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Large-scale aggregation analysis of eukaryotic proteins reveals an involvement of intrinsically disordered regions in protein folding

机译:真核蛋白的大规模聚集分析揭示了蛋白质折叠中内在无序区域的参与

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A subset of the proteome is prone to aggregate formation, which is prevented by chaperones in the cell. To investigate whether the basic principle underlying the aggregation process is common in prokaryotes and eukaryotes, we conducted a large-scale aggregation analysis of ~500 cytosolic budding yeast proteins using a chaperone-free reconstituted translation system, and compared the obtained data with that of ~3,000 Escherichia coli proteins reported previously. Although the physicochemical properties affecting the aggregation propensity were generally similar in yeast and E. coli proteins, the susceptibility of aggregation in yeast proteins were positively correlated with the presence of intrinsically disordered regions (IDRs). Notably, the aggregation propensity was not significantly changed by a removal of IDRs in model IDR-containing proteins, suggesting that the properties of ordered regions in these proteins are the dominant factors for aggregate formation. We also found that the proteins with longer IDRs were disfavored by E. coli chaperonin GroEL/ES, whereas both bacterial and yeast Hsp70/40 chaperones have a strong aggregation-prevention effect even for proteins possessing IDRs. These results imply that a key determinant to discriminate the eukaryotic proteomes from the prokaryotic proteomes in terms of protein folding would be the attachment of IDRs.
机译:蛋白质组的一个子集易于聚集形成,这可由细胞中的伴侣分子阻止。为了研究聚集过程的基本原理在原核生物和真核生物中是否普遍存在,我们使用无伴侣重组重构系统对〜500种胞质出芽酵母蛋白进行了大规模聚集分析,并将获得的数据与〜先前报道了3,000种大肠杆菌蛋白。虽然影响聚集倾向的物理化学特性在酵母和大肠杆菌蛋白质中通常相似,但酵母蛋白质中聚集的敏感性与内在无序区(IDR)的存在呈正相关。值得注意的是,通过去除含模型IDR的蛋白质中的IDR,聚集倾向没有显着改变,这表明这些蛋白质中有序区域的性质是聚集体形成的主要因素。我们还发现,具有更长IDR的蛋白质被大肠杆菌伴侣蛋白GroEL / ES所取代,而细菌和酵母Hsp70 / 40伴侣蛋白都具有很强的聚集防止作用,即使对于具有IDR的蛋白质也是如此。这些结果暗示,就蛋白质折叠而言,区分真核蛋白质组和原核蛋白质组的关键决定因素将是IDR的附着。

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