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嗜铬粒蛋白A对儿茶酚胺释放的作用机制:抑制素区域的分子建模揭示了一种由疏水相互作用稳定的β-链/环/β-链结构,并可预测其活性。

Mechanism of action of chromogranin A on catecholamine release: molecular modeling of the catestatin region reveals a beta-strand/loop/beta-strand structure secured by hydrophobic interactions and predictive of activity.

作者信息

Tsigelny I, Mahata S K, Taupenot L, Preece N E, Mahata M, Khan I, Parmer R J, O'Connor D T

机构信息

Department of Medicine, Center for Molecular Genetics, University of California, San Diego, USA.

出版信息

Regul Pept. 1998 Oct 16;77(1-3):43-53. doi: 10.1016/s0167-0115(98)00040-8.

Abstract

A novel fragment of chromogranin A, known as 'catestatin' (bovine chromogranin A344-364), inhibits catecholamine release from chromaffin cells and noradrenergic neurons by acting as a non-competitive nicotinic cholinergic antagonist, and may therefore constitute an endogenous autocrine feedback regulator of sympathoadrenal activity. To characterize how this activity depends on the peptide's structure, we searched for common 3-dimensional motifs for this primary structure or its homologs. Catestatin's primary structure bore significant (29-35.5% identity, general alignment score 44-57) sequence homology to fragment sequences within three homologs of known 3-dimensional structures, based on solved X-ray crystals: 8FAB, IPKM, and 2IG2. Each of these sequences exists in nature as a beta-strand/loop/beta-strand structure, stabilized by hydrophobic interactions between the beta-strands. The catestatin structure was stable during molecular dynamics simulations. The catestatin loop contains three Arg residues, whose electropositive side chains form the terminus of the structure, and give rise to substantial uncompensated charge asymmetry in the molecule. A hydrophobic moment plot revealed that catestatin is the only segment of chromogranin A predicted to contain amphiphilic beta-strand. Circular dichroism in the far ultraviolet showed substantial (63%) beta-sheet structure, especially in a hydrophobic environment. Alanine-substitution mutants of catestatin established a crucial role for the three central arginine residues in the loop (Arg351, Arg353, and Arg358), though not for two arginine residues in the strand region toward the amino-terminus. [125I]Catestatin bound to Torpedo membranes at a site other than the nicotinic agonist binding site. When the catestatin structure was 'docked' with the extracellular domain of the Torpedo nicotinic cholinergic receptor, it interacted principally with the beta and delta subunits, in a relatively hydrophobic region of the cation pore extracellular orifice, and the complex of ligand and receptor largely occluded the cation pore, providing a structural basis for the non-competitive nicotinic cholinergic antagonist properties of the peptide. We conclude that a homology model of catestatin correctly predicts actual features of the peptide, both physical and biological. The model suggests particular spatial and charge features of the peptide which may serve as starting points in the development of non-peptide mimetics of this endogenous nicotinic cholinergic antagonist.

摘要

嗜铬粒蛋白A的一个新片段,即所谓的“抑 catecholamine素”(牛嗜铬粒蛋白A344 - 364),通过作为非竞争性烟碱胆碱能拮抗剂来抑制嗜铬细胞和去甲肾上腺素能神经元释放儿茶酚胺,因此可能构成交感肾上腺活动的内源性自分泌反馈调节剂。为了表征这种活性如何依赖于该肽的结构,我们搜索了该一级结构或其同源物的常见三维基序。基于已解析的X射线晶体,抑 catecholamine素的一级结构与已知三维结构的三个同源物中的片段序列具有显著的(29 - 35.5%的同一性,总体比对分数44 - 57)序列同源性:8FAB、IPKM和2IG2。这些序列在自然界中均以β - 链/环/β - 链结构存在,通过β - 链之间的疏水相互作用得以稳定。在分子动力学模拟过程中,抑 catecholamine素结构是稳定的。抑 catecholamine素环包含三个精氨酸残基,其带正电的侧链形成了该结构的末端,并在分子中产生了大量未补偿的电荷不对称性。疏水矩图显示抑 catecholamine素是嗜铬粒蛋白A中唯一预测含有两亲性β - 链的片段。远紫外区的圆二色性显示出大量(63%)的β - 折叠结构,尤其是在疏水环境中。抑 catecholamine素的丙氨酸取代突变体确定了环中三个中心精氨酸残基(Arg351、Arg353和Arg358)的关键作用,而靠近氨基末端的链区域中的两个精氨酸残基则并非如此。[125I]抑 catecholamine素在烟碱激动剂结合位点以外的位点与电鳐膜结合。当抑 catecholamine素结构与电鳐烟碱胆碱能受体的胞外结构域“对接”时,它主要与β和δ亚基相互作用,位于阳离子孔胞外孔口的一个相对疏水区域,并且配体与受体的复合物在很大程度上阻塞了阳离子孔,为该肽的非竞争性烟碱胆碱能拮抗剂特性提供了结构基础。我们得出结论,抑 catecholamine素的同源模型正确地预测了该肽的实际物理和生物学特征。该模型表明了该肽的特定空间和电荷特征,这可能作为开发这种内源性烟碱胆碱能拮抗剂的非肽模拟物的起点。

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