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酵母细胞质和线粒体甲硫氨酰 - tRNA合成酶:相同功能的两种结构框架。

Yeast cytoplasmic and mitochondrial methionyl-tRNA synthetases: two structural frameworks for identical functions.

作者信息

Senger B, Despons L, Walter P, Jakubowski H, Fasiolo F

机构信息

UPR n degrees 9002 du CNRS, Institut de Biologie Moléculaire et Cellulaire du CNRS, 15, rue René Descartes, Strasbourg Cedex, 67084, France.

出版信息

J Mol Biol. 2001 Aug 3;311(1):205-16. doi: 10.1006/jmbi.2001.4844.

DOI:10.1006/jmbi.2001.4844
PMID:11469869
Abstract

The yeast Saccharomyces cerevisiae possesses two methionyl-tRNA synthetases (MetRS), one in the cytoplasm and the other in mitochondria. The cytoplasmic MetRS has a zinc-finger motif of the type Cys-X(2)-Cys-X(9)-Cys-X(2)-Cys in an insertion domain that divides the nucleotide-binding fold into two halves, whereas no such motif is present in the mitochondrial MetRS. Here, we show that tightly bound zinc atom is present in the cytoplasmic MetRS but not in the mitochondrial MetRS. To test whether the presence of a zinc-binding site is required for cytoplasmic functions of MetRS, we constructed a yeast strain in which cytoplasmic MetRS gene was inactivated and the mitochondrial MetRS gene was expressed in the cytoplasm. Provided that methionine-accepting tRNA is overexpressed, this strain was viable, indicating that mitochondrial MetRS was able to aminoacylate tRNA(Met) in the cytoplasm. Site-directed mutagenesis demonstrated that the zinc domain was required for the stability and consequently for the activity of cytoplasmic MetRS. Mitochondrial MetRS, like cytoplasmic MetRS, supported homocysteine editing in vivo in the yeast cytoplasm. Both MetRSs catalyzed homocysteine editing and aminoacylation of coenzyme A in vitro. Thus, identical synthetic and editing functions can be carried out in different structural frameworks of cytoplasmic and mitochondrial MetRSs.

摘要

酿酒酵母拥有两种甲硫氨酰 - tRNA合成酶(MetRS),一种存在于细胞质中,另一种存在于线粒体中。细胞质中的MetRS在一个插入结构域中有一个Cys - X(2) - Cys - X(9) - Cys - X(2) - Cys类型的锌指基序,该插入结构域将核苷酸结合结构域分成两半,而线粒体MetRS中不存在这样的基序。在这里,我们表明紧密结合的锌原子存在于细胞质MetRS中,而不存在于线粒体MetRS中。为了测试MetRS的细胞质功能是否需要锌结合位点的存在,我们构建了一个酵母菌株,其中细胞质MetRS基因失活,线粒体MetRS基因在细胞质中表达。如果甲硫氨酸接受tRNA过表达,该菌株是有活力的,这表明线粒体MetRS能够在细胞质中使tRNA(Met)氨酰化。定点诱变表明锌结构域对于细胞质MetRS的稳定性以及因此对于其活性是必需的。线粒体MetRS与细胞质MetRS一样,在酵母细胞质中体内支持同型半胱氨酸编辑。两种MetRS在体外都催化同型半胱氨酸编辑和辅酶A的氨酰化。因此,相同的合成和编辑功能可以在细胞质和线粒体MetRS的不同结构框架中进行。

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