philadelphia (PA): AACR; Cancer Res 2014;74(19 Suppl):Abstract nr 5326. doi:10.1158/1538-7445.AM2014-5326

  • Front Matter
  • Cite Count Icon 31
  • 10.1152/physiolgenomics.00009.2016
Advancing sports and exercise genomics: moving from hypothesis-driven single study approaches to large multi-omics collaborative science.
  • Jan 26, 2016
  • Physiological Genomics
  • Masashi Tanaka + 2 more

The primary use of the traditional candidate gene approach over the past decades in sports genetics has had limited success in identifying genes associated with elite athletic performance. Advances in high-throughput technologies now permit the application of "omics" (e.g. genomics, transcriptomics, metabolomics, proteomics and epigenomics) approaches to examine the global features of a cell, tissue or organism. "Omics" approaches are being applied with some success to a wide range of pertinent biomedical problems such as cancer diagnosis but also in sports science and sports medicine such as for the identification of biomarkers of trainability or blood doping. There is good evidence to suggest that a combined "omics" solution will greatly facilitate discovery of the genetic influences on sporting performance, training response, injury predisposition and other potential determinants of successful human performance. In this regard, large-scale, collaborative efforts involving well-phenotyped cohorts will be essential for major progress to be made. A recent consensus emerged among 15 research groups active in the field of sports genetics to unite their efforts under one new collaborative initiative named the Athlome Project Consortium. The primary aim of the Athlome Project is to combine resources from individual studies and consortia worldwide to collectively study the genotype and phenotype data available on elite athletes, the adaptation to exercise training (in both human and animal models) and the determinants of exercise-related musculoskeletal injuries. This editorial summarizes the challenges and opportunities facing the Athlome Project Consortium and the field of sports and exercise genomics in general.

  • Research Article
  • 10.1158/1538-7445.am2019-906
Abstract 906: COSMIC: Describing the world’s knowledge of somatic mutations in cancer
  • Jul 1, 2019
  • Cancer Research
  • Simon Andrew Forbes + 23 more

COSMIC, the Catalogue Of Somatic Mutations In Cancer (http://cancer.sanger.ac.uk/cosmic) is a continual effort to integrate all available information on somatic mutations and other molecular alterations causing every form of human cancer. Being the world’s largest and most comprehensive database of somatic mutations in human cancer, it also provides web-based tools for exploration and interpretation of collected data. The content of the database is primarily obtained from the scientific literature by the team of experienced post-doctoral curators and combined with information from online sources, including the TCGA and ICGC. During thorough & exhaustive manual curation, all the available information about mutations and tumor samples (e.g. disease type, demographic data, treatments) are collected, standardized and integrated to allow for both creation of wide virtual cohorts and large-scale studies, as well as precise analysis at the level of a single sample, gene or mutation. The 87th release of COSMIC (Nov 2018) encompasses 5,992,260 coding mutations and 19,574 gene fusions, curated from 1,403,267 cancer samples, including 35,490 whole cancer exomes/genomes, primarily hand-curated data from 26,494 scientific publications. Additionally, COSMIC describes 1,179,545 Copy Number Variants, 9,147,833 gene expression variants, and 7,879,142 differentially methylated CPGs. In addition to this broad database, COSMIC includes a range of specialized projects highlighting specific aspects of cancer in order to emphasize events with a higher impact in disease etiology. This includes the Cancer Gene Census (http://cancer.sanger.ac.uk/census), which defines and describes genes (currently 719) and their dysfunctions driving oncogenesis, and characterizes their impact on hallmarks of cancer. COSMIC3D (http://cancer.sanger.ac.uk/cosmic3d) provides an interactive view of cancer mutations in the context of 3D protein structures, and predicts potential drug-binding sites. Significantly updated 4 times a year, COSMIC is available free-of-charge for academic and non-profit users via COSMIC webpage (http://cancer.sanger.ac.uk/cosmic) or to download through COSMIC downloads (http://cancer.sanger.ac.uk/cosmic/download). Citation Format: Simon Andrew Forbes, david beare, charalampos boutselakis, sally bamford, kate noble, claire rye, john tate, chai yin kok, charlie hathaway, laura ponting, christopher ramshaw, raymund stefancsik, samantha thompson, bhavana harsha, nidhi bindal, shicai wang, steven jupe, helen speedy, celestino creatore, peter fish, sari ward, charlotte cole, elisabeth dawson, zbyslaw sondka. COSMIC: Describing the world’s knowledge of somatic mutations in cancer [abstract]. In: Proceedings of the American Association for Cancer Research Annual Meeting 2019; 2019 Mar 29-Apr 3; Atlanta, GA. Philadelphia (PA): AACR; Cancer Res 2019;79(13 Suppl):Abstract nr 906.

