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Capture and quality control mechanisms for ATP binding

机译:对于aTp结合捕捉和质量控制机制

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摘要

The catalytic events in members of the nucleotidylyl transferase superfamily are initiated by a millisecond binding of ATP in the active site. Through metadynamics simulations on a class I aminoacyl-tRNA synthetase (aaRSs), the largest group in the superfamily, we calculate the free energy landscape of ATP selection and binding. Mutagenesis studies and fluorescence spectroscopy validated the identification of the most populated intermediate states. The rapid first binding step involves formation of encounter complexes captured through a fly-casting mechanism that acts up on the triphosphate moiety of ATP. In the slower nucleoside binding step, a conserved histidine in the HxxH motif orients the incoming ATP through base-stacking interactions resulting in a deep minimum in the free energy surface. Mutation of this histidine significantly decreases the binding affinity measured experimentally and computationally. The metadynamics simulations further reveal an intermediate quality control state that the synthetases and most likely other members of the superfamily use to select ATP over other nucleoside triphosphates.
机译:核苷酸转移酶超家族成员中的催化事件是由活性位点中ATP的毫秒结合引发的。通过对超家族中最大的一类I类氨酰基-tRNA合成酶(aaRSs)进行的元动力学模拟,我们计算了ATP选择和结合的自由能态。诱变研究和荧光光谱法验证了人口最多的中间状态的鉴定。快速的第一结合步骤涉及形成通过作用于ATP的三磷酸部分的蝇铸机制捕获的相遇复合物。在较慢的核苷结合步骤中,HxxH基序中的保守组氨酸通过碱基堆积相互作用使进入的ATP定向,从而导致自由能表面的深度极小。该组氨酸的突变显着降低了实验和计算得出的结合亲和力。元动力学模拟进一步揭示了中间质量控制状态,合成和最可能的超家族其他成员用来选择ATP,而不是其他三磷酸核苷。

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