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作用于质膜水平的应激因素通过酿酒酵母的应激反应元件(STRE)诱导转录。

Stress factors acting at the level of the plasma membrane induce transcription via the stress response element (STRE) of the yeast Saccharomyces cerevisiae.

作者信息

Moskvina E, Imre E M, Ruis H

机构信息

Vienna Biocenter, Institut für Biochemie und Molekulare Zellbiologie der Universität Wien and Ludwig Boltzmann-Forschungsstelle für Biochemie, Dr Bohrgasse 9, A-1030 Vienna, Austria.

出版信息

Mol Microbiol. 1999 Jun;32(6):1263-72. doi: 10.1046/j.1365-2958.1999.01438.x.

Abstract

A variety of stress factors induces transcription via the stress response element (STRE) present in control regions of a number of genes of the yeast Saccharomyces cerevisiae. Induction of transcription involves nuclear translocation of the STRE-binding transcription activators Msn2p and Msn4p. The primary cellular events triggering this translocation are presently not well understood. In this investigation, we have observed that a number of factors acting at the level of the yeast plasma membrane, including the antifungal agent nystatin, the steroidal alkaloid tomatine, benzyl alcohol, a number of detergents and the plasma membrane H+-ATPase inhibitor diethylstilbestrol or mutations in the PMA1 gene encoding the plasma membrane ATPase, induce Msn2p nuclear accumulation and STRE-dependent transcription. At least some of the stress factors acting via STREs cause an increase in plasma membrane permeability, leading to a decrease in membrane potential, which might be a primary cellular stress signal. A decrease in internal pH triggered by permeabilization of the plasma membrane or a change in cAMP levels are at least not obligatory factors in intracellular stress signal transduction. The signal transduction pathway transmitting the signal generated at the plasma membrane to Msn2p is still unknown.

摘要

多种应激因素通过存在于酿酒酵母许多基因调控区域的应激反应元件(STRE)诱导转录。转录的诱导涉及STRE结合转录激活因子Msn2p和Msn4p的核转位。目前尚不清楚触发这种转位的主要细胞事件。在本研究中,我们观察到一些作用于酵母质膜水平的因素,包括抗真菌剂制霉菌素、甾体生物碱番茄碱、苯甲醇、多种去污剂以及质膜H⁺-ATP酶抑制剂己烯雌酚,或者编码质膜ATP酶的PMA1基因突变,均可诱导Msn2p核积累和STRE依赖性转录。至少一些通过STRE起作用的应激因素会导致质膜通透性增加,从而导致膜电位降低,这可能是一种主要的细胞应激信号。质膜通透化引发的细胞内pH降低或cAMP水平变化至少不是细胞内应激信号转导中的必要因素。将质膜产生的信号传递给Msn2p的信号转导途径仍然未知。

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