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乙酰胆碱结合蛋白的结构动力学:流体动力学和荧光各向异性衰减分析。

Structural dynamics of the acetylcholine binding protein: hydrodynamic and fluorescence anisotropy decay analyses.

作者信息

Hibbs Ryan E, Johnson David A, Shi Jianxin, Taylor Palmer

机构信息

Department of Pharmacology, University of California-San Diego, La Jolla, CA 92093-0636, USA.

出版信息

J Mol Neurosci. 2006;30(1-2):73-4. doi: 10.1385/JMN:30:1:73.

Abstract

Recently, several crystal structures have become available for the acetylcholine binding protein (AChBP), a soluble nicotinic receptor extracellular domain (ECD) surrogate in its unliganded state, as well as in complex with agonists and antagonists. In these studies we sought to better understand how the dynamic receptor ECD surrogate from Lymnaea stagnalis behaves in solution, with and without ligand present. To accomplish this, we studied first the overall size and shape of the macromolecule, using hydrodynamic (sedimentation) techniques, and how these parameters were perturbed by the binding of various ligands. Analysis of sedimentation and frictional coefficients indicated that bound alpha-bungarotoxin (a three-fingered peptide toxin) is not oriented as a rigid body extending radially from the cylinder of the protein but, rather, that the toxin has inherent segmental flexibility such that it has a limited effect on the frictional coefficient of the pentamer. These results were supported by anisotropy decay studies of segmental motion of the toxin when free in solution and bound to AChBP. We selected the C-loop of AChBP, a region where ligand-elicited changes in conformation are substantial, and studied neighboring regions at higher resolution in terms of alpha-carbon backbone flexibility by decay of fluorescence anisotropy. Several single cysteine substitutions were labeled selectively with the fluorescent probe MTS-4-fluorescein. The covalently conjugated mutants, at two sites on the C-loop (S182C, D194C), and one on the opposing side of the subunit interface (Y164C), revealed similar alpha-carbon backbone flexibility with no ligand present but underwent distinctive changes in backbone mobility after ligand binding. At the sites we studied on the C-loop, agonists always segregated together in terms of their effects on backbone mobility; however antagonists did not reveal a similarly conserved pattern. At Y164C, however, we did observe segregating effects on backbone flexibility between agonists and antagonists. As a structural and functional surrogate of the nicotinic acetylcholine receptor, the AChBP reveals ligand-mediated changes in conformation, mimicking that of the receptor.

摘要

最近,已经获得了几种乙酰胆碱结合蛋白(AChBP)的晶体结构,它是一种可溶性烟碱样受体细胞外结构域(ECD)替代物,处于未结合配体状态以及与激动剂和拮抗剂形成的复合物状态。在这些研究中,我们试图更好地了解来自椎实螺的动态受体ECD替代物在有配体和无配体存在的溶液中的行为。为了实现这一点,我们首先使用流体动力学(沉降)技术研究了大分子的整体大小和形状,以及这些参数如何受到各种配体结合的干扰。沉降系数和摩擦系数分析表明,结合的α-银环蛇毒素(一种三指肽毒素)并非作为从蛋白质圆柱体径向延伸的刚体定向,相反,毒素具有固有的片段灵活性,因此对五聚体的摩擦系数影响有限。这些结果得到了毒素在溶液中游离和与AChBP结合时片段运动的各向异性衰减研究的支持。我们选择了AChBP的C环,这是一个配体引起构象变化很大的区域,并通过荧光各向异性衰减在更高分辨率下研究了α-碳主链灵活性的相邻区域。几个单半胱氨酸替代物用荧光探针MTS-4-荧光素进行了选择性标记。在C环上的两个位点(S182C、D194C)以及亚基界面相对侧的一个位点(Y164C)的共价缀合突变体,在没有配体存在时显示出相似的α-碳主链灵活性,但在配体结合后主链流动性发生了明显变化。在我们研究的C环位点上,激动剂在对主链流动性的影响方面总是聚集在一起;然而拮抗剂并没有显示出类似的保守模式。然而,在Y164C处,我们确实观察到激动剂和拮抗剂对主链灵活性有不同的影响。作为烟碱型乙酰胆碱受体的结构和功能替代物,AChBP揭示了配体介导的构象变化,模拟了受体的构象变化。

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