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II类氨酰-tRNA合成酶:与天冬氨酰-tRNA(Asp)复合的酵母天冬氨酰-tRNA合成酶的晶体结构

Class II aminoacyl transfer RNA synthetases: crystal structure of yeast aspartyl-tRNA synthetase complexed with tRNA(Asp).

作者信息

Ruff M, Krishnaswamy S, Boeglin M, Poterszman A, Mitschler A, Podjarny A, Rees B, Thierry J C, Moras D

机构信息

Laboratoire de Cristallographie Biologique, Institut de Biologie Moléculaire et Cellulaire du CNRS, Université Louis Pasteur, Strasbourg, France.

出版信息

Science. 1991 Jun 21;252(5013):1682-9. doi: 10.1126/science.2047877.

Abstract

The crystal structure of the binary complex tRNA(Asp)-aspartyl tRNA synthetase from yeast was solved with the use of multiple isomorphous replacement to 3 angstrom resolution. The dimeric synthetase, a member of class II aminoacyl tRNA synthetases (aaRS's) exhibits the characteristic signature motifs conserved in eight aaRS's. These three sequence motifs are contained in the catalytic site domain, built around an antiparallel beta sheet, and flanked by three alpha helices that form the pocket in which adenosine triphosphate (ATP) and the CCA end of tRNA bind. The tRNA(Asp) molecule approaches the synthetase from the variable loop side. The two major contact areas are with the acceptor end and the anticodon stem and loop. In both sites the protein interacts with the tRNA from the major groove side. The correlation between aaRS class II and the initial site of aminoacylation at 3'-OH can be explained by the structure. The molecular association leads to the following features: (i) the backbone of the GCCA single-stranded portion of the acceptor end exhibits a regular helical conformation; (ii) the loop between residues 320 and 342 in motif 2 interacts with the acceptor stem in the major groove and is in contact with the discriminator base G and the first base pair UA; and (iii) the anticodon loop undergoes a large conformational change in order to bind the protein. The conformation of the tRNA molecule in the complex is dictated more by the interaction with the protein than by its own sequence.

摘要

利用多重同晶置换法解析了来自酵母的二元复合物tRNA(Asp)-天冬氨酰tRNA合成酶的晶体结构,分辨率达到3埃。二聚体合成酶是II类氨酰tRNA合成酶(aaRS)家族的成员,具有在8种aaRS中保守的特征性基序。这三个序列基序包含在催化位点结构域中,该结构域围绕一个反平行β折叠构建,并由三个α螺旋侧翼包围,形成了三磷酸腺苷(ATP)和tRNA的CCA末端结合的口袋。tRNA(Asp)分子从可变环一侧接近合成酶。两个主要接触区域是与受体末端以及反密码子茎环。在这两个位点,蛋白质都从大沟侧与tRNA相互作用。结构可以解释II类aaRS与3'-OH处氨酰化起始位点之间的相关性。分子缔合导致以下特征:(i)受体末端GCCA单链部分的主链呈现规则的螺旋构象;(ii)基序2中残基320和342之间的环在大沟中与受体茎相互作用,并与判别碱基G和第一个碱基对UA接触;(iii)反密码子环发生大的构象变化以便与蛋白质结合。复合物中tRNA分子的构象更多地由与蛋白质的相互作用决定,而非其自身序列。

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