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CFTR 结构热点与 HSC70 及其共伴侣的选择性结合。

Selective Binding of HSC70 and its Co-Chaperones to Structural Hotspots on CFTR.

机构信息

McGill University, Department of Biochemistry, Montreal, H3G 1Y6, Canada.

McGill University, Department of Physiology, Montreal, H3G 1Y6, Canada.

出版信息

Sci Rep. 2020 Mar 6;10(1):4176. doi: 10.1038/s41598-020-61107-x.

Abstract

Mutations in the cystic fibrosis transmembrane conductance regulator (CFTR) channel cause cystic fibrosis. Chaperones, including HSC70, DNAJA1 and DNAJA2, play key roles in both the folding and degradation of wild-type and mutant CFTR at multiple cellular locations. DNAJA1 and HSC70 promote the folding of newly synthesized CFTR at the endoplasmic reticulum (ER), but are required for the rapid turnover of misfolded channel at the plasma membrane (PM). DNAJA2 and HSC70 are also involved in the ER-associated degradation (ERAD) of misfolded CFTR, while they assist the refolding of destabilized channel at the PM. These outcomes may depend on the binding of chaperones to specific sites within CFTR, which would be exposed in non-native states. A CFTR peptide library was used to identify binding sites for HSC70, DNAJA1 and DNAJA2, validated by competition and functional assays. Each chaperone had a distinct binding pattern, and sites were distributed between the surfaces of the CFTR cytosolic domains, and domain interfaces known to be important for channel assembly. The accessibility of sites to chaperones will depend on the degree of CFTR folding or unfolding. Different folded states may be recognized by unique combinations of HSC70, DNAJA1 and DNAJA2, leading to divergent biological effects.

摘要

囊性纤维化跨膜电导调节因子 (CFTR) 通道中的突变会导致囊性纤维化。伴侣蛋白,包括 HSC70、DNAJA1 和 DNAJA2,在多个细胞位置对野生型和突变型 CFTR 的折叠和降解都起着关键作用。DNAJA1 和 HSC70 促进内质网 (ER) 中新合成的 CFTR 的折叠,但对于质膜 (PM) 上错误折叠通道的快速周转是必需的。DNAJA2 和 HSC70 也参与错误折叠 CFTR 的 ER 相关降解 (ERAD),同时它们协助 PM 上不稳定通道的重折叠。这些结果可能取决于伴侣蛋白与 CFTR 内特定位点的结合,这些位点在非天然状态下会暴露出来。使用 CFTR 肽文库来鉴定 HSC70、DNAJA1 和 DNAJA2 的结合位点,并通过竞争和功能测定进行验证。每种伴侣蛋白都有独特的结合模式,并且这些位点分布在 CFTR 胞质域的表面以及对于通道组装很重要的结构域界面之间。伴侣蛋白与位点的可及性将取决于 CFTR 折叠或展开的程度。不同的折叠状态可能被独特的 HSC70、DNAJA1 和 DNAJA2 组合识别,从而导致不同的生物学效应。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/673d/7060200/dd2ad588c8b6/41598_2020_61107_Fig1_HTML.jpg

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