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热休克转录因子1的环状结构域决定DNA结合特异性及对热应激的反应。

The loop domain of heat shock transcription factor 1 dictates DNA-binding specificity and responses to heat stress.

作者信息

Ahn S G, Liu P C, Klyachko K, Morimoto R I, Thiele D J

机构信息

Department of Biological Chemistry, The University of Michigan Medical School, Ann Arbor, Michigan 48109-0606, USA.

出版信息

Genes Dev. 2001 Aug 15;15(16):2134-45. doi: 10.1101/gad.894801.

Abstract

Eukaryotic heat shock transcription factors (HSF) regulate an evolutionarily conserved stress-response pathway essential for survival against a variety of environmental and developmental stresses. Although the highly similar HSF family members have distinct roles in responding to stress and activating target gene expression, the mechanisms that govern these roles are unknown. Here we identify a loop within the HSF1 DNA-binding domain that dictates HSF isoform specific DNA binding in vitro and preferential target gene activation by HSF family members in both a yeast transcription assay and in mammalian cells. These characteristics of the HSF1 loop region are transposable to HSF2 and sufficient to confer DNA-binding specificity, heat shock inducible HSP gene expression and protection from heat-induced apoptosis in vivo. In addition, the loop suppresses formation of the HSF1 trimer under basal conditions and is required for heat-inducible trimerization in a purified system in vitro, suggesting that this domain is a critical part of the HSF1 heat-stress-sensing mechanism. We propose that this domain defines a signature for HSF1 that constitutes an important determinant for how cells utilize a family of transcription factors to respond to distinct stresses.

摘要

真核生物热休克转录因子(HSF)调控着一条进化上保守的应激反应途径,这对于抵抗各种环境和发育应激以生存至关重要。尽管高度相似的HSF家族成员在应对应激和激活靶基因表达方面具有不同作用,但支配这些作用的机制尚不清楚。在此,我们在HSF1 DNA结合结构域中鉴定出一个环,它在体外决定HSF异构体特异性DNA结合,并在酵母转录试验和哺乳动物细胞中决定HSF家族成员优先激活靶基因。HSF1环区域的这些特征可转移至HSF2,并且足以赋予DNA结合特异性、热休克诱导的HSP基因表达以及体内免受热诱导凋亡的保护。此外,该环在基础条件下抑制HSF1三聚体的形成,并且在体外纯化系统中热诱导三聚化是必需的,这表明该结构域是HSF1热应激传感机制的关键部分。我们提出,该结构域定义了HSF1的一个特征,它构成了细胞如何利用转录因子家族应对不同应激的一个重要决定因素。

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