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The CIC-ERF co-deletion underlies fusion-independent activation of ETS family member, ETV1, to drive prostate cancer progression.


ABSTRACT: Human prostate cancer can result from chromosomal rearrangements that lead to aberrant ETS gene expression. The mechanisms that lead to fusion-independent ETS factor upregulation and prostate oncogenesis remain relatively unknown. Here, we show that two neighboring transcription factors, Capicua (CIC) and ETS2 repressor factor (ERF), which are co-deleted in human prostate tumors can drive prostate oncogenesis. Concurrent CIC and ERF loss commonly occur through focal genomic deletions at chromosome 19q13.2. Mechanistically, CIC and ERF co-bind the proximal regulatory element and mutually repress the ETS transcription factor, ETV1. Targeting ETV1 in CIC and ERF-deficient prostate cancer limits tumor growth. Thus, we have uncovered a fusion-independent mode of ETS transcriptional activation defined by concurrent loss of CIC and ERF.

SUBMITTER: Gupta N 

PROVIDER: S-EPMC9668335 | biostudies-literature | 2022 Nov

REPOSITORIES: biostudies-literature

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The <i>CIC-ERF</i> co-deletion underlies fusion-independent activation of ETS family member, ETV1, to drive prostate cancer progression.

Gupta Nehal N   Song Hanbing H   Wu Wei W   Ponce Rovingaile K RK   Lin Yone K YK   Kim Ji Won JW   Small Eric J EJ   Feng Felix Y FY   Huang Franklin W FW   Okimoto Ross A RA  

eLife 20221116


Human prostate cancer can result from chromosomal rearrangements that lead to aberrant ETS gene expression. The mechanisms that lead to fusion-independent ETS factor upregulation and prostate oncogenesis remain relatively unknown. Here, we show that two neighboring transcription factors, Capicua (<i>CIC</i>) and ETS2 repressor factor (<i>ERF</i>), which are co-deleted in human prostate tumors can drive prostate oncogenesis. Concurrent <i>CIC</i> and <i>ERF</i> loss commonly occur through focal g  ...[more]

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