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Ribosome Mechanics Informs about Mechanism

机译:核糖体力学告知机理

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The essential aspects of the ribosome's mechanism can be extracted from coarse-grained simulations, including the ratchet motion, the movement together of critical bases at the decoding center, and movements of the peptide tunnel lining that assist in the expulsion of the synthesized peptide. Because of its large size, coarse graining helps to simplify and to aid in the understanding of its mechanism. Results presented here utilize coarse-grained elastic network modeling to extract the dynamics, and both RNAs and proteins are coarse grained. We review our previous results, showing the well-known ratchet motions and the motions in the peptide tunnel and in the mRNA tunnel. The motions of the lining of the peptide tunnel appear to assist in the expulsion of the growing peptide chain, and clamps at the ends of the mRNA tunnel with three proteins ensure that the mRNA is held tightly during decoding and essential for the helicase activity at the entrance. The entry clamp may also assist in base recognition to ensure proper selection of the incoming tRNA. The overall precision of the ribosome machine-like motions is remarkable. (C) 2015 Elsevier Ltd. All rights reserved.
机译:核糖体机制的基本方面可以从粗粒度模拟中提取,包括棘轮运动,解码中心关键碱基的共同运动以及有助于排出合成肽的肽通道内衬的运动。由于其粗大,粗粒度有助于简化并有助于理解其机理。本文介绍的结果利用粗粒度弹性网络模型来提取动力学,并且RNA和蛋白质都是粗粒度的。我们回顾了我们以前的结果,显示了众所周知的棘轮运动以及肽通道和mRNA通道中的运动。肽通道内衬的运动似乎有助于排出生长中的肽链,并且在mRNA通道的末端夹有三种蛋白质,可确保在解码过程中将mRNA紧紧固定,并且对于解旋酶活性至关重要。入口。进入钳也可以帮助碱基识别,以确保正确选择进入的tRNA。核糖体类机器运动的整体精度非常出色。 (C)2015 Elsevier Ltd.保留所有权利。

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