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首页> 外文期刊>Journal of Molecular Biology >Proteins' Knotty Problems
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Proteins' Knotty Problems

机译:蛋白质的结筋问题

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摘要

Knots in proteins are increasingly being recognized as an important structural concept, and the folding of these peculiar structures still poses considerable challenges. From a functional point of view, most protein knots discovered so far are either enzymes or DNA-binding proteins. Our comprehensive topological analysis of the Protein Data Bank reveals several novel structures including knotted mitochondrial proteins and the most deeply embedded protein knot discovered so far. For the latter, we propose a novel folding pathway based on the idea that a loose knot forms at a terminus and slides to its native position. For the mitochondrial proteins, we discuss the folding problem from the perspective of transport and suggest that they fold inside the mitochondria. We also discuss the evolutionary origin of a novel class of knotted membrane proteins and argue that a novel knotted DNA-binding protein constitutes a new fold. Finally, we have also discovered a knot in an artificially designed protein structure. (C) 2018 The Authors. Published by Elsevier Ltd.
机译:蛋白质中的结越来越被认为是重要的结构概念,并且这些特殊结构的折叠仍然存在显着挑战。从功能性的角度来看,到目前为止发现的大多数蛋白质结是酶或DNA结合蛋白。我们对蛋白质数据库的综合拓扑分析显示了几种新颖的结构,包括打结线粒体蛋白,到目前为止发现的最深层嵌入的蛋白质结。对于后者,我们提出了一种新颖的折叠途径,基于末端的松散结和滑动到其天然位置的思想。对于线粒体蛋白质,我们从运输的角度讨论了折叠问题,并表明它们在线粒体内部折叠。我们还讨论了一类新型打结膜蛋白的进化起源,并认为新型打结的DNA结合蛋白构成了新的折叠。最后,我们还发现了人工设计的蛋白质结构的结。 (c)2018年作者。 elsevier有限公司出版

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