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Insights into the impact of phenolic residue incorporation at each position along secretin for receptor binding and biological activity

机译:熟悉肽残留物在浸蛋白的每个位置掺入的影响对受体结合和生物活性

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摘要

Understanding of the structural importance of each position along a peptide ligand can provide important insights into the molecular basis for its receptor binding and biological activity. This has typically been evaluated using serial replacement of each natural residue with an alanine. In the current report, we have further complemented alanine scanning data with the serial replacement of each residue within secretin-27, the natural ligand for the prototypic class B G protein-coupled secretin receptor, using a photolabile phenolic residue. This not only provided the opportunity to probe spatial approximations between positions along a docked ligand with its receptor, but also provided structure-activity insights when compared with tolerance for alanine replacement of the same residues. The pattern of sensitivity to phenolic residue replacement was periodic within the carboxyl-terminal region of this peptide ligand, corresponding with alanine replacements in that region. This was supportive of the alpha-helical conformation of the peptide in that region and its docking within a groove in the receptor amino-terminal domain. In contrast, the pattern of sensitivity to phenolic residue replacement was almost continuous in the amino-terminal region of this peptide ligand, again similar to alanine replacements, however, there were key positions in which either the phenolic residue or alanine was differentially preferred. This provided insights into the receptor environment of the portion of this ligand most critical for its biological activity. As the structure of the intact receptor is elucidated, these data will provide a guide for ligand docking to the core domain and to help clarify the molecular basis of receptor activation.
机译:理解沿着肽配体的每个位置的结构重要性可以提供重要的见解,以了解其受体结合和生物学活性的分子基础。通常使用丙氨酸连续替换每种天然残基来评估这一点。在本报告中,我们通过对光不稳定的酚类残基进行序列替换,进一步补充了促胰液素27中的每个残基,而促胰液素27是原型B型B G蛋白偶联的促胰液素受体的天然配体。这不仅提供了探索沿着对接配体及其受体的位置之间的空间近似的机会,而且还提供了与相同残基的丙氨酸替换耐受性相比的结构活性见解。在该肽配体的羧基末端区域内,对酚残基置换敏感的模式是周期性的,与该区域的丙氨酸置换相对应。这支持了该区域中的肽的α-螺旋构象及其对接在受体氨基末端结构域的凹槽内。相反,在该肽配体的氨基末端区域中,对酚残基置换的敏感性模式几乎是连续的,再次类似于丙氨酸置换,但是,在关键位置,酚残基或丙氨酸是差异性优选的。这提供了对该配体对其生物学活性最关键的部分的受体环境的见识。由于阐明了完整受体的结构,这些数据将为配体对接至核心结构域提供指导,并有助于阐明受体激活的分子基础。

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