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The interplay of Hrd3 and the molecular chaperone system ensures efficient degradation of malfolded secretory proteins

机译:Hrd3与分子伴侣系统的相互作用确保了折叠错误的分泌蛋白的有效降解

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Misfolded proteins of the secretory pathway are extracted from the endoplasmic reticulum (ER), polyubiquitylated by a protein complex termed the Hmg-CoA reductase degradation ligase (HRD-ligase), and degraded by cytosolic 26S proteasomes. This process is termed ER-associated protein degradation (ERAD). We previously showed that the membrane protein Der1, which is a subunit of the HRD-ligase, is involved in the export of aberrant polypeptides from the ER. Unexpectedly, we also uncovered a close spatial proximity of Der1 and the substrate receptor Hrd3 in the ER lumen. We report here on a mutant Hrd3KR that is selectively defective for ERAD of soluble proteins. Hrd3KR displays subtle structural changes that affect its positioning toward Der1. Furthermore, increased quantities of the ER-resident Hsp70-type chaperone Kar2 and the Hsp40-type cochaperone Scj1 bind to Hrd3KR. Of note, deletion of SCJ1 impairs ERAD of model substrates and causes the accumulation of client proteins at Hrd3. Our data imply a function of Scj1 in the removal of malfolded proteins from the receptor Hrd3, which facilitates their delivery to downstream-acting components like Der1.
机译:分泌途径的错误折叠的蛋白质从内质网(ER)中提取,被称为Hmg-CoA还原酶降解连接酶(HRD-连接酶)的蛋白质复合物多泛素化,并被胞质26S蛋白酶体降解。此过程称为ER相关蛋白降解(ERAD)。我们以前表明,膜蛋白Der1是HRD连接酶的一个亚基,参与了从ER出口异常多肽。出乎意料的是,我们还发现了ER管腔中Der1和底物受体Hrd3的空间接近性。我们在这里报告突变Hrd3KR选择性缺陷的可溶性蛋白ERAD的缺陷。 Hrd3KR会显示细微的结构变化,从而影响其在Der1上的位置。此外,ER驻留Hsp70型伴侣分子Kar2和Hsp40型伴侣蛋白Scj1的数量增加绑定到Hrd3KR。值得注意的是,SCJ1的缺失会损害模型底物的ERAD并导致Hrd3处的客户蛋白质积累。我们的数据暗示了Scj1在从受体Hrd3去除折叠错误的蛋白质中的功能,这有助于将其递送至下游作用成分(如Der1)。

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