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首页> 外文期刊>Journal of Biomolecular Structure and Dynamics >Allostery in Orai1 binding to calmodulin revealed from conformational thermodynamics
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Allostery in Orai1 binding to calmodulin revealed from conformational thermodynamics

机译:orai1的仿生症与构象热力学透露的钙调蛋白结合

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Here, we study microscopic mechanism of complex formation between Ca2+-bound calmodulin (holoCaM) and Orai1 that regulates Ca2+-dependent inactivation process in eukaryotic cells. We compute conformational thermodynamic changes in holoCaM with respect to complex of Orai1 bound to C-terminal domain of holoCaM using histograms of dihedral angles of the proteins over trajectories from molecular dynamics simulations. Our analysis shows that the N-terminal domain residues L4, T5, Q41, N42, T44 and E67 of holoCaM get destabilized and disordered due to Orai1 binding to C-terminal domain of calmodulin affect the N-terminal domain residues. Among these residues, polar T44, having maximum destabilization and disorder via backbone fluctuations, shows the largest change in solvent exposure. This suggests that N-terminal domain is allosterically regulated via T44 by the binding of Orai1 to the C-terminal domain.
机译:在此,我们研究Ca2 +-命令钙调蛋白(HoloCam)和orai1之间的复杂形成的微观机制,该蛋白酶在真核细胞中调节Ca2 +依赖性灭活过程。 我们使用来自分子动力学模拟的轨迹的蛋白质的二向角度的直方图,在Holocam的C末端域的复合物中计算HoloCam的构象热力变化。 我们的分析表明,由于对钙调蛋白的C末端结构域的ORAI1结合,Holocam的N-末端结构域残基L4,T5,Q41,N42,T44和E67因钙调蛋白的C末端结构域而产生不稳定和无序。 在这些残留物中,极性T44通过骨干波动具有最大稳定性和紊乱,显示出溶剂暴露的最大变化。 这表明N-末端结构域通过T44通过ORAI1与C末端结构域的结合体构成调节。

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