Rizzuto R, Brini M, Pozzan T
Dept. Biomedical Sciences, University of Padova, Italy.
Cytotechnology. 1993;11 Suppl 1:S44-6.
We here present a novel method, based on the targeting of the photoprotein aequorin, for measuring the concentration of Ca2+ ions in defined cellular compartments of intact cells. In this contribution we will discuss the application to mitochondria. A chimaeric cDNA was constructed by fusing in frame the aequorin cDNA with that for a mitochondrial protein. The cDNA encoded a "mitochondrially-targeted" aequorin, composed of a typical mitochondrial targeting signal at the N-terminus and the photoprotein at the C-terminus. The cDNA, inserted in the expression vector pMT2, was co-transfected into bovine endothelial and HeLa cells together with the selectable plasmid pSV2-neo and stable transfectants, selected for high aequorin production, were analyzed. In subcellular fractionations, aequorin was shown to be localized in mitochondria; in intact cells, the first direct measurement of mitochondrial free Ca2+, [Ca2+]m, were obtained, which showed that [Ca2+]m is low at rest (< 0.5 microM), but rapidly increases to the micromolar range upon cell stimulation [1]. These data indicate that mitochondria "sense" very accurately the cytosolic Ca2+ concentration ([Ca2+]i), and after cell stimulation [Ca2+]m rises to values capable of activating the Ca(2+)-sensitive mitochondrial dehydrogenases.
我们在此提出一种基于光蛋白水母发光蛋白靶向作用的新方法,用于测量完整细胞特定细胞区室中Ca2+离子的浓度。在本论文中,我们将讨论其在线粒体中的应用。通过将水母发光蛋白cDNA与线粒体蛋白的cDNA读框融合构建了一个嵌合cDNA。该cDNA编码一种“线粒体靶向”的水母发光蛋白,其N端为典型的线粒体靶向信号,C端为光蛋白。插入表达载体pMT2的cDNA与可选质粒pSV2-neo一起共转染到牛内皮细胞和HeLa细胞中,并对选择出的高表达水母发光蛋白的稳定转染子进行分析。在亚细胞分级分离中,水母发光蛋白定位于线粒体;在完整细胞中,首次直接测量了线粒体游离Ca2+即[Ca2+]m,结果显示静息时[Ca2+]m较低(<0.5微摩尔),但细胞受刺激后迅速升高至微摩尔范围[1]。这些数据表明线粒体能够非常准确地“感知”胞质Ca2+浓度([Ca2+]i),细胞受刺激后[Ca2+]m升高至能够激活Ca(2+)敏感的线粒体脱氢酶的值。