首页> 美国卫生研究院文献>The Journal of Biological Chemistry >Endoplasmic Reticulum Protein Quality Control Is Determined by Cooperative Interactions between Hsp/c70 Protein and the CHIP E3 Ligase
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Endoplasmic Reticulum Protein Quality Control Is Determined by Cooperative Interactions between Hsp/c70 Protein and the CHIP E3 Ligase

机译:内质网蛋白质量控制是由Hsp / c70蛋白与CHIP E3连接酶之间的相互作用决定的

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摘要

The C terminus of Hsp70 interacting protein (CHIP) E3 ligase functions as a key regulator of protein quality control by binding the C-terminal (M/I)EEVD peptide motif of Hsp/c70(90) with its N-terminal tetratricopeptide repeat (TPR) domain and facilitating polyubiquitination of misfolded client proteins via its C-terminal catalytic U-box. Using CFTR as a model client, we recently showed that the duration of the Hsc70-client binding cycle is a primary determinant of stability. However, molecular features that control CHIP recruitment to Hsp/c70, and hence the fate of the Hsp/c70 client, remain unknown. To understand how CHIP recognizes Hsp/c70, we utilized a dominant negative mutant in which loss of a conserved proline in the U-box domain (P269A) eliminates E3 ligase activity. In a cell-free reconstituted ER-associated degradation system, P269A CHIP inhibited Hsc70-dependent CFTR ubiquitination and degradation in a dose-dependent manner. Optimal inhibition required both the TPR and the U-box, indicating cooperativity between the two domains. Neither the wild type nor the P269A mutant changed the extent of Hsc70 association with CFTR nor the dissociation rate of the Hsc70-CFTR complex. However, the U-box mutation stimulated CHIP binding to Hsc70 while promoting CHIP oligomerization. CHIP binding to Hsc70 binding was also stimulated by the presence of an Hsc70 client with a preference for the ADP-bound state. Thus, the Hsp/c70 (M/I)EEVD motif is not a simple anchor for the TPR domain. Rather CHIP recruitment involves reciprocal allosteric interactions between its TPR and U-box domains and the substrate-binding and C-terminal domains of Hsp/c70.
机译:Hsp70相互作用蛋白(CHIP)E3连接酶的C末端通过将Hsp / c70(90)的C末端(M / I)EEVD肽基序与其N末端四肽重复序列结合起来,成为蛋白质质量控​​制的关键调节剂( TPR)域,并通过其C端催化U盒促进错误折叠的客户蛋白质的多聚泛素化。最近使用CFTR作为模型客户端,我们显示Hsc70-客户端绑定周期的持续时间是稳定性的主要决定因素。但是,控制CHIP募集到Hsp / c70的分子特征以及Hsp / c70客户的命运仍然未知。为了了解CHIP如何识别Hsp / c70,我们利用了一个显性负突变体,其中U盒结构域(P269A)中保守脯氨酸的丢失消除了E3连接酶的活性。在无细胞重建的ER相关降解系统中,P269A CHIP以剂量依赖性方式抑制Hsc70依赖性CFTR泛素化和降解。最佳抑制需要TPR和U-box共同作用,表明两个结构域之间具有协同作用。野生型和P269A突变体都没有改变Hsc70与CFTR的缔合程度或Hsc70-CFTR复合物的解离速率。但是,U-box突变刺激CHIP与Hsc70结合,同时促进CHIP寡聚。 Hsc70客户端的存在也刺激了CHIP与Hsc70绑定的结合,并且优先考虑ADP绑定状态。因此,Hsp / c70(M / I)EEVD基序不是TPR域的简单锚点。相反,CHIP募集涉及其TPR和U-box结构域与Hsp / c70的底物结合和C末端结构域之间的相互变构相互作用。

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