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Structural basis of the initial binding of tRNA(lle) lysidine synthetase TilS with ATP and L-lysine

机译:tRNA(lle)赖氨酸合成酶TilS与ATP和L-赖氨酸的初始结合的结构基础

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摘要

In the bacterial genetic-code system, the codon AUA is decoded as isoleucine by tRNA(2)(lle) with the lysidine residue at the wobble position. Lysidine is derived from cytidine, with ATP and L-lysine, by tRNA(lle) lysidine synthetase (TilS), which is an N-type ATP pyrophosphatase. In this study, we determined the crystal structure of Aquifex aeolicus TilS, complexed with ATP, Mg2+, and L-lysine, at 2.5 angstrom resolution. The presence of the TilS-specific subdomain causes the active site to have two separate gateways, a large hole and a narrow tunnel on the opposite side. ATP is bound inside the hole, and L-lysine is bound at the entrance of the tunnel. The conserved Asp36 in the PP-motif coordinates Mg2+. In these initial binding modes,the ATP, Mg2+, and L-lysine are held far apart from each other, but they seem to be brought together for the reaction upon cytidine binding, with putative structural changes of the complex.
机译:在细菌遗传密码系统中,密码子AUA被tRNA(2)(lle)解码为异亮氨酸,赖氨酸残基位于摆动位置。赖氨酸是由胞苷,ATP和L-赖氨酸通过tRNA(lle)赖氨酸合成酶(TilS)(一种N型ATP焦磷酸酶)衍生而来的。在这项研究中,我们确定了Aquifex aeolicus TilS与ATP,Mg2 +和L-赖氨酸复合的晶体结构,分辨率为2.5埃。 TilS特定子域的存在会导致活动站点在相对侧具有两个单独的网关,一个大洞和一条狭窄隧道。 ATP结合在孔内,L-赖氨酸结合在隧道的入口。 PP基序中的保守Asp36坐标为Mg2 +。在这些初始结合模式中,ATP,Mg2 +和L-赖氨酸彼此保持较远的距离,但在胞苷结合后,它们似乎结合在一起以进行反应,并假定了复合物的结构变化。

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