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Regulation of Molecular Chaperone Gene Transcription Involves the Serine Phosphorylation, 14-3-3ɛ Binding, and Cytoplasmic Sequestration of Heat Shock Factor 1

机译:分子伴侣基因转录的调控涉及丝氨酸磷酸化,14-3-3ɛ结合和热休克因子1的细胞质隔离。

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摘要

Heat shock factor 1 (HSF1) regulates the transcription of molecular chaperone hsp genes. However, the cellular control mechanisms that regulate HSF1 activity are not well understood. In this study, we have demonstrated for the first time that human HSF1 binds to the essential cell signaling protein 14-3-3ɛ. Binding of HSF1 to 14-3-3ɛ occurs in cells in which extracellular signal regulated kinase (ERK) is activated and blockade of the ERK pathway by treatment with the specific ERK pathway inhibitor PD98059 in vivo strongly suppresses the binding. We previously showed that ERK1 phosphorylates HSF1 on serine 307 and leads to secondary phosphorylation by glycogen synthase kinase 3 (GSK3) on serine 303 within the regulatory domain and that these phosphorylation events repress HSF1. We show here that HSF1 binding to 14-3-3ɛ requires HSF1 phosphorylation on serines 303 and 307. Furthermore, the serine phosphorylation-dependent binding of HSF1 to 14-3-3ɛ results in the transcriptional repression of HSF1 and its sequestration in the cytoplasm. Leptomycin B, a specific inhibitor of nuclear export receptor CRM1, was found to reverse the cytoplasmic sequestration of HSF1 mediated by 14-3-3ɛ, suggesting that CRM1/14-3-3ɛ directed nuclear export plays a major role in repression of HSF1 by the ERK/GSK3/14-3-3ɛ pathway. Our experiments indicate a novel pathway for HSF1 regulation and suggest a mechanism for suppression of its activity during cellular proliferation.
机译:热休克因子1(HSF1)调节分子伴侣hsp基因的转录。但是,调节HSF1活性的细胞控制机制还不是很清楚。在这项研究中,我们首次证明了人HSF1与必需的细胞信号蛋白14-3-3ɛ结合。 HSF1与14-3-3ɛ的结合发生在细胞外信号调节激酶(ERK)被激活的细胞中,通过在体内用特异性ERK途径抑制剂PD98059治疗阻断ERK途径可强烈抑制该结合。我们先前显示,ERK1使丝氨酸307上的HSF1磷酸化,并通过调节域内丝氨酸303上的糖原合酶激酶3(GSK3)导致二级磷酸化,并且这些磷酸化事件抑制了HSF1。我们在这里显示,HSF1与14-3-3ɛ的结合需要在丝氨酸303和307上进行HSF1磷酸化。此外,HSF1与14-3-3ɛ的丝氨酸磷酸化依赖性结合会导致HSF1的转录抑制及其在细胞质中的螯合。发现Leptomycin B是核输出受体CRM1的特异性抑制剂,它逆转了由14-3-3ɛ介导的HSF1的胞质螯合,表明CRM1 /14-3-3ɛ定向的核输出在HSF1抑制HSF1中起主要作用。 ERK / GSK3 /14-3-3ɛ途径。我们的实验表明了HSF1调节的新途径,并提出了一种在细胞增殖过程中抑制其活性的机制。

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