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DAXX interacts with heat shock factor 1 during stress activation and enhances its transcriptional activity

机译:DAXX在压力激活过程中与热激因子1相互作用并增强其转录活性

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DAXX, a modulator of apoptosis and a repressor of basal transcription, was identified in a two-hybrid screen as a protein capable of interacting with a trimeric form of human heat shock factor 1 (HSF1). In human cells, DAXX interacted with HSF1 essentially only during stress, i.e., when factor trimerization occurred. Several lines of experimentation suggested that DAXX is an important mediator of HSF1 activation: (i) overexpression of DAXX enhanced basal transactivation competence of HSF1 in the absence of a stress; (ii) a DAXX fragment exerted dominant-negative effects on HSH activation by different types of stress; (iii) induction of heat shock or stress protein (HSP)70 by heat stress was defective in a cell line lacking functional DAXX; and (iv) RNA interference depletion of DAXX also substantially reduced heat induction of HSF1 activity and HSP70 expression. HSF1 transactivation competence is repressed by an HSP90-containing multichaperone complex that interacts with trimeric factor. Overexpressed HSF1, known to be largely trimeric, only marginally increased HSF1 activity on its own but potentiated the activating effect of DAXX overexpression. Expression of a nonnative protein capable of competing for multichaperone complex also synergistically enhanced activation of HSF1 by DAXX. These observations suggest a model in which DAXX released from its nuclear stores during stress opposes repression of HSF1 transactivation competence by multichaperone complex through its interaction with trimerized HSH. Our identification of DAXX as a mediator of HSF1 activation raises the question whether DAXX produces some of its pleiotropic effects through modulation of HSP levels. [References: 58]
机译:DAXX是细胞凋亡的调节剂和基础转录的阻遏物,在两次杂交筛选中被鉴定为能够与人类热休克因子1(HSF1)的三聚体形式相互作用的蛋白质。在人类细胞中,DAXX基本上仅在应激时(即发生因子三聚时)与HSF1相互作用。几项实验表明DAXX是HSF1激活的重要介体:(i)DAXX的过表达增强了HSF1在无压力下的基础反式激活能力; (ii)DAXX片段通过不同类型的压力对HSH激活起显性负作用; (iii)在缺乏功能性DAXX的细胞系中,由热应激诱导的热休克或应激蛋白(HSP)70缺陷。 (iv)DAXX的RNA干扰消耗也大大降低了HSF1活性和HSP70表达的热诱导。 HSF1反式激活能力受到与三聚体因子相互作用的含HSP90的多分子伴侣复合物的抑制。过度表达的HSF1,主要是三聚体,仅略微增加了其自身的HSF1活性,但增强了DAXX过表达的激活作用。能够竞争多分子伴侣复合物的非天然蛋白的表达也通过DAXX协同增强了HSF1的激活。这些观察结果提出了这样一种模型,其中DAXX在压力期间从其核存储中释放出来,反对多伴侣复合物通过其与三聚HSH的相互作用来抑制HSF1反式激活能力。我们将DAXX鉴定为HSF1激活的介体提出了一个问题,即DAXX是否通过调节HSP水平来产生其多效性效应。 [参考:58]

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