非生物胁迫下的热休克蛋白

N. Haq, S. Shakeel
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引用次数: 2

摘要

不同的生物以不同的方式对改变的环境条件作出反应。热休克蛋白(HSPs)的产生是植物保护光系统II和类囊体膜的多种防御机制之一。热休克蛋白根据其大小分为高分子量(60-100 kDa)和低分子量(15-30 kDa)热休克蛋白。小热休克蛋白根据其在不同亚细胞器中的定位和作用进一步分类。Cp-sHSPs是叶绿体特异性小热休克蛋白,保护光系统II和类囊体膜。本章提出了一种控制Chenopodium相册中Cp-sHSPs的模型。根据该模型,Chenopodium album的Cp-sHSPs在细胞质中产生并向叶绿体移动。转运肽在到达目标亚细胞器即叶绿体时被去除,在不同的非生物胁迫条件下,早熟的Cp-sHSPs转化为成熟的具有多种作用的Cp-sHSPs。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
HSPs under Abiotic Stresses
Different organisms respond to the altered environmental conditions by different ways. Heat shock proteins’ (HSPs) production is one among the different defense mechanisms which defend the photosystem II and thylokoid membrane in plants. There are different types of HSPs based on their size, that is, high molecular weight (60–100 kDa) and low molecular weight heat shock proteins (15–30 kDa). Small HSPs are further classified based on their localization and role in different sub-cellular organelles. Cp-sHSPs are the chloroplast-specific small HSPs that protect the photosystem II and thylokoid membrane. A model to control the Cp-sHSPs in Chenopodium album has been put forward in this chapter. According to this model, Cp-sHSPs of Chenopodium album are created in cytoplasm and are moved toward chloroplast. The transit peptide is removed on reaching to the target sub-cellular organelle, that is, chloroplast and the premature Cp-sHSPs are converted into mature ones which have multiple roles under different abiotic stress conditions.
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