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Deficient induction of human hsp70 heat shock gene transcription in Y79 retinoblastoma cells despite activation of heat shock factor 1.

机译:尽管激活了热激因子1,但在Y79视网膜母细胞瘤细胞中仍无法诱导人hsp70热激基因转录。

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摘要

One of the basic features of the inducible heat shock response is the activation of heat shock factor which results in the rapid transcriptional induction of the heat shock genes. Although it is widely considered that the heat shock response is ubiquitous, several reports have indicated that the transcriptional response can vary in both intensity and kinetics and often in a tissue-specific manner. Of interest have been studies on the expression of heat shock genes in the brain, particularly observations that certain cultured neuronal cells exhibit a diminished heat shock response. We demonstrate that transcription of the gene encoding a 70-kDa heat shock protein (hsp70) is diminished upon heat shock in Y79 human retinoblastoma cells (which are of neuronal origin) despite both the activation of heat shock factor 1 and induced transcription of another heat shock gene, hsp90 alpha. This uncoupling of stress-induced transcription of the hsp70 and hsp90 alpha genes, which are typically coordinately regulated in response to stress, appears to be due to the selective inability of trans-acting factors, including heat shock factor 1, to bind in vivo to the hsp70 promoter as the result of a chromatin-mediated effect.
机译:可诱导的热激反应的基本特征之一是热激因子的激活,其导致热激基因的快速转录诱导。尽管人们普遍认为热休克反应无处不在,但是有几篇报道表明,转录反应在强度和动力学上均可以变化,并且通常以组织特异性方式变化。已经对脑中热激基因的表达进行了研究,特别是观察到某些培养的神经元细胞的热激反应减弱。我们证明,尽管热休克因子1的激活和另一种热的诱导转录,但在Y79人视网膜母细胞瘤细胞(属于神经元起源)中,热激后编码70 kDa热激蛋白(hsp70)的基因的转录减少了。休克基因,hsp90 alpha。应激诱导的hsp70和hsp90 alpha基因转录的这种解偶联,通常是响应应激而受到协调调节的,这似乎是由于包括热休克因子1在内的反式作用因子选择性无法在体内与hsp70启动子是染色质介导作用的结果。

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