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Folding of guanine quadruplex molecules – funnel-like mechanism or kinetic partitioning? An overview from MD simulation studies

机译:鸟嘌呤四链体分子的折叠–漏斗状机制还是动力学分配? MD模拟研究概述

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摘要

Background\udGuanine quadruplexes (GQs) play vital roles in many cellular processes and are of much interest as drug targets. In contrast to the availability of many structural studies, there is still limited knowledge on GQ folding.\ud\udScope of review\ud\udWe review recent molecular dynamics (MD) simulation studies of the folding of GQs, with an emphasis paid to the human telomeric DNA GQ. We explain the basic principles and limitations of all types of MD methods used to study unfolding and folding in a way accessible to non-specialists. We discuss the potential role of G-hairpin, G-triplex and alternative GQ intermediates in the folding process. We argue that, in general, folding of GQs is fundamentally different from funneled folding of small fast-folding proteins, and can be best described by a kinetic partitioning (KP) mechanism. KP is a competition between at least two (but often many) well-separated and structurally different conformational ensembles.\ud\udMajor conclusions\ud\udThe KP mechanism is the only plausible way to explain experiments reporting long time-scales of GQ folding and the existence of long-lived sub-states. A significant part of the natural partitioning of the free energy landscape of GQs comes from the ability of the GQ-forming sequences to populate a large number of anti-syn patterns in their G-tracts. The extreme complexity of the KP of GQs typically prevents an appropriate description of the folding landscape using just a few order parameters or collective variables.\ud\udGeneral significance\ud\udWe reconcile available computational and experimental studies of GQ folding and formulate basic principles characterizing GQ folding landscapes.
机译:背景\鸟嘌呤四链体(GQs)在许多细胞过程中起着至关重要的作用,并作为药物靶标引起了人们的极大兴趣。与许多结构研究的可用性相反,关于GQ折叠的知识仍然有限。\ ud \ ud综述范围\ ud \ ud我们回顾了最近对GQs折叠的分子动力学(MD)模拟研究,重点放在了GQ折叠上。人类端粒DNA GQ。我们以非专业人员容易理解的方式,解释了用于研究展开和折叠的所有MD方法的基本原理和局限性。我们讨论了G-发夹,G-三链体和其他GQ中间体在折叠过程中的潜在作用。我们认为,一般而言,GQ的折叠与小的快速折叠蛋白的漏斗折叠从根本上是不同的,并且可以通过动力学分配(KP)机制来最好地描述。 KP是至少两个(但经常很多)分隔良好且结构上不同的构象合体之间的竞争。\ ud \ ud主要结论\ ud \ udKP机制是解释实验报告GQ折叠和长期存在的子国家。 GQs的自由能态自然划分的重要部分来自GQ形成序列在其G序列中填充大量反合成模式的能力。 GQ的KP极其复杂,通常仅使用几个顺序参数或集体变量就无法正确描述折叠环境。\ ud \ ud一般意义\ ud \ ud我们协调了GQ折叠的可用计算和实验研究,并制定了表征基本特征的方法GQ折叠景观。

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