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首页> 外文期刊>Science >PRINCIPLES OF CHAPERONE-ASSISTED PROTEIN FOLDING - DIFFERENCES BETWEEN IN VITRO AND IN VIVO MECHANISMS
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PRINCIPLES OF CHAPERONE-ASSISTED PROTEIN FOLDING - DIFFERENCES BETWEEN IN VITRO AND IN VIVO MECHANISMS

机译:伴侣相关蛋白质折叠的原理-体内和体外机制之间的差异

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Molecular chaperones in the eukaryotic cytosol were shown to interact differently with chemically denatured proteins and their newly translated counterparts. During refolding from denaturant, actin partitioned freely between 70-kilodalton heat shock protein, the bulk cytosol, and the chaperonin TCP1-ring complex. In contrast, during cell-free translation, the chaperones were recruited to the elongating polypeptide and protected it from exposure to the bulk cytosol during folding. Posttranslational cycling between chaperone-bound and free states was observed with subunits of oligomeric proteins and with aberrant polypeptides; this cycling allowed the subunits to assemble and the aberrant polypeptides to be degraded. Thus, folding, oligomerization, and degradation are linked hierarchically to ensure the correct fate of newly synthesized polypeptides.
机译:真核细胞质中的分子伴侣被证明与化学变性蛋白质及其新近翻译的蛋白质相互作用不同。在从变性剂重折叠的过程中,肌动蛋白在70公斤的热激蛋白,大量胞质溶胶和伴侣蛋白TCP1环复合物之间自由分配。相反,在无细胞翻译过程中,伴侣被募集到延长多肽中,并保护其在折叠过程中不暴露于大块细胞质。在寡聚蛋白的亚基和异常的多肽中观察到了伴侣结合状态和游离状态之间的翻译后循环。该循环允许亚基组装并且异常多肽被降解。因此,折叠,寡聚化和降解被分级连接以确保新合成多肽的正确命运。

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