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Membrane catalysis of peptide-receptor binding.

机译:膜催化肽-受体结合。

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摘要

The membrane catalysis hypothesis states that a peptide ligand activates its target receptor after an initial interaction with the surrounding membrane. Upon membrane binding and interaction, the ligand is structured such that receptor binding and activation is encouraged. As evidence for this hypothesis, there are numerous studies concerning the conformation that peptides adopt in membrane mimetic environments. This mini-review analyzes the features of ligand peptides with an available high-resolution membrane-induced structure and a characterized membrane-binding region. At the peptide-membrane interface, both amphipathic helices and turn structures are commonly formed in peptide ligands and both hydrophobic and electrostatic interactions can be responsible for membrane binding. Apelin is the ligand to the G-protein coupled receptor (GPCR) named APJ, with various important physiological effects, which we have recently characterized both in solution and bound to anionic micelles. The structural changes that apelin undergoes when binding to micelles provide strong evidence for membrane catalysis of apelin-APJ interactions.
机译:膜催化假说指出,肽配体在与周围膜的初始相互作用后会激活其靶受体。在膜结合和相互作用时,配体被构造成促进受体结合和活化。作为该假设的证据,有许多关于肽在膜模拟环境中采用的构象的研究。这篇小型综述分析了具有可用的高分辨率膜诱导结构和特征性膜结合区的配体肽的特征。在肽-膜界面处,两亲性螺旋和转向结构通常在肽配体中形成,并且疏水和静电相互作用都可以引起膜结合。 Apelin是名为APJ的G蛋白偶联受体(GPCR)的配体,具有多种重要的生理作用,我们最近已在溶液中表征并与阴离子胶束结合。当与胶束结合时,apelin经历的结构变化为apelin-APJ相互作用的膜催化提供了有力的证据。

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