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Structural Refinement of a Key Tryptophan Residue in the BLUF Photoreceptor AppA by Ultraviolet Resonance Raman Spectroscopy

机译:紫外共振拉曼光谱对BLUF感光器AppA中关键色氨酸残基的结构精制

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摘要

The flavin-adenine-dinucleotide-binding BLUF domain constitutes a new class of blue-light receptors, and the N-terminal domain of AppA is a representative of this family. The BLUF domain is of special interest because it uses a rigid flavin rather than an isomerizable chromophore, such as a rhodopsin or phytochrome, for its light-activation process. Crystal and solution structures of several BLUF domains were recently obtained, and their overall structures are consistent. However, there is a key ambiguity regarding the position of a conserved tryptophan (Trp-104 in AppA), in that this residue was found either close to flavin (Trpin conformation) or exposed to the solvent (Trpout conformation). The location of Trp-104 is a crucial factor in understanding the photocycle mechanism of BLUF domains, because this residue has been shown to play an essential role in the activation of AppA. In this study, we demonstrated a Trpin conformation for the BLUF domain of AppA through direct observation of the vibrational spectrum of Trp-104 by ultraviolet resonance Raman spectroscopy, and also observed light-induced conformational and environmental changes in Trp-104. This study provides a structural basis for future investigations of the photocycle mechanism of BLUF proteins.
机译:黄素-腺嘌呤-二核苷酸结合的BLUF结构域构成了一类新的蓝光受体,AppA的N端结构域是该家族的代表。 BLUF结构域特别受关注,因为它使用刚性黄素而不是可异构化的生色团(例如视紫红质或植物色素)来进行光激活过程。最近获得了多个BLUF域的晶体和溶液结构,它们的整体结构是一致的。但是,关于保守的色氨酸(AppA中的Trp-104)的位置存在一个关键的歧义,因为发现该残基接近黄素(Trpin构象)或暴露于溶剂(Trpout构象)。 Trp-104的位置是理解BLUF域的光循环机制的关键因素,因为已显示该残基在AppA激活中起着至关重要的作用。在这项研究中,我们通过紫外线共振拉曼光谱直接观察Trp-104的振动光谱,证明了AppA的BLUF结构域的Trpin构象,并且还观察到Trp-104的光诱导构象和环境变化。该研究为BLUF蛋白的光循环机理的进一步研究提供了结构基础。

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