Abstract

Human tumors show altered patterns of protein isoforms that can be related to the dysregulation of messenger RNA alternative splicing also observed in transformed cells. Although somatic mutations in core spliceosome components and their associated factors have been described in some cases, almost nothing is known about the contribution of distorted epigenetic patterns to aberrant splicing. Herein, we show that the splicing RNA-binding protein CELF2 is targeted by promoter hypermethylation-associated transcriptional silencing in human cancer. Focusing on the context of breast cancer, we also demonstrate that CELF2 restoration has growth-inhibitory effects and that its epigenetic loss induces an aberrant downstream pattern of alternative splicing, affecting key genes in breast cancer biology such as the autophagy factor ULK1 and the apoptotic protein CARD10. Furthermore, the presence of CELF2 hypermethylation in the clinical setting is associated with shorter overall survival of the breast cancer patients carrying this epigenetic lesion.

Highlights

  • Human tumors show altered patterns of protein isoforms that can be related to the dysregulation of messenger RNA alternative splicing observed in transformed cells

  • The CELF family consists of six members (CELF1–6) that are all characterized by three RNA recognition motifs, two N terminal and one C terminal with a linker region between them termed the “divergent domain” that is the one involved in alternative splicing [10,11,12]

  • We have focused in breast cancer, we found that epigenetic silencing of CELF2 occurred in pancreatic cancer cell lines and primary tumors (Supplementary Fig. S2) and these results merit further exploration in future research efforts

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Summary

BRIEF COMMUNICATION

Epigenetic inactivation of the splicing RNA-binding protein CELF2 in human breast cancer.

Breast Cancer Cell Lines
Cancer Specific Survival
Findings
Compliance with ethical standards
Full Text
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