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  • Cite Count Icon 126
  • 10.1186/gb-2011-12-s1-p3
COSMIC: the catalogue of somatic mutations in cancer
  • Jan 1, 2011
  • Genome Biology
  • Nidhi Bindal + 13 more

The Catalogue Of Somatic Mutations In Cancer (COSMIC) [1] is one of the largest repositories of information on somatic mutations in human cancer. The project has been running for more than ten years as part of the Cancer Genome Project (CGP) at the Wellcome Trust Sanger Institute in the UK. The data in COSMIC are curated from a variety of sources, primarily the scientific literature and large international consortia. The project includes information from the CGP, along with data from other consortia such as the International Cancer Genome Consortium and The Cancer Genome Atlas. In addition, COSMIC is regularly updated with the genes highlighted in the Cancer Gene Census, which curates the scientific literature for known cancer genes [2]. With the advent of whole exome and genome sequencing technology, the amount of data in COSMIC is increasing rapidly. The recent COSMIC release (version 53; 18 May 2011) contains 608,042 tumor and cell line samples, annotating 176,856 mutations across 19,439 genes, with 352 full exomes, 43 whole genome rearrangement screens and 4 full genomes now available. The data are updated regularly, with new releases scheduled every two months. COSMIC provides a large number of graphical and tabular views for interpreting and mining the large quantity of information, as well as the facility to export the relevant data in various formats. The website can be navigated in many ways to examine mutation patterns on the basis of genes, samples and phenotypes, which are the main entry points to COSMIC. COSMIC also provides various options to browse the data in a genomic context. Integration with the Ensembl genome browser allows the visualization of full genome annotations, together with COSMIC data, on the GRCh37 genome coordinates. COSMIC also contains its own genome browser, which facilitates data analysis by combining genome-wide gene structures and sequences with rearrangement breakpoints, copy number variations and all somatic substitutions, deletions, insertions and complex gene mutations. The main COSMIC website [1] encompasses all of the available data. However, within COSMIC, the Cancer Cell Line Project [3] is a specialized component, which provides details of the genotyping of almost 800 commonly used cancer cell lines, through the set of known cancer genes. Its focus is to identify driver mutations, or those likely to be implicated in the oncogenesis of each tumor. This information forms the basis for integrating COSMIC with the Genomics of Drug Sensitivity in Cancer project [4], which is a joint effort with the Massachusetts General Hospital [5] to screen this panel of cancer cell lines against potential anticancer therapeutic compounds to investigate correlations between somatic mutations and drug sensitivity. Data on somatic mutations in cancer are being produced at a rapidly increasing rate, and the combined analysis of large distributed datasets is becoming ever more difficult. However, COSMIC curates and standardizes this information in a single database, providing user-friendly browsing tools and analytical functions, thus ensuring its role as a key resource in human cancer genetics.

