Department of Molecular Pharmacology and Experimental Therapeutics, Mayo Clinic, Scottsdale, Arizona 85259, USA.
Biochemistry. 2011 Sep 27;50(38):8181-92. doi: 10.1021/bi2008036. Epub 2011 Aug 30.
The natural ligands for family B G protein-coupled receptors are moderate-length linear peptides having diffuse pharmacophores. The amino-terminal regions of these ligands are critical for biological activity, with their amino-terminal truncation leading to production of orthosteric antagonists. The carboxyl-terminal regions of these peptides are thought to occupy a ligand-binding cleft within the disulfide-bonded amino-terminal domains of these receptors, with the peptides in amphipathic helical conformations. In this work, we have characterized the binding and activity of a series of 11 truncated and lactam-constrained secretin(5-27) analogues at the prototypic member of this family, the secretin receptor. One peptide in this series with lactam connecting residues 16 and 20 [c[E(16),K(20)][Y(10)]sec(5-27)] improved the binding affinity of its unconstrained parental peptide 22-fold while retaining the absence of endogenous biological activity and competitive antagonist characteristics. Homology modeling with molecular mechanics and molecular dynamics simulations established that this constrained peptide occupies the ligand-binding cleft in an orientation similar to that of natural full-length secretin and provided insights into why this peptide was more effective than other truncated conformationally constrained peptides in the series. This lactam bridge is believed to stabilize an extended α-helical conformation of this peptide while in solution and not to interfere with critical residue-residue approximations while docked to the receptor.
B 族 G 蛋白偶联受体的天然配体是具有弥散药效基团的中等长度线性肽。这些配体的氨基末端区域对于生物活性至关重要,其氨基末端的截断导致产生正构拮抗剂。这些肽的羧基末端区域被认为占据这些受体的二硫键结合的氨基末端结构域内的配体结合裂隙,肽呈两亲性螺旋构象。在这项工作中,我们在该家族的典型成员,即分泌素受体上,对一系列 11 个截断和内酰胺约束的分泌素(5-27)类似物的结合和活性进行了表征。该系列中的一个肽,其酰胺键连接残基 16 和 20 [c[E(16),K(20)][Y(10)]sec(5-27)],将其无约束亲本肽的结合亲和力提高了 22 倍,同时保留了缺乏内源性生物活性和竞争性拮抗剂特征。与分子力学和分子动力学模拟的同源建模确立了这种约束肽占据配体结合裂隙的方向与天然全长分泌素相似,并提供了为什么这种肽比该系列中其他截断构象约束肽更有效的见解。据信,这种内酰胺桥稳定了该肽在溶液中的伸展α-螺旋构象,而在对接至受体时不会干扰关键残基-残基近似。