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Elucidation of the binding mode of the carboxyterminal region of peptide YY to the human Y2 receptor

机译:肽YY羧基肌肉区域的结合方式阐明于人Y2受体

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Understanding the agonist-receptor interactions in the neuropeptide Y (NPY)/peptide YY (PYY) signaling system is fundamental for the design of novel modulators of appetite regulation. We report here the results of a multidisciplinary approach to elucidate the binding mode of the native peptide agonist PYY to the human Y2 receptor, based on computational modeling, peptide chemistry and in vitro pharmacological analyses. The preserved binding orientation proposed for full-length PYY and five analogs, truncated at the amino terminus, explains our pharmacological results where truncations of the N-terminal proline helix showed little effect on peptide affinity. This was followed by receptor mutagenesis to investigate the roles of several receptor positions suggested by the modeling. As a complement, PYY-(3-36) analogs were synthesized with modifications at different positions in the common PYY/NPY C-terminal fragment (32TRQRY36-amide). The results were assessed and interpreted by molecular dynamics and Free Energy Perturbation (FEP) simulations of selected mutants, providing a detailed map of the interactions of the PYY/NPY C-terminal fragment with the transmembrane cavity of the Y2 receptor. The amidated C-terminus would be stabilized by polar interactions with Gln2886.55 and Tyr2195.39, while Gln1303.32 contributes to interactions with Q34 in the peptide and T32 is close to the tip of TM7 in the receptor. This leaves the core, α-helix of the peptide exposed to make potential interactions with the extracellular loops. This model agrees with most experimental data available for the Y2 system and can be used as a basis for optimization of Y2 receptor agonists.
机译:了解神经肽Y(NPY)/肽YY(PYY)信号传导系统中的激动剂受体相互作用是对食欲调控的新调节剂设计的基础。我们在此报告多学科方法的结果,以阐明天然肽激动剂Pyy对人Y2受体的结合模式,基于计算建模,肽化学和体外药理学分析。所提出的全长PYY和五种类似物所提出的保存的结合取向,截断在氨基末端,解释了我们的药理学结果,其中N-末端脯氨酸螺旋的截短对肽亲和力的影响很小。接下来是受体诱变,研究了建模所提出的几种受体位置的作用。作为补码,Pyy-(3-36)类似物以普通PYY / NPY C末端片段(32触QRY36-酰胺)的不同位置的修饰合成。通过分子动力学和选择突变体的分子动力学和自由能扰动(FEP)模拟来评估和解释结果,提供了与Y2受体的跨膜腔的PYY / NPY C末端片段相互作用的详细图。酰胺化的C-末端将通过与GLN2886.55和TYR2195.39的极性相互作用稳定,而GLN1303.32有助于与肽中的Q34相互作用,并且T32接近受体中TM7的尖端。这使核心叶片暴露在肽的α-螺旋中与细胞外环循环进行潜在的相互作用。该模型同意Y2系统可用的大多数实验数据,可用作优化Y2受体激动剂的基础。

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