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Monomeric dark rhodopsin holds the molecular determinants for transducin recognition: Insights from computational analysis.

机译:深色的视紫红质单体具有转导蛋白识别的分子决定因素:来自计算分析的见解。

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In this computational study, we have investigated the implications of rhodopsin (Rho) oligomerization in transducin (Gt) recognition. The results of docking simulations between heterotrimeric Gt and monomeric, dimeric and tetrameric inactive Rho corroborate the hypothesis that Rho and Gt can be found coupled already in the dark. Moreover, our extensive computational analysis suggests that the most likely Rho:Gt stoichiometry is the 1:1 one. This means that the essential molecular determinants for Gt recognition and activation are contained in one Rho monomer. In this respect, the complex between one Rho molecule and one heterotrimeric Gt should be considered as the functional unit.
机译:在这项计算研究中,我们研究了视紫红质(Rho)寡聚在转导蛋白(Gt)识别中的意义。异源三聚体Gt与单体,二聚体和四聚体非活性Rho之间对接模拟的结果证实了这样的假设:可以在黑暗中发现Rho和Gt已耦合。此外,我们广泛的计算分析表明,最可能的Rho:Gt化学计量比是1:1。这意味着在一种Rho单体中包含了识别和激活Gt的基本分子决定因素。在这方面,应将一个Rho分子和一个异三聚体Gt之间的复合物视为功能单元。

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