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来自表达重组水母发光蛋白的酵母线粒体中的钙离子运输

Ca2+ transport in mitochondria from yeast expressing recombinant aequorin.

作者信息

Jung Dennis W, Bradshaw Patrick C, Litsky Monica, Pfeiffer Douglas R

机构信息

Department of Molecular and Cellular Biochemistry, The Ohio State University Medical Center, Columbus, OH 43210, USA.

出版信息

Anal Biochem. 2004 Jan 15;324(2):258-68. doi: 10.1016/j.ab.2003.10.029.

Abstract

We have expressed aequorin in mitochondria of the yeast Saccharomyces cerevisiae and characterized the resulting strain with respect to mitochondrial Ca(2+) transport in vivo and in vitro. When intact cells are suspended in water containing 1.4 mM ethanol and 14 mM CaCl(2), the matrix free Ca(2+) concentration is 200 nM, similar to the values expected in cytoplasm. Addition of ionophore ETH 129 allows an active accumulation of Ca(2+) and promptly increases the value to 1.2 microM. Elevated Ca(2+) concentrations are maintained for periods of 6 min or longer under these conditions. Isolated yeast mitochondria oxidizing ethanol also accumulate Ca(2+) when ETH 129 is present, but the cation is not retained depending on the medium conditions. This finding confirms the presence of a Ca(2+) release mechanism that requires free fatty acids as previously described [P.C. Bradshaw et al. (2001) J. Biol. Chem. 276, 40502-40509]. When a respiratory substrate is not present, Ca(2+) enters and leaves yeast mitochondria slowly, at a specific activity near 0.2 nmol/min/mg protein. Transport under these conditions equilibrates the internal and external concentrations of Ca(2+) and is not affected by ruthenium red, uncouplers, or ionophores that perturb transmembrane gradients of charge and pH. This activity displays sigmoid kinetics and a K(1/2) value for Ca(2+) that is near to 900 nM, in the absence of ethanol or when it is present. It is furthermore shown that the activity coefficient of Ca(2+) in yeast mitochondria is a function of the matrix Ca(2+) content and is substantially larger than that in mammalian mitochondria. Characteristics of the aequorin-expressing strain appear suitable for its use in expression-based methods directed at cloning Ca(2+) transporters from mammalian mitochondria and for further examining the interrelationships between mitochondrial and cytoplasmic Ca(2+) in yeast.

摘要

我们已在酿酒酵母的线粒体中表达了水母发光蛋白,并对所得菌株在体内和体外的线粒体钙(Ca2+)转运方面进行了表征。当完整细胞悬浮于含有1.4 mM乙醇和14 mM氯化钙的水中时,基质游离钙(Ca2+)浓度为200 nM,与细胞质中预期的值相似。添加离子载体ETH 129可使钙(Ca2+)有效积累,并迅速将该值提高到1.2 μM。在这些条件下,升高的钙(Ca2+)浓度可维持6分钟或更长时间。当存在ETH 129时,分离出的氧化乙醇的酵母线粒体也会积累钙(Ca2+),但阳离子的保留取决于培养基条件。这一发现证实了先前所述的需要游离脂肪酸的钙(Ca2+)释放机制的存在[P.C. Bradshaw等人(2001年)《生物化学杂志》276,40502 - 40509]。当不存在呼吸底物时,钙(Ca2+)缓慢进出酵母线粒体,比活性接近0.2 nmol/分钟/毫克蛋白质。在这些条件下的转运使钙(Ca2+)的内部和外部浓度达到平衡,并且不受钌红、解偶联剂或扰乱跨膜电荷和pH梯度的离子载体的影响。这种活性表现出S形动力学,在不存在乙醇或存在乙醇时,钙(Ca2+)的K(1/2)值接近900 nM。此外还表明,酵母线粒体中钙(Ca2+)的活度系数是基质钙(Ca2+)含量的函数,并且远大于哺乳动物线粒体中的活度系数。表达水母发光蛋白的菌株的特性似乎适合用于基于表达的方法,以克隆来自哺乳动物线粒体的钙(Ca2+)转运体,并进一步研究酵母中线粒体和细胞质钙(Ca2+)之间的相互关系。

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