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Nanosecond time-resolved circular polarization of fluorescence: study of NADH bound to horse liver alcohol dehydrogenase.

机译:纳秒级时间分辨的荧光圆极化:研究与马肝醇脱氢酶结合的NADH。

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摘要

Circularly polarized luminescence (CPL) spectroscopy provides information on the excited-state chirality of a lumiphore analogous but complementary to information regarding the ground-state chirality derived from circular dichroism. The sensitivity of CPL spectra to molecular conformation makes this technique uniquely suited for the study of biomolecular structure, as extensively demonstrated in earlier studies. Unfortunately, the CPL spectra of many biomolecules often contain significantly overlapping contributions from emitting species either because multiple lumiphores are present (e.g., tryptophan residues in a protein) or because multiple conformations of the biomolecule simultaneously exist, each with a unique CPL spectrum. Increased resolution between individual contributions to the CPL may be achieved by time-resolving this signal, thus taking advantage of the fact that, as a rule, each of the emitting species also has a characteristic decay time associated with its electronically excited state. In addition, the time resolution provides information regarding dynamics associated with the different chiral states of the system. The present study describes an instrument for the determination of time-resolved CPL (TR-CPL) with subnanosecond resolution and its application to several chiral systems. The technique was first demonstrated on a model system with a strong time-dependent CPL signal. Subsequently, the circularly polarized component in the fluorescence of reduced nicotinamide adenine dinucleotide (NADH) bound to liver alcohol dehydrogenase was time-resolved. The CPL of NADH in the binary enzyme-coenzyme complex is time-dependent, reflecting structural differences around the reduced nicotinamide possibly due to a dynamic restructuring. In contrast, the CPL of the coenzyme in the ternary complex formed with enzyme and the substrate analog isobutyramide is essentially time-independent, likely reflecting a more rigid binding domain. Since the linear polarization of the fluorescence of the two complexes did not show any local flexibility of the NADH chromophore, the excited-state conformational rearrangement of the binary complex indicates a subtle change in its interactions with group(s) in direct contact with it.
机译:圆偏振发光(CPL)光谱可提供有关荧光团的激发态手性的信息,该信息类似于但可补充有关源自圆二色性的基态手性的信息。 CPL光谱对分子构象的敏感性使该技术特别适合于生物分子结构的研究,这在早期研究中已得到广泛证明。不幸的是,由于存在多个荧光团(例如蛋白质中的色氨酸残基)或因为同时存在生物分子的多个构象,每个生物分子的CPL光谱通常包含来自发射物种的显着重叠的贡献,每个生物分子具有唯一的CPL光谱。可以通过时间分辨此信号来提高对CPL的各个贡献之间的分辨率,从而利用以下事实:通常,每个发射物质还具有与其电子激发态相关的特征衰减时间。另外,时间分辨率提供了有关与系统的不同手性状态相关的动力学的信息。本研究描述了一种用于确定亚纳秒分辨率的时间分辨CPL(TR-CPL)的仪器及其在几种手性系统中的应用。该技术首先在具有强时依赖性CPL信号的模型系统上进行了演示。随后,时间分辨与肝醇脱氢酶结合的还原烟酰胺腺嘌呤二核苷酸(NADH)荧光中的圆偏振分量。二元酶-辅酶复合物中NADH的CPL是时间依赖性的,反映出还原的烟酰胺周围的结构差异可能是由于动态重组所致。相反,由酶和底物类似物异丁酰胺形成的三元复合物中辅酶的CPL本质上是时间无关的,可能反映了更严格的结合域。由于两种络合物荧光的线性极化均未显示NADH发色团的任何局部柔性,因此二元络合物的激发态构象重排表明其与直接与其接触的基团的相互作用发生了细微变化。

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