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热休克因子1和2的异源三聚化可响应不同刺激提供一种转录开关。

Heterotrimerization of heat-shock factors 1 and 2 provides a transcriptional switch in response to distinct stimuli.

作者信息

Sandqvist Anton, Björk Johanna K, Akerfelt Malin, Chitikova Zhanna, Grichine Alexei, Vourc'h Claire, Jolly Caroline, Salminen Tiina A, Nymalm Yvonne, Sistonen Lea

机构信息

Turku Centre for Biotechnology, University of Turku, Abo Akademi University, 20520 Turku, Finland.

出版信息

Mol Biol Cell. 2009 Mar;20(5):1340-7. doi: 10.1091/mbc.e08-08-0864. Epub 2009 Jan 7.

Abstract

Organisms respond to circumstances threatening the cellular protein homeostasis by activation of heat-shock transcription factors (HSFs), which play important roles in stress resistance, development, and longevity. Of the four HSFs in vertebrates (HSF1-4), HSF1 is activated by stress, whereas HSF2 lacks intrinsic stress responsiveness. The mechanism by which HSF2 is recruited to stress-inducible promoters and how HSF2 is activated is not known. However, changes in the HSF2 expression occur, coinciding with the functions of HSF2 in development. Here, we demonstrate that HSF1 and HSF2 form heterotrimers when bound to satellite III DNA in nuclear stress bodies, subnuclear structures in which HSF1 induces transcription. By depleting HSF2, we show that HSF1-HSF2 heterotrimerization is a mechanism regulating transcription. Upon stress, HSF2 DNA binding is HSF1 dependent. Intriguingly, when the elevated expression of HSF2 during development is mimicked, HSF2 binds to DNA and becomes transcriptionally competent. HSF2 activation leads to activation of also HSF1, revealing a functional interdependency that is mediated through the conserved trimerization domains of these factors. We propose that heterotrimerization of HSF1 and HSF2 integrates transcriptional activation in response to distinct stress and developmental stimuli.

摘要

生物体通过激活热休克转录因子(HSFs)来应对威胁细胞蛋白质稳态的情况,这些因子在抗逆性、发育和寿命方面发挥着重要作用。在脊椎动物的四种HSF(HSF1 - 4)中,HSF1被应激激活,而HSF2缺乏内在的应激反应性。HSF2被招募到应激诱导启动子的机制以及HSF2如何被激活尚不清楚。然而,HSF2表达的变化与HSF2在发育中的功能一致。在这里,我们证明当HSF1和HSF2在核应激小体(HSF1诱导转录的亚核结构)中与卫星III DNA结合时会形成异源三聚体。通过消耗HSF2,我们表明HSF1 - HSF2异源三聚化是一种调节转录的机制。在应激时,HSF2与DNA的结合依赖于HSF1。有趣的是,当模拟发育过程中HSF2的高表达时,HSF2会与DNA结合并具有转录活性。HSF2的激活也会导致HSF1的激活,揭示了一种通过这些因子保守的三聚化结构域介导的功能相互依赖性。我们提出HSF1和HSF2的异源三聚化整合了对不同应激和发育刺激的转录激活。

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