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Exploration of inositol 145-trisphosphate (IP3) regulated dynamics of N-terminal domain of IP3 receptor reveals early phase molecular events during receptor activation

机译:探索肌醇145-三磷酸(IP3)调节IP3受体N末端域的动力学揭示了受体激活过程中的早期分子事件

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摘要

Inositol 1, 4, 5-trisphosphate (IP3) binding at the N-terminus (NT) of IP3 receptor (IP3R) allosterically triggers the opening of a Ca2+-conducting pore located ~100 Å away from the IP3-binding core (IBC). However, the precise mechanism of IP3 binding and correlated domain dynamics in the NT that are central to the IP3R activation, remains unknown. Our all-atom molecular dynamics (MD) simulations recapitulate the characteristic twist motion of the suppressor domain (SD) and reveal correlated ‘clam closure’ dynamics of IBC with IP3-binding, complementing existing suggestions on IP3R activation mechanism. Our study further reveals the existence of inter-domain dynamic correlation in the NT and establishes the SD to be critical for the conformational dynamics of IBC. Also, a tripartite interaction involving Glu283-Arg54-Asp444 at the SD – IBC interface seemed critical for IP3R activation. Intriguingly, during the sub-microsecond long simulation, we observed Arg269 undergoing an SD-dependent flipping of hydrogen bonding between the first and fifth phosphate groups of IP3. This seems to play a major role in determining the IP3 binding affinity of IBC in the presence/absence of the SD. Our study thus provides atomistic details of early molecular events occurring within the NT during and following IP3 binding that lead to channel gating.
机译:在IP3受体(IP3R)的N端(NT)处结合1、4、5、5-三磷酸肌醇(IP3)变构地触发约100〜Å处的Ca 2 + 传导孔的打开来自IP3绑定核心(IBC)。但是,对于IP3R激活至关重要的NT中IP3绑定和相关域动态的精确机制仍然未知。我们的全原子分子动力学(MD)模拟概括了抑制域(SD)的特征性扭转运动,并揭示了具有IP3结合作用的IBC相关的“蛤闭合”动力学,补充了有关IP3R激活机制的现有建议。我们的研究进一步揭示了NT中域间动态相关性的存在,并确定SD对于IBC的构象动力学至关重要。同样,在SD – IBC接口处涉及Glu283-Arg54-Asp444的三方相互作用对于IP3R激活似乎至关重要。有趣的是,在亚微秒长的模拟过程中,我们观察到Arg269在IP3的第一和第五磷酸基团之间经历了SD依赖的氢键翻转。在存在/不存在SD的情况下,这似乎在确定IBC的IP3结合亲和力中起主要作用。因此,我们的研究提供了IP3结合期间和之后导致通道门控的NT中发生的早期分子事件的原子学细节。

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