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基于活细胞中分裂型海肾荧光素酶互补作用的钙离子生物发光指示剂。

Bioluminescent indicators for Ca2+ based on split Renilla luciferase complementation in living cells.

作者信息

Kaihara Asami, Umezawa Yoshio, Furukawa Tetsushi

机构信息

Department of Bio-Informational Pharmacology, Medical Research Institute, Tokyo Medical and Dental University, Chiyoda, Tokyo 101-0062, Japan.

出版信息

Anal Sci. 2008;24(11):1405-8. doi: 10.2116/analsci.24.1405.

Abstract

Genetically encoded bioluminescent indicators for intracellular Ca2+ are described here with CaM-M13 interaction-induced complementation of split Renilla luciferase. The Ca2+-induced interaction between CaM and M13 leads to complementation of the N- and C-terminal halves of split Renilla luciferase in living cells. This intramolecular interaction results in the spontaneous and simultaneous emission of bioluminescence split Renilla luciferase. This is how intracellular Ca2+ is illuminated with the intramolecular complementation of split Renilla luciferase. The Ca2+-dependent spontaneous and simultaneous emission of bioluminescence promises to reveal Ca2+ dynamics in living cells, and also in vivo using the present indicators.

摘要

本文描述了用于细胞内Ca2+的基因编码生物发光指示剂,其基于CaM-M13相互作用诱导的分裂海肾荧光素酶互补。Ca2+诱导的CaM与M13之间的相互作用导致分裂海肾荧光素酶的N端和C端在活细胞中互补。这种分子内相互作用导致分裂海肾荧光素酶自发且同时发出生物发光。这就是通过分裂海肾荧光素酶的分子内互补来检测细胞内Ca2+的方式。Ca2+依赖的生物发光自发且同时发射,有望揭示活细胞内以及使用当前指示剂在体内的Ca2+动态。

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