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Protein Folding Absent Selection

机译:蛋白质折叠缺失选择

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摘要

Biological proteins are known to fold into specific 3D conformations. However, the fundamental question has remained: Do they fold because they are biological, and evolution has selected sequences which fold? Or is folding a common trait, widespread throughout sequence space? To address this question arbitrary, unevolved, random-sequence proteins were examined for structural features found in folded, biological proteins. Libraries of long (71 residue), random-sequence polypeptides, with ensemble amino acid composition near the mean for natural globular proteins, were expressed as cleavable fusions with ubiquitin. The structural properties of both the purified pools and individual isolates were then probed using circular dichroism, fluorescence emission, and fluorescence quenching techniques. Despite this necessarily sparse “sampling” of sequence space, structural properties that define globular biological proteins, namely collapsed conformations, secondary structure, and cooperative unfolding, were found to be prevalent among unevolved sequences. Thus, for polypeptides the size of small proteins, natural selection is not necessary to account for the compact and cooperative folded states observed in nature.
机译:已知生物蛋白可折叠成特定的3D构象。但是,基本问题仍然存在:它们是否因为生物学而折叠,并且进化选择了折叠的序列?还是折叠是一个普遍的特征,在整个序列空间中普遍存在?为了解决这个问题,检查了在折叠的生物蛋白中发现的任意,未进化的随机序列蛋白的结构特征。长(71个残基),随机序列多肽的文库,其氨基酸组成接近天然球蛋白的均值,表示为与泛素的可裂解融合体。然后使用圆二色性,荧光发射和荧光猝灭技术探测纯化池和单个分离物的结构特性。尽管序列空间必然是稀疏的“采样”,但在未进化的序列中,普遍存在的定义球状生物蛋白的结构特性,即折叠构象,二级结构和协同展开。因此,对于小蛋白质大小的多肽来说,自然选择对于解释自然界中观察到的紧密和协作折叠状态是不必要的。

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