  • Research Article
  • Cite Count Icon 2
  • 10.1158/1538-7445.am10-93
Abstract 93: COSMIC: The catalogue of somatic mutations in cancer receives full genome variant annotations
  • Apr 15, 2010
  • Cancer Research
  • Simon A Forbes + 13 more

COSMIC, the Catalogue Of Somatic Mutations In Cancer (http://www.sanger.ac.uk/cosmic), is one of the most comprehensive web systems describing the impact of somatic mutations in human cancer. The information is sourced directly from the published scientific literature and the Cancer Genome Project's high throughput sequencing laboratories at the Wellcome Trust Sanger Institute UK (CGP), allowing a high data quality to be maintained. The v44 release (Nov. 2009) contained the curation of 8336 papers covering 71 known cancer genes by point mutation and 30 by gene fusion. The mutation data for all these genes is being maintained up-to-date and new genes are regularly added to this list. Additionally, 4871 genes and 2764 samples have been scrutinized by the CGP laboratories. As cancer genetics moves toward the analysis of whole genomes, COSMIC is being updated to handle and display these data and increase the functionality of the website. With the rapid development of sequencing technologies, the quantity of data that can be put into COSMIC is increasing fast. We have extended our curation process to include large exome-wide candidate gene screens, recently including the first such screen from Sjoblom et al (2006), and the first TCGA screen (2008) with other large scale screening datasets being curated. In addition, whole-genome screens are becoming available with many non-coding variations. From the CGP laboratories, we already have two low-coverage genome rearrangement screens in COSMIC and this will rapidly expand, beginning with the imminent release of rearrangement scans in a set of 24 breast tumours. High-coverage genome analyses are also beginning to become available; with full genome coverage, the majority of somatic mutations in a tumour can be identified and COSMIC is being prepared to receive and display this data. With the inclusion of these new data, the COSMIC website has evolved to allow more easy access to required data. New specialization filters are in place to provide methods to search for subsets of COSMIC data in the usual user-friendly web pages. More extensive investigations can be performed using the new COSMIC Biomart, an industry-standard data mining system allowing access through web pages or programmatic interfaces. As the inclusion of new genomic data accelerates and the systems through which it can be accessed evolve, COSMIC is well placed to remain a central resource in human cancer genetics. Note: This abstract was not presented at the AACR 101st Annual Meeting 2010 because the presenter was unable to attend. Citation Format: {Authors}. {Abstract title} [abstract]. In: Proceedings of the 101st Annual Meeting of the American Association for Cancer Research; 2010 Apr 17-21; Washington, DC. Philadelphia (PA): AACR; Cancer Res 2010;70(8 Suppl):Abstract nr 93.

  • Research Article
  • 10.1158/1538-7445.am2012-3959
Abstract 3959: COSMIC: Mining the world's knowledge on somatic cancer mutations
  • Apr 15, 2012
  • Cancer Research
  • Simon A Forbes + 13 more

