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甘氨酰tRNA合成酶多系起源的结构见解

Structural Insights into the Polyphyletic Origins of Glycyl tRNA Synthetases.

作者信息

Valencia-Sánchez Marco Igor, Rodríguez-Hernández Annia, Ferreira Ruben, Santamaría-Suárez Hugo Aníbal, Arciniega Marcelino, Dock-Bregeon Anne-Catherine, Moras Dino, Beinsteiner Brice, Mertens Haydyn, Svergun Dmitri, Brieba Luis G, Grøtli Morten, Torres-Larios Alfredo

机构信息

From the Departamento de Bioquímica y Biología Estructural, Instituto de Fisiología Celular, Universidad Nacional Autónoma de México, Circuito Exterior s/n, Ciudad Universitaria, Apartado Postal 70-243, Mexico City 04510, México.

From the Departamento de Bioquímica y Biología Estructural, Instituto de Fisiología Celular, Universidad Nacional Autónoma de México, Circuito Exterior s/n, Ciudad Universitaria, Apartado Postal 70-243, Mexico City 04510, México, the Laboratorio Nacional de Genómica para la Biodiversidad, Centro de Investigación y Estudios Avanzados del Instituto Politécnico Nacional, Irapuato, Guanajuato 04510, México.

出版信息

J Biol Chem. 2016 Jul 8;291(28):14430-46. doi: 10.1074/jbc.M116.730382. Epub 2016 May 23.

Abstract

Glycyl tRNA synthetase (GlyRS) provides a unique case among class II aminoacyl tRNA synthetases, with two clearly widespread types of enzymes: a dimeric (α2) species present in some bacteria, archaea, and eukaryotes; and a heterotetrameric form (α2β2) present in most bacteria. Although the differences between both types of GlyRS at the anticodon binding domain level are evident, the extent and implications of the variations in the catalytic domain have not been described, and it is unclear whether the mechanism of amino acid recognition is also dissimilar. Here, we show that the α-subunit of the α2β2 GlyRS from the bacterium Aquifex aeolicus is able to perform the first step of the aminoacylation reaction, which involves the activation of the amino acid with ATP. The crystal structure of the α-subunit in the complex with an analog of glycyl adenylate at 2.8 Å resolution presents a conformational arrangement that properly positions the cognate amino acid. This work shows that glycine is recognized by a subset of different residues in the two types of GlyRS. A structural and sequence analysis of class II catalytic domains shows that bacterial GlyRS is closely related to alanyl tRNA synthetase, which led us to define a new subclassification of these ancient enzymes and to propose an evolutionary path of α2β2 GlyRS, convergent with α2 GlyRS and divergent from AlaRS, thus providing a possible explanation for the puzzling existence of two proteins sharing the same fold and function but not a common ancestor.

摘要

甘氨酰 - tRNA合成酶(GlyRS)在II类氨酰 - tRNA合成酶中是个独特的例子,有两种明显广泛存在的酶类型:一种是存在于某些细菌、古菌和真核生物中的二聚体(α2)形式;另一种是存在于大多数细菌中的异源四聚体形式(α2β2)。尽管这两种类型的GlyRS在反密码子结合结构域水平上的差异很明显,但催化结构域变化的程度和影响尚未被描述,而且氨基酸识别机制是否也不同尚不清楚。在这里,我们表明来自嗜热栖热菌的α2β2 GlyRS的α亚基能够执行氨酰化反应的第一步,即利用ATP激活氨基酸。α亚基与甘氨酰腺苷酸类似物形成的复合物的晶体结构在2.8 Å分辨率下呈现出一种构象排列,能正确定位同源氨基酸。这项工作表明,甘氨酸在两种类型的GlyRS中由不同的残基子集识别。对II类催化结构域的结构和序列分析表明,细菌GlyRS与丙氨酰 - tRNA合成酶密切相关,这使我们定义了这些古老酶的一个新的亚分类,并提出了α2β2 GlyRS的进化路径,它与α2 GlyRS趋同且与丙氨酰 - tRNA合成酶(AlaRS)趋异,从而为两种具有相同折叠和功能但没有共同祖先的蛋白质令人困惑的存在提供了一种可能的解释。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/c455/4938167/1cbb90280896/zbc0311648140001.jpg

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