首页> 美国卫生研究院文献>The Journal of Biological Chemistry >Specific Interaction between Tomato HsfA1 and HsfA2 Creates Hetero-oligomeric Superactivator Complexes for Synergistic Activation of Heat Stress Gene Expression
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Specific Interaction between Tomato HsfA1 and HsfA2 Creates Hetero-oligomeric Superactivator Complexes for Synergistic Activation of Heat Stress Gene Expression

机译:番茄HsfA1和HsfA2之间的特定相互作用创建用于热应激基因表达的协同激活的杂-寡聚超级激活剂复合物。

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摘要

In plants, a family of more than 20 heat stress transcription factors (Hsf) controls the expression of heat stress (hs) genes. There is increasing evidence for the functional diversification between individual members of the Hsf family fulfilling distinct roles in response to various environmental stress conditions and developmental signals. In response to hs, accumulation of both heat stress proteins (Hsp) and Hsfs is induced. In tomato, the physical interaction between the constitutively expressed HsfA1 and the hs-inducible HsfA2 results in synergistic transcriptional activation (superactivation) of hs gene expression. Here, we show that the interaction is strikingly specific and not observed with other class A Hsfs. Hetero-oligomerization of the two-component Hsfs is preferred to homo-oligomerization, and each Hsf in the HsfA1/HsfA2 hetero-oligomeric complex has its characteristic contribution to its function as superactivator. Distinct regions of the oligomerization domain are responsible for specific homo- and hetero-oligomeric interactions leading to the formation of hexameric complexes. The results are summarized in a model of assembly and function of HsfA1/A2 superactivator complexes in hs gene regulation.
机译:在植物中,一个由20多个热应激转录因子(Hsf)组成的家族控制着热应激(hs)基因的表达。越来越多的证据表明,Hsf家族的各个成员之间的功能多样化在应对各种环境压力条件和发育信号方面起着独特的作用。响应hs,诱导热应激蛋白(Hsp)和Hsfs的积累。在番茄中,组成型表达的HsfA1和hs诱导的HsfA2之间的物理相互作用导致hs基因表达的协同转录激活(超激活)。在这里,我们显示了这种相互作用是非常特定的,并且与其他A类Hsfs并没有观察到。两组分Hsfs的异质低聚优于均聚,并且HsfA1 / HsfA2异质低聚复合物中的每个Hsf对其超活化剂的功能都有其特征性贡献。寡聚化结构域的不同区域负责导致六聚体复合物形成的特定同聚和异聚寡聚相互作用。结果汇总在HsfA1 / A2超活化复合物在hs基因调控中的组装和功能模型中。

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