COSMIC, the Catalog Of Somatic Mutations In Cancer (www.sanger.ac.uk/cosmic) is a single resource combining much of the available data on somatic mutations in human cancer. This information is obtained from a number of online sources, including the TCGA and ICGC webportals, the IARC p53 database and the Cancer Genome Project, Sanger Institute, UK; this is then combined with information carefully curated from the scientific literature. Over 20,000 genes have been screened in the search for cancer causing mutations, and details have been curated for all of these, resulting in the annotation of 213,615 mutations across 665,763 tumor samples (COSMIC v56, Nov 2011). The Cancer Gene Census lists all known cancer genes and these are prioritized for curation, generating extensive mutation spectra across 107 point-mutated genes and 111 fusion gene pairs. Increasing whole genome/exome data are also available; currently 559 samples detail 2753 genome rearrangements, 21892 coding and 57396 non-coding point mutations. Most importantly, this information is all rigorously maintained and regularly updated. With new releases every two months, COSMIC is very responsive to the scientific literature, detailing all the latest findings. The data in COSMIC can be examined in a number of different ways. The website has been designed to allow easy graphical browsing of the data, with many mining options to filter desired information. A COSMIC genome browser can be used to visualize COSMIC mutations in a genomic context, and a Biomart is available to download datasets federated with external databases. In addition, the complete data is available for free download for offline analysis. The combination of data from multiple sources in COSMIC allows its use as a discovery tool as well as a reference datasource; substantial mining can be performed between mutant genotypes and clinical phenotypes, searching for novel recurrence patterns between tissues, genes and individual variants. Overall, the top mutated gene reported in human cancer is JAK2, with a published mutation rate of 38% (n=76853), however a phenotype correlation suggests a mutation rate of up to 86% in Polycythaemia Vera, 58% in Myelofibrosis and 55% in Essential Thrombocythaemia. Similarly, KRAS with an overall mutation rate of 23% (n=96055) increases to 69% in Pancreatic ductal carcinomas, and a single report suggests a 70% mutation frequency for MED12 in Uterine Leiomyomas (n=225). In addition to these well characterized cancer genes, new whole-genome screens are beginning to identify many more. For instance the TCGA Ovarian exome screen suggested roles for genes such as CSMD3, HMCN1 and USH2A, and combining multiple whole genome screens suggests roles for further new genes such as BAI3 (13% mutated in lung). As yet, novel recurrent mutations are challenging to identify across studies, but rapidly increasing amounts of whole genome data will make COSMIC a key resource in this search for new therapeutic targets. Citation Format: {Authors}. {Abstract title} [abstract]. In: Proceedings of the 103rd Annual Meeting of the American Association for Cancer Research; 2012 Mar 31-Apr 4; Chicago, IL. Philadelphia (PA): AACR; Cancer Res 2012;72(8 Suppl):Abstract nr 3959. doi:1538-7445.AM2012-3959

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  • Research Article
  • Cite Count Icon 4837
  • 10.1093/nar/gky1015
COSMIC: the Catalogue Of Somatic Mutations In Cancer
  • Oct 29, 2018
  • Nucleic Acids Research
  • John G Tate + 25 more

COSMIC, the Catalogue Of Somatic Mutations In Cancer (https://cancer.sanger.ac.uk) is the most detailed and comprehensive resource for exploring the effect of somatic mutations in human cancer. The latest release, COSMIC v86 (August 2018), includes almost 6 million coding mutations across 1.4 million tumour samples, curated from over 26 000 publications. In addition to coding mutations, COSMIC covers all the genetic mechanisms by which somatic mutations promote cancer, including non-coding mutations, gene fusions, copy-number variants and drug-resistance mutations. COSMIC is primarily hand-curated, ensuring quality, accuracy and descriptive data capture. Building on our manual curation processes, we are introducing new initiatives that allow us to prioritize key genes and diseases, and to react more quickly and comprehensively to new findings in the literature. Alongside improvements to the public website and data-download systems, new functionality in COSMIC-3D allows exploration of mutations within three-dimensional protein structures, their protein structural and functional impacts, and implications for druggability. In parallel with COSMIC’s deep and broad variant coverage, the Cancer Gene Census (CGC) describes a curated catalogue of genes driving every form of human cancer. Currently describing 719 genes, the CGC has recently introduced functional descriptions of how each gene drives disease, summarized into the 10 cancer Hallmarks.

  • Research Article
  • Cite Count Icon 152
  • 10.1002/cphg.21
COSMIC: High-Resolution Cancer Genetics Using the Catalogue of Somatic Mutations in Cancer.
  • Oct 1, 2016
  • Current Protocols in Human Genetics
  • S.A Forbes + 18 more

