4.5 Article

Increased stability of heterogeneous ribonucleoproteins by a deacetylase inhibitor

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出版社

ELSEVIER SCIENCE BV
DOI: 10.1016/j.bbagrm.2015.05.001

关键词

hnRNP F/H; TSA; Lactacystin; TGF beta 1; Breast cancer cell; Bcl-x splicing reporter

资金

  1. Canadian Breast Cancer Foundation Prairies/NWT region
  2. National Cancer Institute of Canada [016355]
  3. Manitoba Health Research Council
  4. Terry Fox Foundation

向作者/读者索取更多资源

Splicing factors are often influenced by various signaling pathways, contributing to the dynamic changes of protein isoforms in cells. Heterogeneous ribonucleoproteins (hnRNPs) regulate many steps of RNA metabolism including pre-mRNA splicing but their control by cell signaling particularly through acetylation and ubiquitination pathways remains largely unknown. Here we show that TSA, a deacetylase inhibitor, reduced the ratio of Bcl-x splice variants Bcl-xL/xS in MDA-MB-231 breast cancer cells. This TSA effect was independent of TGF beta 1; however, only in the presence of TGF beta 1 was TSA able to change the splicing regulators hnRNP F/H by slightly reducing their mRNA transcripts but strongly preventing protein degradation. The latter was also efficiently prevented by lactacystin, a proteasome inhibitor, suggesting their protein stability control by both acetylation and ubiquitination pathways. Three lysines K87, K98 and K224 of hnRNP F are potential targets of the mutually exclusive acetylation or ubiquitination (K-Ac/Ub) in the protein modification database PhosphoSitePlus. Mutating each of them but not a control non-K-Ac/Ub (K68) specifically abolished the TSA enhancement of protein stability. Moreover, mutating 1(98 (K98R) and 1(224 (K224R) also abolished the TSA regulation of alternative splicing of a Bcl-x mini-gene. Furthermore, about 86% (30 of 35) of the multi-functional hnRNP proteins in the database contain lysines that are potential sites for acetylation/ubiquitination. We demonstrate that the degradation of three of them (A1, I and L) are also prevented by TSA. Thus, the deacetylase inhibitor TSA enhances hnRNP F stability through the K-Ac/Ub lysines, with some of them essential for its regulation of alternative splicing. Such a regulation of protein stability is perhaps common for a group of hnRNPs and RNA metabolism. (C) 2015 Elsevier B.V. All rights reserved.

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