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酵母和哺乳动物的Ras信号通路独立于热休克转录因子调控热休克基因的转录。

The yeast and mammalian Ras pathways control transcription of heat shock genes independently of heat shock transcription factor.

作者信息

Engelberg D, Zandi E, Parker C S, Karin M

机构信息

Department of Pharmacology, School of Medicine, University of California, San Diego, La Jolla 92093-0636.

出版信息

Mol Cell Biol. 1994 Jul;14(7):4929-37. doi: 10.1128/mcb.14.7.4929-4937.1994.

Abstract

Yeast strains in which the Ras-cyclic AMP (cAMP) pathway is constitutively active are sensitive to heat shock, whereas mutants in which the activity of this pathway is low are hyperresistant to heat shock. To determine the molecular basis for these differences, we examined the transcriptional induction of heat shock genes in various yeast strains. Activation of heat shock genes was attenuated in the strains in which the Ras-cAMP pathway is constitutively active. In contrast, in a strain deficient in cAMP production, several heat shock genes were induced by removal of cAMP from the medium. These results indicate that the Ras-cAMP pathway affects the induction of heat shock genes. In all of the mutants, heat shock transcription factor expression and activity were identical to those in wild-type cells. The response to heat shock in Ha-ras-transformed rat fibroblasts was also studied. While no induction of Hsp68 was observed in Ha-ras-transformed cells, proper regulation of heat shock transcription factor was found. Therefore, in mammals, as in Saccharomyces cerevisiae, the Ras pathway controls the transcription of heat shock genes via a mechanism not involving the heat shock transcription factor.

摘要

Ras - 环磷酸腺苷(cAMP)途径持续激活的酵母菌株对热休克敏感,而该途径活性较低的突变体对热休克具有高抗性。为了确定这些差异的分子基础,我们检测了各种酵母菌株中热休克基因的转录诱导情况。在Ras - cAMP途径持续激活的菌株中,热休克基因的激活减弱。相反,在cAMP产生缺陷的菌株中,从培养基中去除cAMP可诱导几个热休克基因。这些结果表明Ras - cAMP途径影响热休克基因的诱导。在所有突变体中,热休克转录因子的表达和活性与野生型细胞中的相同。还研究了Ha - ras转化的大鼠成纤维细胞对热休克的反应。虽然在Ha - ras转化的细胞中未观察到Hsp68的诱导,但发现热休克转录因子受到适当调控。因此,在哺乳动物中,与酿酒酵母一样,Ras途径通过一种不涉及热休克转录因子的机制控制热休克基因的转录。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/3124/358865/6c9beb208727/molcellb00007-0607-a.jpg

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