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四α-螺旋束蛋白中麻醉剂诱导的构象转变动力学

Kinetics of anesthetic-induced conformational transitions in a four-alpha-helix bundle protein.

作者信息

Solt Ken, Johansson Jonas S, Raines Douglas E

机构信息

Department of Anesthesia and Critical Care, Massachusetts General Hospital, 55 Fruit Street, Clinics Building 3, Boston, Massachusetts 02114, USA.

出版信息

Biochemistry. 2006 Feb 7;45(5):1435-41. doi: 10.1021/bi052206o.

Abstract

Inhaled anesthetics are thought to alter the conformational states of Cys-loop ligand-gated ion channels (LGICs) by binding within discrete cavities that are lined by portions of four alpha-helical transmembrane domains. Because Cys-loop LGICs are complex molecules that are notoriously difficult to express and purify, scaled-down models have been used to better understand the basic molecular mechanisms of anesthetic action. In this study, stopped-flow fluorescence spectroscopy was used to define the kinetics with which inhaled anesthetics interact with (Aalpha(2)-L1M/L38M)(2), a four-alpha-helix bundle protein that was designed to model anesthetic binding sites on Cys-loop LGICs. Stopped-flow fluorescence traces obtained upon mixing (Aalpha(2)-L1M/L38M)(2) with halothane revealed immediate, fast, and slow components of quenching. The immediate component, which occurred within the mixing time of the spectrofluorimeter, was attributed to direct quenching of tryptophan fluorescence upon halothane binding to (Aalpha(2)-L1M/L38M)(2). This was followed by a biexponential fluorescence decay containing fast and slow components, reflecting anesthetic-induced conformational transitions. Fluorescence traces obtained in studies using sevoflurane, isoflurane, and desflurane, which poorly quench tryptophan fluorescence, did not contain the immediate component. However, these anesthetics did produce the fast and slow components, indicating that they also alter the conformation of (Aalpha(2)-L1M/L38M)(2). Cyclopropane, an anesthetic that acts with unusually low potency on Cys-loop LGICs, acted with low apparent potency on (Aalpha(2)-L1M/L38M)(2). These results suggest that four-alpha-helix bundle proteins may be useful models of in vivo sites of action that allow the use of a wide range of techniques to better understand how anesthetic binding leads to changes in protein structure and function.

摘要

吸入麻醉药被认为通过结合在由四个α-螺旋跨膜结构域部分形成的离散腔内,改变半胱氨酸环配体门控离子通道(LGICs)的构象状态。由于半胱氨酸环LGICs是复杂分子, notoriously难以表达和纯化,因此已使用缩小模型来更好地理解麻醉作用的基本分子机制。在本研究中,采用停流荧光光谱法来确定吸入麻醉药与(Aα(2)-L1M/L38M)(2)相互作用的动力学,(Aα(2)-L1M/L38M)(2)是一种四α-螺旋束蛋白,设计用于模拟半胱氨酸环LGICs上的麻醉药结合位点。将(Aα(2)-L1M/L38M)(2)与氟烷混合后获得的停流荧光曲线显示出猝灭的即时、快速和慢速成分。即时成分发生在荧光分光光度计的混合时间内,归因于氟烷与(Aα(2)-L1M/L38M)(2)结合时色氨酸荧光的直接猝灭。随后是包含快速和慢速成分的双指数荧光衰减,反映了麻醉药诱导的构象转变。在使用七氟烷、异氟烷和地氟烷的研究中获得的荧光曲线,这些物质对色氨酸荧光的猝灭作用较弱,不包含即时成分。然而,这些麻醉药确实产生了快速和慢速成分,表明它们也改变了(Aα(2)-L1M/L38M)(2)的构象。环丙烷是一种对半胱氨酸环LGICs作用效力异常低的麻醉药,对(Aα(2)-L1M/L38M)(2)的表观效力也很低。这些结果表明,四α-螺旋束蛋白可能是体内作用位点的有用模型,允许使用广泛的技术来更好地理解麻醉药结合如何导致蛋白质结构和功能的变化。

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本文引用的文献

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Sevoflurane-induced structural changes in a four-alpha-helix bundle protein.
Biochemistry. 2005 Sep 13;44(36):12128-35. doi: 10.1021/bi050896q.
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A calorimetric study on the binding of six general anesthetics to the hydrophobic core of a model protein.
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