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蛋白质结构与进化的中性理论。

Protein structure and neutral theory of evolution.

作者信息

Ptitsyn O B, Volkenstein M V

机构信息

Institute of Protein Research Academy of Sciences of the USSR, Pushchino, Moscow Region.

出版信息

J Biomol Struct Dyn. 1986 Aug;4(1):137-56. doi: 10.1080/07391102.1986.10507651.

Abstract

The neutral theory of evolution is extended to the origin of protein molecules. Arguments are presented which suggest that the amino acid sequences of many globular proteins mainly represent "memorized" random sequences while biological evolution reduces to the "editing" these random sequences. Physical requirements for a functional globular protein are formulated and it is shown that many of these requirement do not involve strategical selection of amino acid sequences during biological evolution but are inherent also for typical random sequences. In particular, it is shown that random sequences of polar and amino acid residues can form alpha-helices and beta-strand with lengths and arrangement along the chain similar to those in real globular proteins. These alpha- and beta-regions in random sequences can form three-dimensional folding patterns also similar to those in proteins. The arguments are presented suggesting that even the tight packing of side groups inside protein core do not require very strong biological selection of amino acid sequences either. Thus many structural features of real proteins can exist also in random sequences and the biological selection is needed mainly for the creation of active site of protein and for their stability under physiological conditions.

摘要

进化的中性理论被扩展到蛋白质分子的起源。文中提出的论据表明,许多球状蛋白质的氨基酸序列主要代表“记忆”的随机序列,而生物进化则简化为对这些随机序列的“编辑”。阐述了功能性球状蛋白质的物理要求,并表明这些要求中的许多在生物进化过程中并不涉及氨基酸序列的策略性选择,而是典型随机序列所固有的。特别是,研究表明极性和氨基酸残基的随机序列可以形成α螺旋和β链,其长度和沿链的排列与真实球状蛋白质中的相似。随机序列中的这些α和β区域也可以形成与蛋白质中相似的三维折叠模式。文中提出的论据表明,即使蛋白质核心内侧链基团的紧密堆积也不需要对氨基酸序列进行非常强烈的生物选择。因此,真实蛋白质的许多结构特征也可以存在于随机序列中,而生物选择主要是为了创造蛋白质的活性位点以及使其在生理条件下保持稳定。

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