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水杨酸钠会降低细胞内的三磷酸腺苷(ATP)水平,诱导热休克因子结合和染色体疏松,但不会诱导果蝇中的热休克蛋白70(hsp 70)基因转录。

Sodium salicylate decreases intracellular ATP, induces both heat shock factor binding and chromosomal puffing, but does not induce hsp 70 gene transcription in Drosophila.

作者信息

Winegarden N A, Wong K S, Sopta M, Westwood J T

机构信息

Department of Zoology, Erindale College, University of Toronto, Mississauga, Ontario, Canada L5L 1C6.

出版信息

J Biol Chem. 1996 Oct 25;271(43):26971-80. doi: 10.1074/jbc.271.43.26971.

Abstract

Sodium salicylate has long been known to be an inducer of the heat shock puffs and presumably heat shock gene transcription in the polytene chromosomes of Drosophila salivary gland cells. Stress-induced transcription of the heat shock genes is mediated by the transcription factor known as Heat Shock Factor (HSF). In yeast, sodium salicylate has been reported to induce the DNA binding of HSF but not heat shock gene transcription itself, and similar findings have been reported in human cells. This apparent discrepancy in the induction of certain aspects of the heat shock response between these organisms prompted us to carefully reexamine the induction of the heat shock response in Drosophila salivary gland cells of third instar larvae and Drosophila tissue culture (SL2) cells. Sodium salicylate (3-30 mM) decreases intracellular ATP levels in SL2 cells and induces HSF binding activity in SL2 and salivary gland cells in a dose-dependent manner. Despite the induction of HSF binding and heat shock puffs in polytene chromosomes, we found no evidence for increased hsp 70 gene transcription suggesting that chromosomal puffing and gene transcription may be separable events. Salicylate did not induce the HSF hyperphosphorylation that is normally associated with HSF activation. Furthermore, salicylate (30 mM) prevented heat-induced hyperphosphorylation of HSF and hsp 70 gene transcription indicating that salicylate's inhibitory effect on hsp 70 transcription may be independent of its effect on HSF binding activity. We propose that the reduction in intracellular ATP caused by the addition of salicylate likely plays a role in the activation of HSF binding and the inhibition of both HSF hyperphosphorylation and hsp 70 gene transcription.

摘要

长期以来,人们一直知道水杨酸钠是果蝇唾液腺细胞多线染色体中热休克胀泡的诱导剂,大概也是热休克基因转录的诱导剂。热休克基因的应激诱导转录由称为热休克因子(HSF)的转录因子介导。在酵母中,据报道水杨酸钠可诱导HSF与DNA结合,但不能诱导热休克基因本身的转录,在人类细胞中也有类似的发现。这些生物体在热休克反应某些方面诱导上的明显差异促使我们仔细重新研究三龄幼虫果蝇唾液腺细胞和果蝇组织培养(SL2)细胞中热休克反应的诱导情况。水杨酸钠(3 - 30 mM)可降低SL2细胞内的ATP水平,并以剂量依赖的方式诱导SL2细胞和唾液腺细胞中的HSF结合活性。尽管在多线染色体中诱导了HSF结合和热休克胀泡,但我们没有发现hsp 70基因转录增加的证据,这表明染色体胀泡和基因转录可能是可分离的事件。水杨酸盐没有诱导通常与HSF激活相关的HSF过度磷酸化。此外,水杨酸盐(30 mM)可阻止热诱导的HSF过度磷酸化和hsp 70基因转录,这表明水杨酸盐对hsp 70转录的抑制作用可能与其对HSF结合活性的影响无关。我们认为,添加水杨酸盐导致的细胞内ATP减少可能在HSF结合的激活以及HSF过度磷酸化和hsp 70基因转录的抑制中起作用。

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