首页> 美国卫生研究院文献>Biochemical Journal >Direct interactions between molecular chaperones heat-shock protein (Hsp) 70 and Hsp40: yeast Hsp70 Ssa1 binds the extreme C-terminal region of yeast Hsp40 Sis1.
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Direct interactions between molecular chaperones heat-shock protein (Hsp) 70 and Hsp40: yeast Hsp70 Ssa1 binds the extreme C-terminal region of yeast Hsp40 Sis1.

机译:分子伴侣热休克蛋白(Hsp)70和Hsp40之间的直接相互作用:酵母Hsp70 Ssa1结合酵母Hsp40 Sis1的C末端极端区域。

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摘要

Heat-shock protein 40 (Hsp40) enables Hsp70 to play critical roles in a number of cellular processes, such as protein folding, assembly, degradation and translocation in vivo. Hsp40 recognizes and binds non-native polypeptides and delivers them to Hsp70. Then Hsp40 stimulates the ATPase activity of Hsp70 to fold the polypeptides. By using yeast Hsp40 Sis1 and yeast Hsp70 Ssa1 as our model proteins, we found that the Sis1 peptide-binding fragment interacts directly with the full-length Ssa1 in vitro. Further studies showed that the C-terminal lid domain of Ssa1 could interact with Sis1 peptide-binding domain physically in vitro. The Sis1 peptide-binding fragment forms a stable complex with the Ssa1 C-terminal lid domain in solution. The interactions between these two proteins appear to be charge-charge interactions because high-ionic-strength buffer can dissociate the complex. Further mapping studies showed that the Sis1 peptide-binding fragment binds the extreme C-terminal 15 amino acid residues of Ssa1. A flexible glycine-rich region is followed by these 15 residues in the Ssa1 primary sequence. Atomic force microscopy of the Sis1-Ssa1 complex showed that only one end of the Ssa1 lid domain binds the Sis1 peptide-binding-fragment dimer at the upper level of the huge groove within the Sis1 dimer. Based on the data, we propose an "anchoring and docking" model to illustrate the mechanisms by which Hsp40 interacts with Hsp70 and delivers the non-native polypeptide to Hsp70.
机译:热激蛋白40(Hsp40)使Hsp70在许多细胞过程中发挥关键作用,例如体内的蛋白折叠,组装,降解和易位。 Hsp40识别并结合非天然多肽并将其传递到Hsp70。然后,Hsp40刺激Hsp70的ATPase活性折叠多肽。通过使用酵母Hsp40 Sis1和酵母Hsp70 Ssa1作为我们的模型蛋白,我们发现Sis1肽结合片段在体外与全长Ssa1直接相互作用。进一步的研究表明,Ssa1的C端盖结构域可以在体外物理上与Sis1肽结合域相互作用。 Sis1肽结合片段与溶液中的Ssa1 C端盖结构域形成稳定的复合物。这两种蛋白质之间的相互作用似乎是电荷-电荷相互作用,因为高离子强度的缓冲液可以使复合物解离。进一步的作图研究表明,Sis1肽结合片段结合了Ssa1的极端C末端15个氨基酸残基。在Ssa1一级序列中,柔性富集甘氨酸的区域后面是这15个残基。 Sis1-Ssa1复合物的原子力显微镜显示,Ssa1盖结构域的仅一端在Sis1二聚体内巨大凹槽的上端结合了Sis1肽结合片段二聚体。基于这些数据,我们提出了一个“锚定和对接”模型,以说明Hsp40与Hsp70相互作用并将非天然多肽传递至Hsp70的机制。

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