COSMIC (http://cancer.sanger.ac.uk) is an expert-curated database of somatic mutations in human cancer. Broad and comprehensive in scope, recent releases in 2016 describe over 4 million coding mutations across all human cancer disease types. Mutations are annotated across the entire genome, but expert curation is focused on over 400 key cancer genes. Now encompassing the majority of molecular mutation mechanisms in oncogenetics, COSMIC additionally describes 10 million non-coding mutations, 1 million copy-number aberrations, 9 million gene-expression variants, and almost 8 million differentially methylated CpGs. This information combines a consistent interpretation of the data from the major cancer genome consortia and cancer genome literature with exhaustive hand curation of over 22,000 gene-specific literature publications. This unit describes the graphical Web site in detail; alternative protocols overview other ways the entire database can be accessed, analyzed, and downloaded. © 2016 by John Wiley & Sons, Inc.

  • Research Article
  • 10.1158/1538-7445.am2011-46
Abstract 46: COSMIC: Enhancing the analysis of whole somatic mutant tumor genomes
  • Apr 15, 2011
  • Cancer Research
  • Simon A Forbes + 11 more

COSMIC, the Catalogue Of Somatic Mutations In Cancer (http://www.sanger.ac.uk/cosmic), is a comprehensive web resource for the investigation of somatic mutations in human cancer with data curated and centrally combined from a variety of sources. Currently, point mutation data have been manually curated from the scientific literature on 89 genes, together with full mutation details on a further 57 fusion gene pairs (Release v50, Nov 2010), defined as known cancer genes in the Cancer Gene Census (http://www.sanger.ac.uk/genetics/CGP/Census). Further, in collaboration with the IARC TP53 database, COSMIC now contains the somatic mutation data for the key p53 tumor suppressor gene. Details of many large candidate gene screens, together spanning almost 20,000 genes have also been curated from three sources, the scientific literature, the Cancer Genome Project labs at the Sanger Institute, UK (CGP), and The Cancer Genome Atlas (TCGA) web portal. Finally, COSMIC now presents the results of 48 whole-genome screens, detailing 2689 genomic rearrangements, 1661 coding mutations and 55,440 non-coding mutations. The COSMIC website is designed to allow easy and intuitive browsing of this data, in isolation or various combinations. As the amount and variability of data has increased, the methods of acquiring and interacting with the data have been enhanced. The COSMIC website now provides mining capabilities, with numerous specialization filters, graphically presenting selected data. A more extensive mining tool is the COSMIC Biomart, allowing selection of data using any definitions found in the COSMIC system. With the increasing significance of genomic data in cancer, COSMIC has integrated with the two largest genome browsers, the Ensembl system and the UCSC cancer genomics browser; links are available from and to Ensembl, whilst per-tissue summaries are provided graphically in the UCSC browser. In addition, COSMIC has integrated its own genome browser, a version of ‘Gbrowse’, which provides custom genomic views of the majority of COSMIC data, together with CONAN copy number graphs, within the context of full genome annotations. Looking to the future, much novel global cancer genomics data will soon be made available via the ICGC data coordination centre. COSMIC is well placed to utilize this as a major new source of mutation information, maintaining COSMIC's position as a central resource in human cancer genetics. Citation Format: {Authors}. {Abstract title} [abstract]. In: Proceedings of the 102nd Annual Meeting of the American Association for Cancer Research; 2011 Apr 2-6; Orlando, FL. Philadelphia (PA): AACR; Cancer Res 2011;71(8 Suppl):Abstract nr 46. doi:10.1158/1538-7445.AM2011-46

  • Conference Article
  • 10.1158/1538-7445.sabcs18-906
Abstract 906: COSMIC: Describing the world’s knowledge of somatic mutations in cancer
  • Jul 1, 2019
  • Simon Forbes + 23 more

