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MD simulations of ligand-bound and ligand-free aptamer: Molecular level insights into the binding and switching mechanism of the add A-riboswitch

机译:MD模拟配体结合的和无配体的适体:分子水平的洞察力添加A-核糖开关的绑定和转换机制

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摘要

Riboswitches are structural cis-acting genetic regulatory elements in 5′ UTRs of mRNAs, consisting of an aptamer domain that regulates the behavior of an expression platform in response to its recognition of, and binding to, specific ligands. While our understanding of the ligand-bound structure of the aptamer domain of the adenine riboswitches is based on crystal structure data and is well characterized, understanding of the structure and dynamics of the ligand-free aptamer is limited to indirect inferences from physicochemical probing experiments. Here we report the results of 15-nsec-long explicit-solvent molecular dynamics simulations of the add A-riboswitch crystal structure (1Y26), both in the adenine-bound (CLOSED) state and in the adenine-free (OPEN) state. Root-mean-square deviation, root-mean-square fluctuation, dynamic cross-correlation, and backbone torsion angle analyses are carried out on the two trajectories. These, along with solvent accessible surface area analysis of the two average structures, are benchmarked against available experimental data and are shown to constitute the basis for obtaining reliable insights into the molecular level details of the binding and switching mechanism. Our analysis reveals the interaction network responsible for, and conformational changes associated with, the communication between the binding pocket and the expression platform. It further highlights the significance of a, hitherto unreported, noncanonical W:H trans base pairing between A73 and A24, in the OPEN state, and also helps us to propose a possibly crucial role of U51 in the context of ligand binding and ligand discrimination.
机译:核糖开关是mRNAs 5'UTRs中的顺式作用基因调控元件,由适体结构域组成,该适体结构域响应于其对特定配体的识别和结合而调节表达平台的行为。虽然我们对腺嘌呤核糖开关的适体结构域的配体结合结构的了解是基于晶体结构数据并已得到很好的表征,但对不含配体的适体的结构和动力学的理解仅限于通过理化探针实验的间接推论。在这里,我们报告了在腺嘌呤键合(CLOSED)状态和无腺嘌呤(OPEN)状态下添加A-核糖开关晶体结构(1Y26)的15纳秒长的显式溶剂分子动力学模拟的结果。对两条轨迹进行了均方根偏差,均方根波动,动态互相关和主干扭转角分析。这些,以及两个平均结构的溶剂可及表面积分析,相对于可用的实验数据进行了基准测试,表明它们构成了获得对结合和转换机理的分子水平细节的可靠见解的基础。我们的分析揭示了相互作用网络,该网络负责结合口袋和表达平台之间的通信,并与其构象相关。它进一步突显了在OPEN状态下,A73和A24之间迄今未报道的非经典W:H反碱基配对的重要性,并且还帮助我们提出了U51在配体结合和配体识别的背景下可能发挥的关键作用。

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