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A Novel SRP Recognition Sequence in the Homeostatic Control Region of Heat Shock Transcription Factor σ32

机译:热休克转录因子σ32稳态控制区的新型SRP识别序列

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Heat shock response (HSR) generally plays a major role in sustaining protein homeostasis. In Escherichia coli, the activity and amount of the dedicated transcription factor σ(32) transiently increase upon heat shock. The initial induction is followed by chaperone-mediated negative feedback to inactivate and degrade σ(32). Previous work reported that signal recognition particle (SRP)-dependent targeting of σ(32) to the membrane is essential for feedback control, though how SRP recognizes σ(32) remained unknown. Extensive photo- and disulfide cross-linking studies in vivo now reveal that the highly conserved regulatory region of σ(32) that lacks a consecutive hydrophobic stretch interacts with the signal peptide-binding site of Ffh (the protein subunit of SRP). Importantly, the σ(32)-Ffh interaction observed was significantly affected by mutations in this region that compromise the feedback regulation, but not by deleting the DnaK/DnaJ chaperones. Homeostatic regulation of HSR thus requires a novel type of SRP recognition mechanism.
机译:热休克反应(HSR)通常在维持蛋白质稳态中起主要作用。在大肠杆菌中,热休克后,转录因子σ(32)的活性和数量会瞬时增加。初始诱导后,伴随着伴侣介导的负反馈使σ(32)失活并降解。先前的工作报告说,尽管信号仍依赖于SRP识别σ(32)的方式,但依赖于信号识别粒子(SRP)的σ(32)指向膜对于反馈控制至关重要。现在体内广泛的光和二硫键交联研究表明,缺乏连续疏水性延伸的σ(32)高度保守的调节区与Ffh(SRP的蛋白质亚基)的信号肽结合位点相互作用。重要的是,观察到的σ(32)-Ffh相互作用受此区域中影响反馈调节的突变的影响很大,但并未因删除DnaK / DnaJ伴侣而受到影响。因此,HSR的稳态调节需要一种新型的SRP识别机制。

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