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亲水性蛋白在体外冷冻保护过程中的功能剖析

Functional dissection of hydrophilins during in vitro freeze protection.

作者信息

Reyes José L, Campos Francisco, Wei Hui, Arora Rajeev, Yang Yongil, Karlson Dale T, Covarrubias Alejandra A

机构信息

Departamento de Biología Molecular de Plantas, Instituto de Biotecnología, Universidad Nacional Autónoma de México, Cuernavaca, Mor. 62250, México.

出版信息

Plant Cell Environ. 2008 Dec;31(12):1781-90. doi: 10.1111/j.1365-3040.2008.01879.x. Epub 2008 Aug 26.

DOI:10.1111/j.1365-3040.2008.01879.x
PMID:18761701
Abstract

In plants, Late Embryogenesis Abundant (LEA) proteins typically accumulate in response to low water availability conditions imposed during development or by the environment. Analogous proteins in other organisms are induced when exposed to stress conditions. Most of this diverse set of proteins can be grouped according to properties such as high hydrophilicity and high content of glycine or other small amino acids in what we have termed hydrophilins. Previously, we showed that hydrophilins protect enzyme activities in vitro from low water availability effects. Here, we demonstrate that hydrophilins can also protect enzyme activities from the adverse effects induced by freeze-thaw cycles in vitro. We monitored conformational changes induced by freeze-thaw on the enzyme lactate dehydrogenase (LDH) using the fluorophore 1-anilinonaphthalene-8-sulfonate (ANS). Hydrophilin addition prevents enzyme inactivation and this effect is reflected in changes in the ANS-fluorescence levels determined for LDH. We further show that for selected plant hydrophilins, removal of certain conserved domains affects their protecting capabilities. Thus, we propose that hydrophilins, and in particular specific protein domains, have a role in protecting cell components from the adverse effects caused by low water availability such as those present during freezing conditions by preventing deleterious changes in protein secondary and tertiary structure.

摘要

在植物中,晚期胚胎发生丰富(LEA)蛋白通常在发育过程中或环境施加的低水分可利用性条件下积累。其他生物体中的类似蛋白在暴露于应激条件时会被诱导产生。这组多样的蛋白大多可根据诸如高亲水性以及我们所称的亲水性蛋白中高含量的甘氨酸或其他小氨基酸等特性进行分类。此前,我们表明亲水性蛋白在体外可保护酶活性免受低水分可利用性的影响。在此,我们证明亲水性蛋白在体外还能保护酶活性免受冻融循环诱导的不利影响。我们使用荧光团1-苯胺基萘-8-磺酸盐(ANS)监测冻融对乳酸脱氢酶(LDH)诱导的构象变化。添加亲水性蛋白可防止酶失活,这种效应反映在为LDH测定的ANS荧光水平变化上。我们进一步表明,对于选定的植物亲水性蛋白,去除某些保守结构域会影响其保护能力。因此,我们提出亲水性蛋白,特别是特定的蛋白结构域,通过防止蛋白质二级和三级结构的有害变化,在保护细胞成分免受低水分可利用性(如冷冻条件下存在的情况)引起的不利影响方面发挥作用。

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