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分子内质量控制:HIV-1 包膜 gp160 信号肽切割作为功能折叠检查点。

Intramolecular quality control: HIV-1 envelope gp160 signal-peptide cleavage as a functional folding checkpoint.

机构信息

Cellular Protein Chemistry, Bijvoet Center for Biomolecular Research, Science4Life, Faculty of Science, Utrecht University, Padualaan 8, 3584 Utrecht, the Netherlands.

Department of Medical Microbiology, Amsterdam UMC, University of Amsterdam, Amsterdam Institute for Infection and Immunity, 1105 Amsterdam, the Netherlands.

出版信息

Cell Rep. 2021 Aug 31;36(9):109646. doi: 10.1016/j.celrep.2021.109646.

Abstract

Removal of the membrane-tethering signal peptides that target secretory proteins to the endoplasmic reticulum is a prerequisite for proper folding. While generally thought to be removed co-translationally, we report two additional post-targeting functions for the HIV-1 gp120 signal peptide, which remains attached until gp120 folding triggers its removal. First, the signal peptide improves folding fidelity by enhancing conformational plasticity of gp120 by driving disulfide isomerization through a redox-active cysteine. Simultaneously, the signal peptide delays folding by tethering the N terminus to the membrane, until assembly with the C terminus. Second, its carefully timed cleavage represents intramolecular quality control and ensures release of (only) natively folded gp120. Postponed cleavage and the redox-active cysteine are both highly conserved and important for viral fitness. Considering the ∼15% proteins with signal peptides and the frequency of N-to-C contacts in protein structures, these regulatory roles of signal peptides are bound to be more common in secretory-protein biogenesis.

摘要

去除将分泌蛋白靶向内质网的膜锚定信号肽是正确折叠的前提。虽然一般认为信号肽是共翻译去除的,但我们报告了 HIV-1 gp120 信号肽的另外两个靶向后功能,该信号肽一直附着在 gp120 上,直到 gp120 折叠触发其去除。首先,信号肽通过驱动通过氧化还原活性半胱氨酸的二硫键异构化来增强 gp120 的构象灵活性,从而提高折叠保真度。同时,信号肽通过将 N 端锚定在膜上延迟折叠,直到与 C 端组装。其次,其精心设计的切割代表了分子内质量控制,并确保仅释放天然折叠的 gp120。延迟切割和氧化还原活性半胱氨酸都是高度保守的,对病毒适应性很重要。考虑到约 15%的具有信号肽的蛋白质和蛋白质结构中 N 到 C 接触的频率,这些信号肽的调节作用在分泌蛋白生物发生中肯定更为常见。

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