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首页> 外文期刊>Biochimica et biophysica acta. Biomembranes >Study of bradykinin conformation in the presence of model membrane by Nuclear Magnetic Resonance and molecular modelling.
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Study of bradykinin conformation in the presence of model membrane by Nuclear Magnetic Resonance and molecular modelling.

机译:通过核磁共振和分子模拟研究在模型膜存在下缓激肽的构象。

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The conformation of bradykinin (BK), Arg1-Pro2-Pro3-Gly4-Phe5-Ser6-Pro7-Phe8-Arg9, was investigated by Nuclear Magnetic Resonance (NMR) spectroscopy and Monte Carlo simulation in two different media, i.e. in pure aqueous solution and in the presence of phospholipid vesicles. Monolamellar liposomes are a good model for biological membranes and mimic the environment experienced by bradykinin when interacting with G-protein coupled receptors (GPCRs). The NMR spectra showed that lipid bilayers induced a secondary structure in the otherwise inherently flexible peptide. The results of ensemble calculations revealed conformational changes occurring rapidly on the NMR time scale and allowed for the identification of different families of conformations that were averaged to reproduce the NMR observables. These structural results supported the hypothesis of the central role played by the peptide C-terminal domain in biological environments, and provided an explanation for the different biological behaviours observed for bradykinin
机译:缓激肽(BK)的构象Arg1-Pro2-Pro3-Gly4-Phe5-Ser6-Pro7-Phe8-Arg9,通过核磁共振(NMR)光谱和Monte Carlo模拟在两种不同的介质(即纯水溶液)中进行了研究并且在磷脂囊泡的存在下。单层脂质体是生物膜的良好模型,可模仿缓激肽与G蛋白偶联受体(GPCR)相互作用时所经历的环境。 NMR光谱表明,脂质双层诱导了原本固有的柔性肽中的二级结构。整体计算的结果表明,构象变化在NMR时间尺度上迅速发生,并允许鉴定不同的构象族,将其平均化以再现NMR观测值。这些结构结果支持了肽C末端结构域在生物环境中发挥核心作用的假说,并为缓激肽的不同生物学行为提供了解释。

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