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Computational Molecular Analysis of Human Rhodopsin, Transducin and Arrestin Interactions: An Insight into Signal Transduction for Ophthalmology

机译:人罗二元素,转霉素和抑制素相互作用的计算分子分析:眼科信号转导的洞察

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Retinal G-protein receptor; rhodopsin upon light-activation, gets phosphorylated, experiences conformational shift and interacts with G-protein; transducin. To completely obstruct the signal transduction visual protein; arrestin binds consecutively to disrupt the cationic channels of plasma membrane. Experimented binding assays documents the protein interactions but hitherto computational investigation was undone. This probe aims at the computational study of conformational alterations in rhodopsin upon sequential interactions, accompanied by variations in its surface electrostatic potential and net solvent accessible area. 3D structures of human transducin, arrestin and rhodopsin were analyzed. Residual participation from the optimized and simulated trio-complex (rhodopsintransducin-arrestin) disclosed that predominantly positively charged amino-acid residues; Arg474, Arg412, Arg229, Arg13, Lys15 and Lys408 from rhodopsin participated with transducin and arrestin forming 9 ionic interactions. Rhodopsin was perceived to interact in a gradual firmer pattern with its partner proteins. This study presents a novel viewpoint into the computational disclosure for participation of concerned visual proteins.
机译:视网膜G蛋白受体;罗多蛋白酶在光活化,得到磷酸化,经历构象变化并与G蛋白相互作用;转霉素。完全阻碍信号转导视觉蛋白质;诱导连续结合,以破坏血浆膜的阳离子通道。实验结合测定文件记录蛋白质相互作用,但迄今为止计算调查未完成。该探针旨在在顺序相互作用时逆转相互作用的构象改变的计算研究,伴随其表面静电电位和净溶剂可接近区域的变化。分析了人转霉素,抑制素和罗多蛋白的3D结构。优化和模拟三重络合物(Rhodopsintransducin-Arcrectin)的残余参与公开了一种主要带正电荷的氨基酸残基; arg474,arg412,arg229,arg13,Lys15和Lys408来自rhodopsin参与转霉素和形成9离子相互作用。罗地甙被认为以伴随伴侣蛋白质的逐渐较高的模式相互作用。本研究提出了进入有关视觉蛋白的计算披露的新颖观点。

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