首页> 美国卫生研究院文献>Protein Science : A Publication of the Protein Society >An unusual red-edge excitation and time-dependent Stokes shift in the single tryptophan mutant protein DD-carboxypeptidase from Streptomyces: The role of dynamics and tryptophan rotamers
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An unusual red-edge excitation and time-dependent Stokes shift in the single tryptophan mutant protein DD-carboxypeptidase from Streptomyces: The role of dynamics and tryptophan rotamers

机译:链霉菌的单个色氨酸突变蛋白DD-羧肽酶中的异常红边激发和时间依赖性斯托克斯位移:动力学和色氨酸旋转异构体的作用

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摘要

The fluorescence emission of the single tryptophan (W233) of the mutant protein DD-carboxypeptidase from streptomyces is characterized by a red-edge excitation shift (REES), i.e., the phenomenon that the wavelength of maximum emission depends on the excitation wavelength. This phenomenon is an indication for a strongly reduced dynamic environment of the single tryptophan, which has a very low accessibility to the solvent. The REES shows, however, an unusual temperature and time dependence. This, together with the fluorescence lifetime analysis, showing three resolvable lifetimes, can be explained by the presence of three rotameric states that can be identified using the Dead-End Elimination method. The three individual lifetimes increase with increasing emission wavelength, indicating the presence of restricted protein dynamics within the rotameric states. This is confirmed by time-resolved anisotropy measurements that show dynamics within the rotamers but not among the rotamers. The global picture is that of a protein with a single buried tryptophan showing strongly restricted dynamics within three distinct rotameric states with different emission spectra and an anisotropic environment.
机译:来自链霉菌的突变蛋白DD-羧肽酶的单个色氨酸(W233)的荧光发射的特征在于红边激发位移(REES),即最大发射波长取决于激发波长的现象。此现象表明单个色氨酸的动态环境大大降低,而该环境对溶剂的可及性非常低。然而,REES显示出不寻常的温度和时间依赖性。这与显示三个可解决寿命的荧光寿命分析一起,可以通过使用死角消除法确定的三个旋转异构体状态来解释。三个个体的寿命随着发射波长的增加而增加,表明在旋转异构体内存在受限的蛋白质动力学。时间分辨各向异性测量结果证实了这一点,各向异性测量结果显示了旋转异构体内部而不是旋转异构体之间的动力学。全局图是具有单个掩埋色氨酸的蛋白质,该图显示在具有不同发射光谱和各向异性环境的三个不同的旋转异构体状态下,动力学受到严格限制。

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