COSMIC, the Catalogue Of Somatic Mutations In Cancer (http://cancer.sanger.ac.uk/cosmic) is a continual effort to integrate all available information on somatic mutations and other molecular alterations causing every form of human cancer. Being the world’s largest and most comprehensive database of somatic mutations in human cancer, it also provides web-based tools for exploration and interpretation of collected data. The content of the database is primarily obtained from the scientific literature by the team of experienced post-doctoral curators and combined with information from online sources, including the TCGA and ICGC. During thorough & exhaustive manual curation, all the available information about mutations and tumor samples (e.g. disease type, demographic data, treatments) are collected, standardized and integrated to allow for both creation of wide virtual cohorts and large-scale studies, as well as precise analysis at the level of a single sample, gene or mutation. The 87th release of COSMIC (Nov 2018) encompasses 5,992,260 coding mutations and 19,574 gene fusions, curated from 1,403,267 cancer samples, including 35,490 whole cancer exomes/genomes, primarily hand-curated data from 26,494 scientific publications. Additionally, COSMIC describes 1,179,545 Copy Number Variants, 9,147,833 gene expression variants, and 7,879,142 differentially methylated CPGs. In addition to this broad database, COSMIC includes a range of specialized projects highlighting specific aspects of cancer in order to emphasize events with a higher impact in disease etiology. This includes the Cancer Gene Census (http://cancer.sanger.ac.uk/census), which defines and describes genes (currently 719) and their dysfunctions driving oncogenesis, and characterizes their impact on hallmarks of cancer. COSMIC3D (http://cancer.sanger.ac.uk/cosmic3d) provides an interactive view of cancer mutations in the context of 3D protein structures, and predicts potential drug-binding sites. Significantly updated 4 times a year, COSMIC is available free-of-charge for academic and non-profit users via COSMIC webpage (http://cancer.sanger.ac.uk/cosmic) or to download through COSMIC downloads (http://cancer.sanger.ac.uk/cosmic/download). Citation Format: Simon Andrew Forbes, david beare, charalampos boutselakis, sally bamford, kate noble, claire rye, john tate, chai yin kok, charlie hathaway, laura ponting, christopher ramshaw, raymund stefancsik, samantha thompson, bhavana harsha, nidhi bindal, shicai wang, steven jupe, helen speedy, celestino creatore, peter fish, sari ward, charlotte cole, elisabeth dawson, zbyslaw sondka. COSMIC: Describing the world’s knowledge of somatic mutations in cancer [abstract]. In: Proceedings of the American Association for Cancer Research Annual Meeting 2019; 2019 Mar 29-Apr 3; Atlanta, GA. Philadelphia (PA): AACR; Cancer Res 2019;79(13 Suppl):Abstract nr 906.

  • Research Article
  • Cite Count Icon 7
  • 10.3892/ol.2019.10157
Frequency and significance of epidermal growth factor receptor mutations detected by PCR methods in patients with non-small cell lung cancer.
  • Mar 18, 2019
  • Oncology letters
  • Eiji Nakajima + 10 more

Epidermal growth factor receptor (EGFR) is the most important driver gene of non-small cell lung cancer (NSCLC) as EGFR mutations determine the efficacy of EGFR tyrosine kinase inhibitor (EGFR-TKI) therapy. In the present study, the comprehensive ability of widely used polymerase chain reaction (PCR) methods to detect EGFR mutations was determined. Among the 35 EGFR mutations detected via the direct sequencing of 73 patients with NSCLC, 11 types were identified in exons 18, 19 and 21. Among the 11 mutation types, all exon 18 and 21 mutations were identified by 2 widely used PCR methods, namely, Scorpion-Amplification Refractory Mutation System and cobas v2. However, among the 9 different exon 19 deletions, 3 types were not identified by the 2 methods. In addition, 25 samples with EGFR mutations were analyzed by the 2 methods, including a sample from a patient with an unidentified exon 19 deletion, the T751_I759 deletion and insertion S; this patient had long-term disease control as a result of EGFR-TKI therapy. The 2 methods could not detect this unidentified deletion, whereas sizing capillary electrophoresis for the comprehensive detection of exon 19 deletions detected this deletion. It is generally thought that patients with exon 19 mutations have higher response rates to EGFR-TKI therapy than patients with exon 21 mutations. The present study confirmed the EGFR mutation status by comparing the mutations with the Catalog Of Somatic Mutations In Cancer, which is the world's largest and most comprehensive resource for analyzing the effects of somatic mutations in human cancers. The predicted frequency of EGFR mutations identified by the 2 methods was 85%. The frequency of mutations detectable by the 2 methods was less for exon 19 than exon 21. Therefore, the results of the present study suggest that decreasing false-negative detection of exon 19 deletions is crucial for the clinical testing of EGFR mutations.

