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利用定点突变技术探索 Ca2+调节型光保护蛋白的生物发光功能。

Exploring Bioluminescence Function of the Ca -regulated Photoproteins with Site-directed Mutagenesis.

机构信息

Photobiology Laboratory, Institute of Biophysics SB RAS, Federal Research Center "Krasnoyarsk Science Center SB RAS", Krasnoyarsk, Russia.

出版信息

Photochem Photobiol. 2019 Jan;95(1):8-23. doi: 10.1111/php.12945. Epub 2018 Jun 22.

Abstract

Site-directed mutagenesis is a powerful tool to investigate the structure-function relationship of proteins and a function of certain amino acid residues in catalytic conversion of substrates during enzymatic reactions. Hence, it is not surprising that this approach was repeatedly applied to elucidate the role of certain amino acid residues in various aspects of photoprotein bioluminescence, mostly for aequorin and obelin, and to design mutant photoproteins with altered properties (modified calcium affinity, faster or slower bioluminescence kinetics, different emission color) which would either allow the development of novel bioluminescent assays or improvement of characteristics of the already existing ones. This information, however, is scattered over different articles. In this review, we systematize the findings that were made using site-directed mutagenesis studies regarding the impact of various amino acid residues on bioluminescence of hydromedusan Ca -regulated photoproteins. All key residues that have been identified are pinpointed, and their influence on different aspects of photoprotein functioning such as active photoprotein complex formation, bioluminescence reaction, calcium response and light emitter formation is discussed.

摘要

定点突变是一种强大的工具,可用于研究蛋白质的结构-功能关系,以及在酶促反应中底物催化转化过程中某些氨基酸残基的功能。因此,这种方法被反复用于阐明某些氨基酸残基在发光蛋白生物发光的各个方面的作用,这并不奇怪,主要针对水母发光蛋白和耳乌贼发光蛋白,并设计具有改变性质的突变发光蛋白(改变钙亲和力、更快或更慢的生物发光动力学、不同的发射颜色),这将允许开发新的生物发光测定法或改进现有测定法的特性。然而,这些信息分散在不同的文章中。在这篇综述中,我们对使用定点突变研究确定的关于各种氨基酸残基对腔肠动物钙调节发光蛋白生物发光的影响的发现进行了系统整理。所有已确定的关键残基都被指出,并讨论了它们对发光蛋白功能的不同方面的影响,如活性发光蛋白复合物形成、生物发光反应、钙反应和光发射器形成。

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