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A disappearing act performed by magnesium: the nucleotide exchange mechanism of Ran GTPase by Quantum mechanics/Molecular mechanics studies

机译:镁的消失行为:通过量子力学/分子力学研究Ran GTPase的核苷酸交换机制

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摘要

The Ran GTPase protein is a guanine nucleotide-binding protein (GNBP) with an acknowledged profile in cancer onset, progression and metastases. The complex mechanism adopted by GNBPs in exchanging GDP for GTP is an intriguing process and crucial for Ran viability. The successful completion of the process is a fundamental aspect of propagating downstream signalling events. QM/MM molecular dynamics simulations were employed in this study to provide a deeper mechanistic understanding of the initiation of nucleotide exchange in Ran. Results indicate significant disruption of the metal-binding site upon interaction with RCC1 (the Ran guanine nucleotide exchange factor), overall culminating in the prominent shift of the divalent magnesium ion. The observed ion drifting is reasoned to occur as a consequence of the complex formation between Ran and RCC1 and is postulated to be a critical factor in the exchange process adopted by Ran. This is the first report to observe and detail such intricate dynamics for a protein in Ras superfamily.
机译:Ran GTPase蛋白是一种鸟嘌呤核苷酸结合蛋白(GNBP),在癌症发作,进展和转移中具有公认的特征。 GNBP在将GDP换成GTP时采用了复杂的机制,这是一个有趣的过程,对Ran的生存能力至关重要。该过程的成功完成是传播下游信令事件的基本方面。 QM / MM分子动力学模拟被用于这项研究中,以提供对Ran中核苷酸交换起始的更深层的机械理解。结果表明与RCC1(Ran鸟嘌呤核苷酸交换因子)相互作用后,金属结合位点发生了显着破坏,最终导致二价镁离子的显着移动。据认为,观察到的离子漂移是Ran与RCC1之间形成络合物的结果,并且被认为是Ran采用的交换过程中的关键因素。这是第一份观察和详细介绍Ras超家族蛋白质复杂动态的报告。

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