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氧杂蒽染料在肌球蛋白巯基-1结合位点的构象。第一部分。方法与模型系统。

The conformation of xanthene dyes in the myosin sulfhydryl one binding site. Part I. Methods and model systems.

作者信息

Burghardt T P, Ajtai K

机构信息

Department of Biochemistry and Molecular Biology, Mayo Foundation, Rochester, MN 55905, USA.

出版信息

Biophys Chem. 1996 Jun 11;60(3):119-33. doi: 10.1016/0301-4622(96)00014-2.

Abstract

Derivatives of the fluorescent probes fluorescein and rhodamine specifically and covalently modify the highly reactive thiol (SH1) of myosin subfragment 1 (S1). Both probes develop circular dichroism (CD) upon modification of SH1 at the visible absorption band of the chromophore. A model system of chiral complexing agents (aromatic chiral amines) interacting with fluorescein in solvent develops a CD signal that mimics that produced by S1. The model system suggests that a specific interaction of the probe with an aromatic chiral residue in the SH1 binding pocket induces the CD signal. Several other spectroscopic signals, including absorption and fluorescence intensity and anisotropy, characterize the fluorescein or rhodamine binding to SH1. A coupled dipole method is adapted to interpret these spectroscopic signals in terms of the probe-S1 complex conformation. The computation of the orientation of the principal hydrodynamic frame (PHF) of S1 from its crystallographic alpha-carbon backbone structure permits the known orientation of the probe in the PHF of S1 to further constrain the conformation of the probe-S1 complex. The coupled dipole interpretation of spectroscopic data combined with constraints relating the probe dipole orientation to the PHF of S1 determines the conformation of the probe-S1 complex. The methods developed here are applied to the spectroscopic signals from fluorescein or rhodamine in the SH1 binding site of S1 to obtain an atomic resolution model of the probe-S1 conformation [Ajtai and Burghardt, Biochemistry, 34 (1995) 15943-15952].

摘要

荧光探针荧光素和罗丹明的衍生物能特异性且共价修饰肌球蛋白亚片段1(S1)的高反应性硫醇(SH1)。在发色团的可见吸收带处,当SH1被修饰时,这两种探针都会产生圆二色性(CD)。在溶剂中,手性络合剂(芳香族手性胺)与荧光素相互作用的模型系统会产生一种CD信号,该信号与S1产生的信号相似。该模型系统表明,探针与SH1结合口袋中的芳香族手性残基之间的特定相互作用会诱导产生CD信号。包括吸收、荧光强度和各向异性在内的其他几种光谱信号可表征荧光素或罗丹明与SH1的结合情况。采用耦合偶极子方法根据探针 - S1复合物的构象来解释这些光谱信号。从其晶体学α - 碳骨架结构计算S1的主流体动力学框架(PHF)的方向,可使已知的探针在S1的PHF中的方向进一步限制探针 - S1复合物的构象。光谱数据的耦合偶极子解释与将探针偶极子方向与S1的PHF相关联的约束条件相结合,可确定探针 - S1复合物的构象。这里开发的方法应用于来自S1的SH1结合位点中荧光素或罗丹明的光谱信号,以获得探针 - S1构象的原子分辨率模型[Ajtai和Burghardt,《生物化学》,34(1995)15943 - 15952]。

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