首页> 美国卫生研究院文献>The Journal of Biological Chemistry >Use of Cysteine Trapping to Map Spatial Approximations between Residues Contributing to the Helix N-capping Motif of Secretin and Distinct Residues within Each of the Extracellular Loops of Its Receptor
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Use of Cysteine Trapping to Map Spatial Approximations between Residues Contributing to the Helix N-capping Motif of Secretin and Distinct Residues within Each of the Extracellular Loops of Its Receptor

机译:使用半胱氨酸陷印来映射促胰液素的螺旋N封顶基团的残基和其受体的每个细胞外环内的不同残基之间的空间近似

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摘要

Amino-terminal regions of secretin-family peptides contain key determinants for biological activity and binding specificity, although the nature of interactions with receptors is unclear. A helix N-capping motif within this region has been postulated to directly contribute to agonist activity while also stabilizing formation of a helix extending toward the peptide carboxyl terminus and docking within the receptor amino terminus. We used cysteine trapping to systematically explore spatial approximations between cysteines replacing each residue in this motif of secretin (sec), Phe6, Thr7, and Leu10, and cysteines incorporated into the extracellular face of the receptor. Each peptide was a full agonist for cAMP, but had a lower binding affinity than natural hormone. These bound to COS cells expressing 61 receptor constructs incorporating cysteines in every position along each extracellular loop (ECL) and adjacent parts of transmembrane (TM) segments. Patterns of covalent labeling were distinct for each probe, with Cys6-sec labeling multiple residues in the carboxyl-terminal half of ECL2 and throughout ECL3, Cys7-sec predominantly labeling only single residues in the carboxyl-terminal end of ECL2 and the amino-terminal end of ECL3, and Cys10-sec not efficiently labeling any of these residues. These spatial constraints were used to refine our model of secretin bound to its receptor, now bringing ECL3 above the amino terminus of the ligand and revealing possible charge-charge interactions between this part of secretin and receptor residues in TM5, TM6, ECL2, and ECL3, which can orient and stabilize the peptide-receptor complex. This was validated by testing predicted approximations by mutagenesis and residue-residue complementation studies.
机译:促胰液素家族肽的氨基末端区域含有决定生物学活性和结合特异性的关键决定因素,尽管与受体相互作用的性质尚不清楚。已经假定该区域内的螺旋N-封端基序直接有助于激动剂活性,同时还稳定了向肽羧基末端延伸并停靠在受体氨基末端内的螺旋的形成。我们使用半胱氨酸捕获系统地研究了半胱氨酸之间的空间近似关系,该半胱氨酸替代了secretin(sec),Phe 6 ,Thr 7 和Leu 10 < ,并且半胱氨酸并入受体的细胞外表面。每种肽都是cAMP的完全激动剂,但结合亲和力低于天然激素。它们与表达61个受体构建体的COS细胞结合,该构建体在每个细胞外环(ECL)和跨膜(TM)区段的相邻部分的每个位置掺入半胱氨酸。每个探针的共价标记模式各不相同,Cys 6 -sec标记ECL2羧基末端一半以及整个ECL3的多个残基,Cys 7 -sec主要标记ECL2的羧基末端和ECL3的氨基末端只有一个残基,而Cys 10 -sec无法有效标记这些残基。这些空间限制条件用于完善我们与受体结合的促胰液素的模型,从而使ECL3高于配体的氨基末端,并揭示了促胰液素的这一部分与TM5,TM6,ECL2和ECL3中的受体残基之间可能存在的电荷-电荷相互作用可以定向和稳定肽-受体复合物。通过诱变和残基-残基互补研究测试预测的近似值,验证了这一点。

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