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SPOP-containing complex regulates SETD2 stability and H3K36me3-coupled alternative splicing.


ABSTRACT: Trimethylation of histone H3K36 is a chromatin mark associated with active gene expression, which has been implicated in coupling transcription with mRNA splicing and DNA damage response. SETD2 is a major H3K36 trimethyltransferase, which has been implicated as a tumor suppressor in mammals. Here, we report the regulation of SETD2 protein stability by the proteasome system, and the identification of SPOP, a key subunit of the CUL3 ubiquitin E3 ligase complex, as a SETD2-interacting protein. We demonstrate that SPOP is critically involved in SETD2 stability control and that the SPOP/CUL3 complex is responsible for SETD2 polyubiquitination both in vivo and in vitro ChIP-Seq analysis and biochemical experiments demonstrate that modulation of SPOP expression confers differential H3K36me3 on SETD2 target genes, and induce H3K36me3-coupled alternative splicing events. Together, these findings establish a functional connection between oncogenic SPOP and tumor suppressive SETD2 in the dynamic regulation of gene expression on chromatin.

SUBMITTER: Zhu K 

PROVIDER: S-EPMC5224501 | biostudies-literature | 2017 Jan

REPOSITORIES: biostudies-literature

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SPOP-containing complex regulates SETD2 stability and H3K36me3-coupled alternative splicing.

Zhu Kun K   Lei Pin-Ji PJ   Ju Lin-Gao LG   Wang Xiang X   Huang Kai K   Yang Bo B   Shao Changwei C   Zhu Yuan Y   Wei Gang G   Fu Xiang-Dong XD   Li Lianyun L   Wu Min M  

Nucleic acids research 20160909 1


Trimethylation of histone H3K36 is a chromatin mark associated with active gene expression, which has been implicated in coupling transcription with mRNA splicing and DNA damage response. SETD2 is a major H3K36 trimethyltransferase, which has been implicated as a tumor suppressor in mammals. Here, we report the regulation of SETD2 protein stability by the proteasome system, and the identification of SPOP, a key subunit of the CUL3 ubiquitin E3 ligase complex, as a SETD2-interacting protein. We d  ...[more]

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