Abstract

The data described provide a comprehensive resource for the family-wide active site specificity portrayal of the human matrix metalloproteinase family. We used the high-throughput proteomic technique PICS (Proteomic Identification of protease Cleavage Sites) to comprehensively assay 9 different MMPs. We identified more than 4300 peptide cleavage sites, spanning both the prime and non-prime sides of the scissile peptide bond allowing detailed subsite cooperativity analysis. The proteomic cleavage data were expanded by kinetic analysis using a set of 6 quenched-fluorescent peptide substrates designed using these results. These datasets represent one of the largest specificity profiling efforts with subsequent structural follow up for any protease family and put the spotlight on the specificity similarities and differences of the MMP family. A detailed analysis of this data may be found in Eckhard et al. (2015) [1]. The raw mass spectrometry data and the corresponding metadata have been deposited in PRIDE/ProteomeXchange with the accession number PXD002265.

Highlights

  • The data described provide a comprehensive resource for the family-wide active site specificity portrayal of the human matrix metalloproteinase family

  • Matrix metalloproteinases (MMPs) 1, 2, 3, 7, 8, 9, 12, 13 and 14 were all assayed by the high-throughput Proteomic Identification of protease Cleavage Sites (PICS; or PICS proteomics) method [8,9] and using two orthogonal human whole-proteome peptide libraries

  • Purified proMMPs were aliquoted into single use aliquots of 10 μg, flash-frozen with liquid nitrogen, and stored at À 70 °C until use

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Summary

Data accessibility

Biology Proteolytic enzymes, metalloproteinases, substrate specificity profiling, inhibitor design, drug discovery, matrix biology, extra cellular matrix (ECM). MMPs 1, 2, 3, 7, 8, 9, 12, 13 and 14 were all assayed by the high-throughput Proteomic Identification of protease Cleavage Sites (PICS; or PICS proteomics) method [8,9] and using two orthogonal human whole-proteome peptide libraries (generated with trypsin or GluC). Please refer to our recent dental pulp proteomics and N-terminomics Data in Brief article for more information on TAILS [47]

Expression and purification of human MMPs
Quenched fluorescence protease activity assay
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