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Donor-donor energy migration for determining intramolecular distances in proteins: I. Application of a model to the latent plasminogen activator inhibitor-1 (PAI-1).

机译:供体-供体能量迁移,用于确定蛋白质中的分子内距离:I.将模型应用于潜在的纤溶酶原激活物抑制剂-1(PAI-1)。

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摘要

A new fluorescence spectroscopic method is presented for determining intramolecular and intermolecular distances in proteins and protein complexes, respectively. The method circumvents the general problem of achieving specific labeling with two different chromophoric molecules, as needed for the conventional donor-acceptor transfer experiments. For this, mutant forms of proteins that contain one or two unique cysteine residues can be constructed for specific labeling with one or two identical fluorescent probes, so-called donors (d). Fluorescence depolarization experiments on double-labeled Cys mutant monitor both reorientational motions of the d molecules, as well as the rate of intramolecular energy migration. In this report a model that accounts for these contributions to the fluorescence anisotropy is presented and experimentally tested. Mutants of a protease inhibitor, plasminogen activator inhibitor type-1 (PAI-1), containing one or two cysteine residues, were labeled with sulfhydryl specific derivatives of 4,4-difluoro-4-borata-3a-azonia-4a-aza-s-indacence (BODIPY). From the rate of energy migration, the intramolecular distance between the d groups was calculated by using the Forster mechanism and by accounting for the influence of local anisotropic orientation of the d molecules. The calculated intramolecular distances were compared with those obtained from the crystal structure of PAI-1 in its latent form. To test the stability of parameters extracted from experiments, synthetic data were generated and reanalyzed.
机译:提出了一种新的荧光光谱方法,分别测定蛋白质和蛋白质复合物中的分子内和分子间距离。该方法避免了常规供体-受体转移实验所需的用两个不同发色分子实现特异性标记的一般问题。为此,可以构建包含一个或两个独特半胱氨酸残基的蛋白质突变形式,以使用一个或两个相同的荧光探针(所谓的供体)进行特异性标记。双标记Cys突变体的荧光去极化实验既监测d分子的重新定向运动,又监测分子内能量迁移的速率。在这份报告中,提出了一个模型,这些模型说明了荧光各向异性的这些贡献,并进行了实验测试。蛋白酶抑制剂的突变体,纤溶酶原激活物抑制剂1型(PAI-1),包含一个或两个半胱氨酸残基,用4,4-二氟-4-硼盐-3a-氮杂-4a-氮杂-的巯基特异性衍生物标记s-无能(BODIPY)。从能量迁移的速率,通过使用Forster机制并考虑d分子的局部各向异性取向的影响来计算d基团之间的分子内距离。将计算出的分子内距离与从PAI-1潜在形式的晶体结构获得的分子内距离进行比较。为了测试从实验中提取的参数的稳定性,生成并重新分析了合成数据。

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