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辅助因子 Dcs1 对 5'-3'外切核酸酶 Xrn1 的激活对于酵母中线粒体功能至关重要。

Activation of 5'-3' exoribonuclease Xrn1 by cofactor Dcs1 is essential for mitochondrial function in yeast.

机构信息

Laboratoire de Biologie Moléculaire et Cellulaire des Eucaryotes, Institut de Biologie Physico-Chimique, Centre National de la Recherche Scientifique, Formation de Recherche en Evolution (FRE) 3354, Université Pierre et Marie Curie, 75005 Paris, France.

出版信息

Proc Natl Acad Sci U S A. 2012 May 22;109(21):8264-9. doi: 10.1073/pnas.1120090109. Epub 2012 May 8.

Abstract

The scavenger decapping enzyme Dcs1 has been shown to facilitate the activity of the cytoplasmic 5'-3' exoribonuclease Xrn1 in eukaryotes. Dcs1 has also been shown to be required for growth in glycerol medium. We therefore wondered whether the capacity to activate RNA degradation could account for its requirement for growth on this carbon source. Indeed, a catalytic mutant of Xrn1 is also unable to grow in glycerol medium, and removal of the nuclear localization signal of Rat1, the nuclear homolog of Xrn1, restores glycerol growth. A cytoplasmic 5'-3' exoribonuclease activity is therefore essential for yeast growth on glycerol, suggesting that Xrn1 activation by Dcs1 is physiologically important. In fact, Xrn1 is essentially inactive in the absence of Dcs1 in vivo. We analyzed the role of Dcs1 in the control of exoribonuclease activity in vitro and propose that Dcs1 is a specific cofactor of Xrn1. Dcs1 does not stimulate the activity of other 5'-3' exoribonucleases, such as Rat1, in vitro. We demonstrate that Dcs1 improves the apparent affinity of Xrn1 for RNA and that Xrn1 and Dcs1 can form a complex in vitro. We examined the biological significance of this regulation by performing 2D protein gel analysis. We observed that a set of proteins showing decreased levels in a DCS deletion strain, some essential for respiration, are also systematically decreased in an XRN1 deletion mutant. Therefore, we propose that the activation of Xrn1 by Dcs1 is important for respiration.

摘要

scavenger 脱帽酶 Dcs1 已被证明可促进真核生物细胞质 5'-3'外切核酸酶 Xrn1 的活性。Dcs1 也被证明是在甘油培养基中生长所必需的。因此,我们想知道激活 RNA 降解的能力是否可以解释其对这种碳源生长的需求。事实上,Xrn1 的催化突变体也无法在甘油培养基中生长,并且去除核定位信号 Rat1(Xrn1 的核同源物)可恢复甘油生长。因此,细胞质 5'-3'外切核酸酶活性对于酵母在甘油上的生长是必不可少的,这表明 Dcs1 对 Xrn1 的激活在生理上是重要的。事实上,在体内缺乏 Dcs1 的情况下,Xrn1 基本上是无活性的。我们分析了 Dcs1 在体外控制外切核酸酶活性中的作用,并提出 Dcs1 是 Xrn1 的特异性辅助因子。Dcs1 不会在体外刺激其他 5'-3'外切核酸酶(如 Rat1)的活性。我们证明 Dcs1 可提高 Xrn1 对 RNA 的表观亲和力,并且 Xrn1 和 Dcs1 可以在体外形成复合物。我们通过进行 2D 蛋白质凝胶分析来检验这种调节的生物学意义。我们观察到,在 DCS 缺失菌株中水平降低的一组蛋白,一些对呼吸至关重要的蛋白,在 XRN1 缺失突变体中也系统性地降低。因此,我们提出 Dcs1 对 Xrn1 的激活对于呼吸是重要的。

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本文引用的文献

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