首页> 外文期刊>Biochimica et biophysica acta. Molecular cell research >Hsf4 counteracts Hsf1 transcription activities and increases lens epithelial cell survival in vitro
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Hsf4 counteracts Hsf1 transcription activities and increases lens epithelial cell survival in vitro

机译:Hsf4抵消Hsf1转录活性并增加晶状体上皮细胞存活率

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The interplay between Hsf4 and Hsf1 plays an important role in the regulation of lens homeostasis. However, the mechanism of the intermolecular association involved is still unclear. In this paper, we find that reconstitution of Hsf4b into Hsf4(-/-) lens epithelial (mLEC/Hsf4(-/-)) cells can simultaneously downregulate Hsp70 expression and upregulate the expression of small heat shock proteins Hsp25 and alpha B-ctystallin at both RNA and protein levels. ChIP assay results indicate Hsf4b, which binds to the promoters of Hsp90 alpha, Hsp70.3, Hsp25 and alpha B-crystallin but not Hsp70.1, can inhibit Hsf1 binding to Hsp70.3 promoter and the heat shock mediated Hsp70 promoter activity by reducing Hsf1 protein expression. Hsf4b N-terminal hydrophobic region can interact with Hsfl N-terminal hydrophobic region. Their interaction impairs Hsf1's intramolecular interaction between the N- and C-terminal hydrophobic regions, leading to Hsf1's cytosolic retention and protein degradation. Both lysosome inhibitors (chloroquine, pepstatin A plus E64d) and proteasome inhibitor MG132 can inhibit Hsf4-mediated Hsfl protein degradation, but MG132 can induce Hsfl activation as well. Upregulation of Hsf4b can significantly inhibit cisplatin and staurosporine induced lens epithelial cell apoptosis through direct upregulation of Hsp25 and alpha B-crystallin expression. Taken together, our results imply that upregulation of Hsf4b modulates the expression pattern of heat shock proteins in lens tissue by either directly binding to their promoters or promoting Hsfl protein degradation. Moreover, upregulation of Hsf4b protects lens cell survival by upregulating anti-apoptotic pathways. These studies reveal a novel regulatory mechanism between Hsfl and Hsf4b in modulating lens epithelial cell homeostasis. (C) 2015 Elsevier B.V. All rights reserved.
机译:Hsf4和Hsf1之间的相互作用在调节晶状体稳态方面起着重要作用。但是,所涉及的分子间缔合的机制仍不清楚。在本文中,我们发现将Hsf4b重组为Hsf4(-/-)晶状体上皮(mLEC / Hsf4(-/-))细胞可以同时下调Hsp70表达并上调小热休克蛋白Hsp25和αB-茶碱蛋白的表达在RNA和蛋白质水平上。 ChIP分析结果表明,与Hsp90 alpha,Hsp70.3,Hsp25和alpha B-crystallin的启动子结合但不与Hsp70.1结合的Hsf4b可以抑制Hsf1与Hsp70.3启动子的结合,并且通过降低热休克介导的Hsp70启动子活性Hsf1蛋白表达。 Hsf4b N-末端疏水区可与Hsf1 N-末端疏水区相互作用。它们的相互作用削弱了Hsf1在N和C端疏水区域之间的分子内相互作用,从而导致Hsf1的胞质保留和蛋白质降解。溶酶体抑制剂(氯喹,胃抑素A加E64d)和蛋白酶体抑制剂MG132均可抑制Hsf4介导的Hsfl蛋白降解,但MG132也可诱导Hsf1活化。 Hsf4b的上调可通过直接上调Hsp25和αB-晶状体蛋白的表达来显着抑制顺铂和星形孢菌素诱导的晶状体上皮细胞凋亡。两者合计,我们的结果表明,Hsf4b的上调通过直接结合于其启动子或促进Hsf1蛋白降解来调节晶状体组织中热休克蛋白的表达模式。此外,Hsf4b的上调通过上调抗凋亡途径来保护晶状体细胞存活。这些研究揭示了Hsf1和Hsf4b之间在调节晶状体上皮细胞稳态方面的新型调节机制。 (C)2015 Elsevier B.V.保留所有权利。

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