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A role for Rad23 proteins in 26S proteasome-dependent protein degradation?

机译:Rad23蛋白在26S蛋白酶体依赖性蛋白降解中的作用?

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Treatment of cells with genotoxic agents affects protein degradation in both positive and negative ways. Exposure of S. cerevisiae to the alkylating agent MMS resulted in activation of genes that are involved in ubiquitin- and 26S proteasome-dependent protein degradation. This process partially overlaps with the activation of the ER-associated protein degradation pathway. The DNA repair protein Rad23p and its mammalian homologues have been shown to inhibit degradation of specific substrates in response to DNA damage. Particularly the recently identified inhibition of degradation by mouse Rad23 protein (mHR23) of the associated nucleotide excision repair protein XPC was shown to stimulate DNA repair.Recently, it was shown that Rad23p and the mouse homologue mHR23B also associate with Png1p, a deglycosylation enzyme. Png1p-mediated deglycosylation plays a role in ER-associated protein degradation after accumulation of malfolded proteins in the endoplasmic reticulum. Thus, if stabilization of proteins that are associated with the C-terminus of Rad23p is a general phenomenon, then Rad23 might be implicated in the stimulation of ER-associated protein degradation as well. Interestingly, the recently identified HHR23-like protein Mif1 is also thought to play a role in ER-associated protein degradation. The MIF1 gene is strongly activated in response to ER-stress. Mif1 contains a ubiquitin-like domain which is most probably involved in binding to S5a, a subunit of the 19S regulatory complex of the 26S proteasome. On the basis of its localization in the ER-membrane, it is hypothesized that Mif1 could play a role in the translocation of the 26S proteasome towards the ER-membrane, thereby enhancing ER-associated protein degradation.
机译:用遗传毒性剂处理细胞会以积极和消极的方式影响蛋白质降解。酿酒酵母暴露于烷基化剂MMS会导致涉及泛素和26S蛋白酶体依赖性蛋白质降解的基因活化。该过程与与ER相关的蛋白质降解途径的激活部分重叠。 DNA修复蛋白Rad23p及其哺乳动物同源物已显示出可响应DNA损伤而抑制特定底物的降解。特别是最近发现的小鼠Rad23蛋白(mHR23)对相关的核苷酸切除修复蛋白XPC的降解抑制作用可刺激DNA修复。 Png1p介导的去糖基化在内质网中积累了折叠的蛋白质后,在ER相关的蛋白质降解中起作用。因此,如果与Rad23p C端相关的蛋白质的稳定化是普遍现象,那么Rad23也可能与刺激ER相关的蛋白质降解有关。有趣的是,最近发现的类似HHR23的蛋白Mif1也被认为在与ER相关的蛋白降解中起作用。 MIF1基因被强烈激活,以响应内质网应激。 Mif1包含一个泛素样结构域,最有可能参与与S5a的结合,S5a是26S蛋白酶体19S调控复合物的一个亚基。根据其在ER膜中的定位,假设Mif1可能在26S蛋白酶体向ER膜的转运中发挥作用,从而增强ER相关蛋白的降解。

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