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色氨酸荧光猝灭作为一种结合测定法,用于监测完整线粒体膜中蛋白质构象的变化。

Tryptophan fluorescence quenching as a binding assay to monitor protein conformation changes in the membrane of intact mitochondria.

作者信息

Akbar S Md, Sreeramulu K, Sharma Hari C

机构信息

Entomology, International Crops Research Institute for the Semi-Arid Tropics (ICRISAT), Patancheru, Telangana, 502324, India.

Department of Biochemistry, Gulbarga University, Gulbarga, Karnataka, 585106, India.

出版信息

J Bioenerg Biomembr. 2016 Jun;48(3):241-7. doi: 10.1007/s10863-016-9653-0. Epub 2016 Feb 23.

Abstract

Intrinsic protein fluorescence is due to aromatic amino acids, mainly tryptophan, which can be selectively measured by exciting at 295 nm. Changes in emission spectra of tryptophan are due to the protein conformational transitions, subunit association, ligand binding or denaturation, which affect the local environment surrounding the indole ring. In this study, tryptophan fluorescence was monitored in intact mitochondria at 333 nm following excitation at 295 nm in presence of insecticides using spectrofluorometer. Methyl-parathion, carbofuran, and endosulfan induced Trp fluorescence quenching and release of cytochrome c when incubated with the mitochondria, except fenvalarate. Mechanism of insecticide-induced mitochondrial toxicity for the tested insecticides has been discussed. Reduction in the intensity of tryptophan emission spectra of mitochondrial membrane proteins in presence of an increasing concentration of a ligand can be used to study the interaction of insecticides/drugs with the intact mitochondria. Furthermore, this assay can be readily adapted for studying protein-ligand interactions in intact mitochondria and in other cell organelles extending its implications for pesticide and pharma industry and in drug discovery.

摘要

内在蛋白荧光源于芳香族氨基酸,主要是色氨酸,可通过在295nm处激发进行选择性测量。色氨酸发射光谱的变化归因于蛋白质构象转变、亚基缔合、配体结合或变性,这些都会影响吲哚环周围的局部环境。在本研究中,使用荧光分光光度计,在存在杀虫剂的情况下,于295nm激发后,在333nm处监测完整线粒体中的色氨酸荧光。甲基对硫磷、克百威和硫丹与线粒体孵育时会诱导色氨酸荧光猝灭并释放细胞色素c,但氰戊菊酯除外。已讨论了受试杀虫剂诱导线粒体毒性的机制。在配体浓度增加的情况下,线粒体膜蛋白色氨酸发射光谱强度的降低可用于研究杀虫剂/药物与完整线粒体的相互作用。此外,该测定法可轻松适用于研究完整线粒体和其他细胞器中的蛋白质-配体相互作用,从而扩大其在农药和制药行业以及药物发现中的应用。

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