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The Linker Pivot in Ci-VSP: The Key to Unlock Catalysis

机译:Ci-VSP中的链接器枢轴:解锁催化的关键

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摘要

In the voltage-sensitive phosphatase Ci-VSP, conformational changes in the transmembrane voltage sensor domain (VSD) are transduced to the intracellular catalytic domain (CD) leading to its dephosphorylation activity against membrane-embedded phosphoinositides. The linker between both domains is proposed to be crucial for the VSD-CD coupling. With a combined approach of electrophysiological measurements on Xenopus oocytes and molecular dynamics simulations of a Ci-VSP model embedded in a lipid bilayer, we analyzed how conformational changes in the linker mediate the interaction between the CD and the activated VSD. In this way, we identified specific residues in the linker that interact with well-defined amino acids in one of the three loops forming the active site of the protein, named TI loop. With our results, we shed light into the early steps of the coupling process between the VSD and the CD, which are based on fine-tuned electrostatic and hydrophobic interactions between the linker, the membrane and the CD.
机译:在电压敏感的磷酸酶Ci-VSP中,跨膜电压传感器结构域(VSD)的构象变化被转导至细胞内催化结构域(CD),从而导致其对嵌入膜的磷酸肌醇的去磷酸化活性。提议两个域之间的连接子对于VSD-CD耦合至关重要。通过对非洲爪蟾卵母细胞的电生理学测量和嵌入脂质双层的Ci-VSP模型的分子动力学模拟的组合方法,我们分析了接头中的构象变化如何介导CD与活化的VSD之间的相互作用。通过这种方式,我们在接头中识别了与形成蛋白质活性位点的三个环之一中定义良好的氨基酸相互作用的特定残基,称为TI环。通过我们的结果,我们了解了VSD和CD之间偶联过程的早期步骤,该步骤基于接头,膜和CD之间微调的静电和疏水相互作用。

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