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全身麻醉药与烟碱型乙酰胆碱受体β2亚基相互作用的核磁共振研究

NMR study of general anesthetic interaction with nAChR beta2 subunit.

作者信息

Bondarenko Vasyl, Yushmanov Victor E, Xu Yan, Tang Pei

机构信息

Departments of Anesthesiology, Pharmacology, and Computational Biology, University of Pittsburgh School of Medicine, Pittsburgh, Pennsylvania.

出版信息

Biophys J. 2008 Mar 1;94(5):1681-8. doi: 10.1529/biophysj.107.116772. Epub 2007 Nov 9.

Abstract

The molecular basis of anesthetic interaction with membrane proteins has been explored via determination of anesthetic effects on the structure and dynamics of the extended second transmembrane domain (TM2e) of the human neuronal nicotinic acetylcholine receptor (nAChR) beta(2) subunit in dodecylphosphocholine (DPC) micelles by (1)H and (15)N solution-state NMR. Both 1-chloro-1,2,2-trifluorocyclobutane (F3) and isoflurane, two volatile general anesthetics, induced nonuniform changes in chemical shifts among residues in TM2e. Saturation transfer difference NMR experiments further confirmed the direct anesthetic interaction with TM2e. A significant and more specific anesthetic interaction was observed on three leucine residues at the helix C-terminus. Although the TM2e helical structure remained after addition of anesthetics, plausible shortening and lengthening of helix hydrogen bonds were evidenced by periodic changes in backbone amide chemical shifts. The TM2e backbone dynamics were determined on the basis of the (15)N relaxation rate constants, R(1) and R(2), and the (15)N-[(1)H] NOE using the model-free approach. The global tumbling time (11.7 ns) of TM2e in micelles slightly increased ( approximately 12.3-12.5 ns) in the presence of anesthetics. The order parameter, S(2), exceeded 0.9 for all (15)N-labeled residues, showing a restricted internal motion. Anesthetics appear to have minor effect on the TM2e's internal motion. This study provided the basis for subsequent more comprehensive studies of anesthetic effects on the transmembrane domain complex of neuronal nAChR.

摘要

通过(1)H和(15)N溶液态核磁共振技术,测定挥发性全身麻醉药1-氯-1,2,2-三氟环丁烷(F3)和异氟烷对人神经元烟碱型乙酰胆碱受体(nAChR)β(2)亚基在十二烷基磷酸胆碱(DPC)胶束中延伸的第二个跨膜结构域(TM2e)的结构和动力学的麻醉作用,从而探索麻醉剂与膜蛋白相互作用的分子基础。F3和异氟烷这两种挥发性全身麻醉药均诱导TM2e中各残基化学位移发生不均匀变化。饱和转移差核磁共振实验进一步证实了麻醉剂与TM2e的直接相互作用。在螺旋C末端的三个亮氨酸残基上观察到显著且更具特异性的麻醉剂相互作用。尽管添加麻醉剂后TM2e螺旋结构仍然存在,但主链酰胺化学位移的周期性变化证明螺旋氢键可能缩短和延长。基于(15)N弛豫速率常数R(1)和R(2)以及使用无模型方法测定的(15)N-[(1)H] NOE,确定了TM2e的主链动力学。在存在麻醉剂的情况下,TM2e在胶束中的整体翻滚时间(11.7 ns)略有增加(约为12.3 - 12.5 ns)。所有(15)N标记残基的序参数S(2)均超过0.9,表明内部运动受限。麻醉剂似乎对TM2e的内部运动影响较小。本研究为后续更全面地研究麻醉剂对神经元nAChR跨膜结构域复合物的作用提供了基础。

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