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Dependence of Endoplasmic Reticulum-associated Degradation on the Peptide Binding Domain and Concentration of BiP

机译:内质网相关降解对肽的依赖性 BiP的结合域和浓度

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摘要

ER-associated degradation (ERAD) removes defective and mis-folded proteins from the eukaryotic secretory pathway, but mutations in the ER lumenal Hsp70, BiP/Kar2p, compromise ERAD efficiency in yeast. Because attenuation of ERAD activates the UPR, we screened for kar2 mutants in which the unfolded protein response (UPR) was induced in order to better define how BiP facilitates ERAD. Among the kar2 mutants isolated we identified the ERAD-specific kar2-1 allele (Brodsky et al. J. Biol. Chem. 274, 3453–3460). The kar2-1 mutation resides in the peptide-binding domain of BiP and decreases BiP's affinity for a peptide substrate. Peptide-stimulated ATPase activity was also reduced, suggesting that the interdomain coupling in Kar2-1p is partially compromised. In contrast, Hsp40 cochaperone-activation of Kar2-1p's ATPase activity was unaffected. Consistent with UPR induction in kar2-1 yeast, an ERAD substrate aggregated in microsomes prepared from this strain but not from wild-type yeast. Overexpression of wild-type BiP increased substrate solubility in microsomes obtained from the mutant, but the ERAD defect was exacerbated, suggesting that simply retaining ERAD substrates in a soluble, retro-translocation-competent conformation is insufficient to support polypeptide transit to the cytoplasm.
机译:内质网相关降解(ERAD)从真核分泌途径中去除了缺陷和折叠错误的蛋白质,但内质网腔Hsp70,BiP / Kar2p中的突变损害了酵母中ERAD的效率。因为ERAD的衰减会激活UPR,所以我们筛选了kar2突变体,在其中诱导了未折叠的蛋白应答(UPR),以便更好地定义BiP如何促进ERAD。在分离出的kar2突变体中,我们鉴定出ERAD特异的kar2-1等位基因(Brodsky等人,生物化学杂志274,3453–3460)。 kar2-1突变位于BiP的肽结合域中,并降低BiP对肽底物的亲和力。肽刺激的ATPase活性也降低了,表明Kar2-1p中的域间偶联被部分破坏。相比之下,Kar2-1p的ATPase活性的Hsp40伴侣伴侣激活不受影响。与kar2-1酵母中的UPR诱导一致,ERAD底物聚集在由该菌株而非野生型酵母制备的微粒体中。野生型BiP的过表达增加了从突变体获得的微粒体中底物的溶解度,但ERAD缺陷加剧了,这表明仅将ERAD底物保留在可溶的, 具有逆向转运能力的构象不足以支持 多肽转运到细胞质。

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