4.8 Article

RNA-dependent dynamic histone acetylation regulates MCL1 alternative splicing

期刊

NUCLEIC ACIDS RESEARCH
卷 42, 期 3, 页码 1656-1670

出版社

OXFORD UNIV PRESS
DOI: 10.1093/nar/gkt1134

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资金

  1. Canadian Institutes of Health Research [MOP-9186]
  2. Canadian Breast Cancer Foundation
  3. Manitoba Health Research Council
  4. CancerCare Manitoba Foundation
  5. National Institutes of Health [1R01 GM047867]
  6. Stowers Institute for Medical Research
  7. Canada Research Chair
  8. MHRC/CancerCare Manitoba studentship
  9. MHRC postdoctoral fellowship
  10. Canadian Foundation for Innovation
  11. Province of Manitoba
  12. University of Manitoba Faculty of Medicine
  13. Manitoba Institute of Child Health
  14. Manitoba Institute of Cell Biology
  15. Canadian Institutes of Health Research

向作者/读者索取更多资源

Histone deacetylases (HDACs) and lysine acetyltransferases (KATs) catalyze dynamic histone acetylation at regulatory and coding regions of transcribed genes. Highly phosphorylated HDAC2 is recruited within corepressor complexes to regulatory regions, while the nonphosphorylated form is associated with the gene body. In this study, we characterized the nonphosphorylated HDAC2 complexes recruited to the transcribed gene body and explored the function of HDAC-complex-mediated dynamic histone acetylation. HDAC1 and 2 were coimmunoprecipitated with several splicing factors, including serine/arginine-rich splicing factor 1 (SRSF1) which has roles in alternative splicing. The co-chromatin immunoprecipitation of HDAC1/2 and SRSF1 to the gene body was RNA-dependent. Inhibition of HDAC activity and knockdown of HDAC1, HDAC2 or SRSF1 showed that these proteins were involved in alternative splicing of MCL1. HDAC1/2 and KAT2B were associated with nascent pre-mRNA in general and with MCL1 pre-mRNA specifically. Inhibition of HDAC activity increased the occupancy of KAT2B and acetylation of H3 and H4 of the H3K4 methylated alternative MCL1 exon 2 nucleosome. Thus, nonphosphorylated HDAC1/2 is recruited to pre-mRNA by splicing factors to act at the RNA level with KAT2B and other KATs to catalyze dynamic histone acetylation of the MCL1 alternative exon and alter the splicing of MCL1 pre-mRNA.

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