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内质网合成蛋白质的质量控制:一个暴露的巯基作为介导组装、滞留和降解的三向开关。

Quality control of ER synthesized proteins: an exposed thiol group as a three-way switch mediating assembly, retention and degradation.

作者信息

Fra A M, Fagioli C, Finazzi D, Sitia R, Alberini C M

机构信息

DIBIT-HSR, Milano, Italy.

出版信息

EMBO J. 1993 Dec;12(12):4755-61. doi: 10.1002/j.1460-2075.1993.tb06164.x.

Abstract

Plasma cells secrete IgM only in the polymeric form: the C-terminal cysteine of the mu heavy chain (Cys575) is responsible for both intracellular retention and assembly of IgM subunits. Polymerization is not quantitative, and part of IgM is degraded intracellularly. Neither chloroquine nor brefeldin A (BFA) inhibits degradation, suggesting that this process occurs in a pre-Golgi compartment. Degradation of IgM assembly intermediates requires Cys575: the monomeric IgMala575 mutant is stable also when endoplasmic reticulum (ER) to Golgi transport is blocked by BFA. Addition of the 20 C-terminal residues of mu to the lysosomal protease cathepsin D is sufficient to induce pre-Golgi retention and degradation of the chimeric protein: the small amounts of molecules which exit from the ER are mostly covalent dimers. By contrast, when retained by the KDEL sequence, cathepsin D is stable in the ER, indicating that retention is not sufficient to cause degradation. Replacing the C-terminal cysteine with serine restores transport through the Golgi. As all chimeric cathepsin D constructs display comparable protease activity in vitro, their different fates are not determined by gross alterations in folding. Thus, also out of its normal context, the mu chain Cys575 plays a crucial role in quality control, mediating assembly, retention and degradation.

摘要

浆细胞仅以多聚体形式分泌IgM:μ重链的C末端半胱氨酸(Cys575)负责IgM亚基的细胞内滞留和组装。聚合并非定量的,部分IgM在细胞内被降解。氯喹和布雷菲德菌素A(BFA)均不抑制降解,这表明该过程发生在高尔基体前区室。IgM组装中间体的降解需要Cys575:当内质网(ER)到高尔基体的转运被BFA阻断时,单体IgMala575突变体也是稳定的。将μ链的20个C末端残基添加到溶酶体蛋白酶组织蛋白酶D中足以诱导嵌合蛋白在高尔基体前的滞留和降解:从内质网中排出的少量分子大多是共价二聚体。相比之下,当通过KDEL序列滞留时,组织蛋白酶D在内质网中是稳定的,这表明滞留不足以导致降解。用丝氨酸取代C末端半胱氨酸可恢复通过高尔基体的转运。由于所有嵌合组织蛋白酶D构建体在体外均表现出相当的蛋白酶活性,它们不同的命运并非由折叠的总体改变所决定。因此,即使在其正常环境之外,μ链Cys575在质量控制中也起着关键作用,介导组装、滞留和降解。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/1b32/413922/961b6aa48af4/emboj00084-0293-a.jpg

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