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核糖核酸酶T2家族中酿酒酵母成员Rny1的特性:古老酶类的意外功能?

Characterization of Rny1, the Saccharomyces cerevisiae member of the T2 RNase family of RNases: unexpected functions for ancient enzymes?

作者信息

MacIntosh G C, Bariola P A, Newbigin E, Green P J

机构信息

Departments of Energy Plant Research Laboratory and Biochemistry, Michigan State University, East Lansing, MI 48824, USA.

出版信息

Proc Natl Acad Sci U S A. 2001 Jan 30;98(3):1018-23. doi: 10.1073/pnas.98.3.1018.

Abstract

The T(2) family of nonspecific endoribonucleases (EC ) is a widespread family of RNases found in every organism examined thus far. Most T(2) enzymes are secretory RNases and therefore are found extracellularly or in compartments of the endomembrane system that would minimize their contact with cellular RNA. Although the biological functions of various T(2) RNases have been postulated on the basis of enzyme location or gene expression patterns, the cellular roles of these enzymes are generally unknown. In the present work, we characterized Rny1, the only T(2) RNase in Saccharomyces cerevisiae. Rny1 was found to be an active, secreted RNase whose gene expression is controlled by heat shock and osmotic stress. Inactivation of RNY1 leads to unusually large cells that are temperature-sensitive for growth. These phenotypes can be complemented not only by RNY1 but also by both structurally related and unrelated secretory RNases. Additionally, the complementation depends on RNase activity. When coupled with a recent report on the effect of specific RNAs on membrane permeability [Khvorova, A., Kwak, Y-G., Tamkun, M., Majerfeld, I. & Yarus, M. (1999) Proc. Natl. Acad. Sci. USA 96, 10649-10654], our work suggests an unexpected role for Rny1 and possibly other secretory RNases. These enzymes may regulate membrane permeability or stability, a hypothesis that could present an alternative perspective for understanding their functions.

摘要

非特异性核糖核酸酶T(2)家族(EC )是迄今为止在每种已检测的生物体中都能发现的广泛存在的核糖核酸酶家族。大多数T(2)酶是分泌型核糖核酸酶,因此存在于细胞外或内膜系统的区室中,这些区室会使它们与细胞RNA的接触降至最低。尽管基于酶的定位或基因表达模式对各种T(2)核糖核酸酶的生物学功能进行了推测,但这些酶在细胞中的作用通常仍不清楚。在本研究中,我们对酿酒酵母中唯一的T(2)核糖核酸酶Rny1进行了表征。发现Rny1是一种活性分泌型核糖核酸酶,其基因表达受热休克和渗透胁迫的控制。RNY1失活会导致细胞异常大,且对温度敏感。这些表型不仅可以由RNY1互补,也可以由结构相关和不相关的分泌型核糖核酸酶互补。此外,互补作用取决于核糖核酸酶活性。当与最近关于特定RNA对膜通透性影响的报告[Khvorova, A., Kwak, Y-G., Tamkun, M., Majerfeld, I. & Yarus, M. (1999) Proc. Natl. Acad. Sci. USA 96, 10649-10654]相结合时,我们的研究表明Rny1以及可能其他分泌型核糖核酸酶具有意想不到的作用。这些酶可能调节膜通透性或稳定性,这一假设可能为理解它们的功能提供一个不同的视角。

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