Baniwal Sanjeev Kumar, Bharti Kapil, Chan Kwan Yu, Fauth Markus, Ganguli Arnab, Kotak Sachin, Mishra Shravan Kumar, Nover Lutz, Port Markus, Scharf Klaus-Dieter, Tripp Joanna, Weber Christian, Zielinski Dirk, von Koskull-Döring Pascal
Department of Molecular Cell Biology, Goethe University Frankfurt, Marie Curie Str. 9, D-60439 Frankfurt/M., Germany.
J Biosci. 2004 Dec;29(4):471-87. doi: 10.1007/BF02712120.
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.
与20多种植物热激转录因子(Hsfs)的总体多样性相比,详细分析主要局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)。这三种热激转录因子代表了热胁迫(hs)反应三个阶段(触发、维持和恢复)中显著功能多样化的例子。番茄热激转录因子系统能很好地说明这一点:(i)热激转录因子A1a是主要调节因子,负责热激诱导的基因表达,包括热激转录因子A2和热激转录因子B1的合成。它对于耐热性的形成是不可或缺的。(ii)尽管热激转录因子A2在功能上与热激转录因子A1a相当,但它仅在热激诱导后出现,是占主导地位的热激转录因子,是在炎热夏季经历反复热激和恢复循环的植物中热激反应的“主力军”。番茄热激转录因子A2紧密整合到一个相互作用蛋白(热激转录因子A1a、热激蛋白17-CII、热激蛋白17-CI)网络中,该网络影响其活性和细胞内分布。(iii)由于结构特点,热激转录因子B1作为共调节因子增强热激转录因子A1a和/或热激转录因子A2的活性。但此外,它还与尚未确定的其他转录因子合作,维持和/或恢复管家基因的表达。