Exon skipping in genes encoding lineage-defining myogenic transcription factors in rhabdomyosarcoma

Erin Butler, Lin Xu, Dinesh Rakheja, Blake Schwettmann, Shireen Toubbeh, Lei Guo, Jiwoong Kim, Stephen X. Skapek, Yanbin Zheng

Research output: Contribution to journalArticlepeer-review

Abstract

Rhabdomyosarcoma (RMS) is a childhood sarcoma composed of myoblast-like cells, which suggests a defect in terminal skeletal muscle differentiation. To explore potential defects in the differentiation program, we searched for mRNA splicing variants in genes encoding transcription factors driving skeletal muscle lineage commitment and differentiation. We studied two RMS cases and identified altered splicing resulting in "skipping"the second of three exons in MYOD1. RNA-seq data from 42 tumors and additional RMS cell lines revealed exon 2 skipping in both MYOD1 and MYF5 but not in MYF6 or MYOG. Complementary molecular analysis of MYOD1 mRNA found evidence for exon skipping in five additional RMS cases. Functional studies showed that so-called MYOD?Ex2 protein failed to robustly induce muscle-specific genes, and its ectopic expression conferred a selective advantage in cultured fibroblasts and an RMS xenograft. In summary, we present previously unrecognized exon skipping within MYOD1 and MYF5 in RMS, and we propose that alternative splicing can represent a mechanism to alter the function of these two transcription factors in RMS.

Original languageEnglish (US)
Article numbera006190
JournalCold Spring Harbor Molecular Case Studies
Volume8
Issue number5
DOIs
StatePublished - Aug 2022

ASJC Scopus subject areas

  • General Medicine

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