  • Research Article
  • Cite Count Icon 2377
  • 10.1093/nar/gkq929
COSMIC: mining complete cancer genomes in the Catalogue of Somatic Mutations in Cancer
  • Oct 15, 2010
  • Nucleic Acids Research
  • Simon A Forbes + 13 more

COSMIC (http://www.sanger.ac.uk/cosmic) curates comprehensive information on somatic mutations in human cancer. Release v48 (July 2010) describes over 136 000 coding mutations in almost 542 000 tumour samples; of the 18 490 genes documented, 4803 (26%) have one or more mutations. Full scientific literature curations are available on 83 major cancer genes and 49 fusion gene pairs (19 new cancer genes and 30 new fusion pairs this year) and this number is continually increasing. Key amongst these is TP53, now available through a collaboration with the IARC p53 database. In addition to data from the Cancer Genome Project (CGP) at the Sanger Institute, UK, and The Cancer Genome Atlas project (TCGA), large systematic screens are also now curated. Major website upgrades now make these data much more mineable, with many new selection filters and graphics. A Biomart is now available allowing more automated data mining and integration with other biological databases. Annotation of genomic features has become a significant focus; COSMIC has begun curating full-genome resequencing experiments, developing new web pages, export formats and graphics styles. With all genomic information recently updated to GRCh37, COSMIC integrates many diverse types of mutation information and is making much closer links with Ensembl and other data resources.

  • Research Article
  • Cite Count Icon 596
  • 10.1093/nar/gkp995
COSMIC (the Catalogue of Somatic Mutations in Cancer): a resource to investigate acquired mutations in human cancer
  • Nov 11, 2009
  • Nucleic Acids Research
  • Simon A Forbes + 12 more

The catalogue of Somatic Mutations in Cancer (COSMIC) (http://www.sanger.ac.uk/cosmic/) is the largest public resource for information on somatically acquired mutations in human cancer and is available freely without restrictions. Currently (v43, August 2009), COSMIC contains details of 1.5-million experiments performed through 13 423 genes in almost 370 000 tumours, describing over 90 000 individual mutations. Data are gathered from two sources, publications in the scientific literature, (v43 contains 7797 curated articles) and the full output of the genome-wide screens from the Cancer Genome Project (CGP) at the Sanger Institute, UK. Most of the world’s literature on point mutations in human cancer has now been curated into COSMIC and while this is continually updated, a greater emphasis on curating fusion gene mutations is driving the expansion of this information; over 2700 fusion gene mutations are now described. Whole-genome sequencing screens are now identifying large numbers of genomic rearrangements in cancer and COSMIC is now displaying details of these analyses also. Examination of COSMIC’s data is primarily web-driven, focused on providing mutation range and frequency statistics based upon a choice of gene and/or cancer phenotype. Graphical views provide easily interpretable summaries of large quantities of data, and export functions can provide precise details of user-selected data.

  • Discussion
  • Cite Count Icon 13
  • 10.2353/jmoldx.2010.100093
Caveolin-1 P132L Mutation in Human Cancers: 1 CAVeat to be Voiced
  • Sep 1, 2010
  • The Journal of Molecular Diagnostics
  • Magali Lacroix-Triki + 2 more

Caveolin-1 P132L Mutation in Human Cancers: 1 CAVeat to be Voiced

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