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DNAJB12 和 Hsp70 将 N1303K-CFTR 的中间体分类为内质网相关自噬。

DNAJB12 and Hsp70 triage arrested intermediates of N1303K-CFTR for endoplasmic reticulum-associated autophagy.

机构信息

Department of Cell Biology and Physiology and the Cystic Fibrosis/Pulmonary Research and Treatment Center, University of North Carolina at Chapel Hill, Chapel Hill, NC 27599.

出版信息

Mol Biol Cell. 2021 Apr 1;32(7):538-553. doi: 10.1091/mbc.E20-11-0688. Epub 2021 Feb 3.

Abstract

The transmembrane Hsp40 DNAJB12 and cytosolic Hsp70 cooperate on the endoplasmic reticulum's (ER) cytoplasmic face to facilitate the triage of nascent polytopic membrane proteins for folding versus degradation. N1303K is a common mutation that causes misfolding of the ion channel CFTR, but unlike F508del-CFTR, biogenic and functional defects in N1303K-CFTR are resistant to correction by folding modulators. N1303K is reported to arrest CFTR folding at a late stage after partial assembly of its N-terminal domains. N1303K-CFTR intermediates are clients of JB12-Hsp70 complexes, maintained in a detergent-soluble state, and have a relatively long 3-h half-life. ER-associated degradation (ERAD)-resistant pools of N1303K-CFTR are concentrated in ER tubules that associate with autophagy initiation sites containing WIPI1, FlP200, and LC3. Destabilization of N1303K-CFTR or depletion of JB12 prevents entry of N1303K-CFTR into the membranes of ER-connected phagophores and traffic to autolysosomes. In contrast, the stabilization of intermediates with the modulator VX-809 promotes the association of N1303K-CFTR with autophagy initiation machinery. N1303K-CFTR is excluded from the ER-exit sites, and its passage from the ER to autolysosomes does not require ER-phagy receptors. DNAJB12 operates in biosynthetically active ER microdomains to triage membrane protein intermediates in a conformation-specific manner for secretion versus degradation via ERAD or selective-ER-associated autophagy.

摘要

跨膜 HSP40 DNAJB12 和胞质 HSP70 在 ER 的细胞质面上协同作用,以促进新生多跨膜蛋白的分类,使其折叠或降解。N1303K 是一种常见的突变,会导致离子通道 CFTR 错误折叠,但与 F508del-CFTR 不同,N1303K-CFTR 的生物发生和功能缺陷对折叠调节剂的校正具有抗性。据报道,N1303K 在其 N 端结构域部分组装后,会使 CFTR 折叠停滞在晚期。N1303K-CFTR 中间体是 JB12-Hsp70 复合物的客户,保持在去污剂可溶状态,半衰期相对较长,为 3 小时。N1303K-CFTR 的 ER 相关降解(ERAD)抗性池集中在与自噬起始位点相关的 ER 小管中,这些起始位点含有 WIPI1、FlP200 和 LC3。N1303K-CFTR 的不稳定性或 JB12 的耗竭会阻止 N1303K-CFTR 进入与 ER 连接的吞噬体的膜中,并流向自溶酶体。相比之下,调节剂 VX-809 稳定中间体可促进 N1303K-CFTR 与自噬起始机制的关联。N1303K-CFTR 被排除在 ER 出口位点之外,并且其从 ER 到自溶酶体的传递不需要 ER 吞噬受体。DNAJB12 在生物合成活跃的 ER 微域中运作,以构象特异性的方式对膜蛋白中间体进行分类,使其通过 ERAD 或选择性 ER 相关自噬进行分泌或降解。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/5aa6/8101465/37ad24112dc3/mbc-32-538-g001.jpg

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