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Heat stress response in plants: a complex game with chaperones and more than twenty heat stress transcription factors.

机译:植物的热应激反应:具有伴侣和二十多个热应激转录因子的复杂游戏。

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Compared to the overall multiplicity of more than 20 plant Hsfs, detailed analyses are mainly restricted to tomato and Arabidopsis and to three important representatives of the family (Hsfs A1, A2 and B1). The three Hsfs represent examples of striking functional diversification specialized for the three phases of the heat stress (hs) response (triggering, maintenance and recovery). This is best illustrated for the tomato Hsf system: (i) HsfA1a is the master regulator responsible for hs-induced gene expression including synthesis of HsfA2 and HsfB1. It is indispensible for the development of thermotolerance. (ii) Although functionally equivalent to HsfA1a, HsfA2 is exclusively found after hs induction and represents the dominant Hsf, the "working horse" of the hs response in plants subjected to repeated cycles of hs and recovery in a hot summer period. Tomato HsfA2 is tightly integrated into a network of interacting proteins (HsfA1a, Hsp17-CII, Hsp17-CI) influencing its activity and intracellular distribution. (iii) Because of structural peculiarities, HsfB1 acts as coregulator enhancing the activity of HsfA1a and/or HsfA2. But in addition, it cooperates with yet to be identified other transcription factors in maintaining and/or restoring housekeeping gene expression.
机译:与20多种植物Hsfs的总体多样性相比,详细分析主要限于番茄和拟南芥以及该家族的三个重要代表(Hsfs A1,A2和B1)。这三个Hsf代表了针对热应力(hs)响应的三个阶段(触发,维护和恢复)的功能多样化的实例。对于番茄Hsf系统,这是最好的说明:(i)HsfA1a是负责hs诱导的基因表达(包括HsfA2和HsfB1合成)的主调节剂。它对于耐热性的发展是必不可少的。 (ii)尽管功能上与HsfA1a相同,但是HsfA2仅在hs诱导后发现,并且代表占主导地位的Hsf,这是在反复的hs循环和在炎热的夏季恢复的植物中,hs反应的“工作马”。番茄HsfA2紧密整合到相互作用蛋白(HsfA1a,Hsp17-CII,Hsp17-CI)的网络中,从而影响其活性和细胞内分布。 (iii)由于结构的特殊性,HsfB1充当了增强HsfA1a和/或HsfA2活性的调节剂。但是此外,它在维持和/或恢复管家基因表达中与尚待鉴定的其他转录因子配合。

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