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晚期胚胎发生丰富蛋白、亲水性蛋白和WHy结构域的氨基酸理化性质及使用情况比较

Comparison of amino acids physico-chemical properties and usage of late embryogenesis abundant proteins, hydrophilins and WHy domain.

作者信息

Jaspard Emmanuel, Hunault Gilles

机构信息

Université d'Angers, UMR 1345 IRHS, SFR 4207 QUASAV, Angers, France; INRA, UMR 1345 IRHS, Beaucouzé, France; Agrocampus-Ouest, UMR 1345 IRHS, Angers, France.

Université d'Angers, Laboratoire d'Hémodynamique, Interaction Fibrose et Invasivité tumorale hépatique, UPRES 3859, IFR 132, F-49045 Angers, France.

出版信息

PLoS One. 2014 Oct 8;9(10):e109570. doi: 10.1371/journal.pone.0109570. eCollection 2014.

Abstract

Late Embryogenesis Abundant proteins (LEAPs) comprise several diverse protein families and are mostly involved in stress tolerance. Most of LEAPs are intrinsically disordered and thus poorly functionally characterized. LEAPs have been classified and a large number of their physico-chemical properties have been statistically analyzed. LEAPs were previously proposed to be a subset of a very wide family of proteins called hydrophilins, while a domain called WHy (Water stress and Hypersensitive response) was found in LEAP class 8 (according to our previous classification). Since little is known about hydrophilins and WHy domain, the cross-analysis of their amino acids physico-chemical properties and amino acids usage together with those of LEAPs helps to describe some of their structural features and to make hypothesis about their function. Physico-chemical properties of hydrophilins and WHy domain strongly suggest their role in dehydration tolerance, probably by interacting with water and small polar molecules. The computational analysis reveals that LEAP class 8 and hydrophilins are distinct protein families and that not all LEAPs are a protein subset of hydrophilins family as proposed earlier. Hydrophilins seem related to LEAP class 2 (also called dehydrins) and to Heat Shock Proteins 12 (HSP12). Hydrophilins are likely unstructured proteins while WHy domain is structured. LEAP class 2, hydrophilins and WHy domain are thus proposed to share a common physiological role by interacting with water or other polar/charged small molecules, hence contributing to dehydration tolerance.

摘要

晚期胚胎发生丰富蛋白(LEAPs)由几个不同的蛋白家族组成,主要参与胁迫耐受性。大多数LEAPs本质上是无序的,因此功能特征很差。LEAPs已被分类,并且对它们的大量物理化学性质进行了统计分析。LEAPs先前被认为是一个非常广泛的亲水性蛋白家族的一个子集,而在LEAP 8类(根据我们之前的分类)中发现了一个名为WHy(水分胁迫和过敏反应)的结构域。由于对亲水性蛋白和WHy结构域了解甚少,将它们与LEAPs的氨基酸物理化学性质和氨基酸使用情况进行交叉分析,有助于描述它们的一些结构特征,并对它们的功能提出假设。亲水性蛋白和WHy结构域的物理化学性质强烈表明它们在脱水耐受性中的作用,可能是通过与水和小极性分子相互作用来实现的。计算分析表明,LEAP 8类和亲水性蛋白是不同的蛋白家族,并非所有LEAPs都是先前提出的亲水性蛋白家族的一个蛋白子集。亲水性蛋白似乎与LEAP 2类(也称为脱水素)和热休克蛋白12(HSP12)有关。亲水性蛋白可能是无结构的蛋白,而WHy结构域是有结构的。因此,LEAP 2类、亲水性蛋白和WHy结构域被认为通过与水或其他极性/带电小分子相互作用而具有共同的生理作用,从而有助于脱水耐受性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/82d6/4190154/f38184694887/pone.0109570.g001.jpg

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