Department of Cell and Developmental Biology, University of Michigan Medical School, Ann Arbor, Michigan, United States of America.
PLoS One. 2013 Oct 11;8(10):e75801. doi: 10.1371/journal.pone.0075801. eCollection 2013.
Following retrograde trafficking to the endoplasmic reticulum (ER), cholera toxin A1 (CTA1) subunit hijacks ER-associated degradation (ERAD) machinery and retro-translocates into the cytosol to induce toxicity. We previously established a cell-based in vivo assay to identify ER components that regulate this process. However, elucidating cytosolic events that govern CTA1 retro-translocation using this assay is difficult as manipulating cytosolic factors often perturbs toxin retrograde transport to the ER. To circumvent this problem, we developed an in vitro assay in semi-permeabilized cells that directly monitors CTA1 release from the ER into the cytosol. We demonstrate CTA1 is released into the cytosol as a folded molecule in a p97- and proteasome-independent manner. Release nonetheless involves a GTP-dependent reaction. Upon extending this assay to the canonical ERAD substrate T-cell receptor α (TCRα), we found the receptor is unfolded when released into the cytosol and degraded by membrane-associated proteasome. In this reaction, p97 initially extracts TCRα from the ER membrane, followed by TCRα discharge into the cytosol that requires additional energy-dependent cytosolic activities. Our results reveal mechanistic insights into cytosolic events controlling CTA1 and TCRα retro-translocation, and provide a reliable tool to further probe this process.
霍乱毒素 A1(CTA1)亚基在逆行运输到内质网(ER)后,劫持内质网相关降解(ERAD)机制并逆行转位到细胞质中,从而诱导毒性。我们之前建立了一种基于细胞的体内测定法,用于鉴定调节该过程的 ER 成分。然而,使用该测定法阐明控制 CTA1 逆行转位的细胞质事件很困难,因为操纵细胞质因子通常会扰乱毒素逆行运输到 ER。为了解决这个问题,我们在半透性细胞中开发了一种体外测定法,该测定法可直接监测 CTA1 从 ER 释放到细胞质中。我们证明 CTA1 以折叠分子的形式以 p97 和蛋白酶体非依赖的方式释放到细胞质中。然而,释放仍涉及 GTP 依赖性反应。当将该测定法扩展到经典的 ERAD 底物 T 细胞受体 α(TCRα)时,我们发现受体在释放到细胞质中时是未折叠的,并被膜相关的蛋白酶体降解。在该反应中,p97 首先从 ER 膜中提取 TCRα,然后 TCRα 排入细胞质,这需要额外的能量依赖性细胞质活性。我们的结果揭示了控制 CTA1 和 TCRα 逆行转位的细胞质事件的机制见解,并提供了一种可靠的工具来进一步探究该过程。