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天然存在的蛋白质中一种罕见的类似II型聚甘氨酸的螺旋基序。

A rare polyglycine type II-like helix motif in naturally occurring proteins.

作者信息

Warkentin Eberhard, Weidenweber Sina, Schühle Karola, Demmer Ulrike, Heider Johann, Ermler Ulrich

机构信息

Max-Planck-Institut für Biophysik, Max-von-Laue-Str. 3, Frankfurt am Main, 60438, Germany.

Laboratorium für Mikrobiologie, Fachbereich Biologie and SYNMIKRO, Philipps-Universität, Marburg, 35032, Germany.

出版信息

Proteins. 2017 Nov;85(11):2017-2023. doi: 10.1002/prot.25355. Epub 2017 Aug 4.

DOI:10.1002/prot.25355
PMID:28722183
Abstract

Common structural elements in proteins such as α-helices or β-sheets are characterized by uniformly repeating, energetically favorable main chain conformations which additionally exhibit a completely saturated hydrogen-bonding network of the main chain NH and CO groups. Although polyproline or polyglycine type II helices (PP or PG ) are frequently found in proteins, they are not considered as equivalent secondary structure elements because they do not form a similar self-contained hydrogen-bonding network of the main chain atoms. In this context our finding of an unusual motif of glycine-rich PG -like helices in the structure of the acetophenone carboxylase core complex is of relevance. These PG -like helices form hexagonal bundles which appear to fulfill the criterion of a (largely) saturated hydrogen-bonding network of the main-chain groups and therefore may be regarded in this sense as a new secondary structure element. It consists of a central PG -like helix surrounded by six nearly parallel PG -like helices in a hexagonal array, plus an additional PG -like helix extending the array outwards. Very related structural elements have previously been found in synthetic polyglycine fibers. In both cases, all main chain NH and CO groups of the central PG -helix are saturated by either intra- or intermolecular hydrogen-bonds, resulting in a self-contained hydrogen-bonding network. Similar, but incomplete PG -helix patterns were also previously identified in a GTP-binding protein and an antifreeze protein.

摘要

蛋白质中的常见结构元件,如α螺旋或β折叠,其特征在于主链构象均匀重复且能量有利,主链的NH和CO基团还呈现出完全饱和的氢键网络。尽管聚脯氨酸或聚甘氨酸II型螺旋(PP或PG)在蛋白质中经常出现,但它们不被视为等效的二级结构元件,因为它们不会形成类似的主链原子自包含氢键网络。在这种背景下,我们在苯乙酮羧化酶核心复合物结构中发现富含甘氨酸的类PG螺旋的异常基序具有重要意义。这些类PG螺旋形成六边形束,似乎满足了主链基团(大部分)饱和氢键网络的标准,因此从这个意义上讲可以被视为一种新的二级结构元件。它由一个中心类PG螺旋和周围呈六边形排列的六个几乎平行的类PG螺旋组成,外加一个将该阵列向外延伸的额外类PG螺旋。此前在合成聚甘氨酸纤维中发现了非常相关的结构元件。在这两种情况下,中心PG螺旋的所有主链NH和CO基团都通过分子内或分子间氢键饱和,从而形成一个自包含的氢键网络。类似但不完整的PG螺旋模式此前也在一种GTP结合蛋白和一种抗冻蛋白中被鉴定出来。

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