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酵母和植物线粒体中一种新型谷氨酸转运蛋白的分子鉴定和功能特征。

Molecular identification and functional characterization of a novel glutamate transporter in yeast and plant mitochondria.

机构信息

Laboratory of Biochemistry and Molecular Biology, Department of Biosciences, Biotechnologies and Biopharmaceutics, University of Bari Aldo Moro, Bari, Italy.

CNR Institute of Biomembranes, Bioenergetics and Molecular Biotechnologies (IBIOM), Bari, Italy.

出版信息

Biochim Biophys Acta Bioenerg. 2018 Nov;1859(11):1249-1258. doi: 10.1016/j.bbabio.2018.08.001. Epub 2018 Aug 8.

Abstract

The genome of Saccharomyces cerevisiae encodes 35 members of the mitochondrial carrier family (MCF) and 58 MCF members are coded by the genome of Arabidopsis thaliana, most of which have been functionally characterized. Here two members of this family, Ymc2p from S. cerevisiae and BOU from Arabidopsis, have been thoroughly characterized. These proteins were overproduced in bacteria and reconstituted into liposomes. Their transport properties and kinetic parameters demonstrate that Ymc2p and BOU transport glutamate, and to a much lesser extent L-homocysteinesulfinate, but not other amino acids and many other tested metabolites. Transport catalyzed by both carriers was saturable, inhibited by mercuric chloride and dependent on the proton gradient across the proteoliposomal membrane. The growth phenotype of S. cerevisiae cells lacking the genes ymc2 and agc1, which encodes the only other S. cerevisiae carrier capable to transport glutamate besides aspartate, was fully complemented by expressing Ymc2p, Agc1p or BOU. Mitochondrial extracts derived from ymc2Δagc1Δ cells, reconstituted into liposomes, exhibited no glutamate transport at variance with wild-type, ymc2Δ and agc1Δ cells, showing that S. cerevisiae cells grown in the presence of acetate do not contain additional mitochondrial transporters for glutamate besides Ymc2p and Agc1p. Furthermore, mitochondria isolated from wild-type, ymc2Δ and agc1Δ strains, but not from the double mutant ymc2Δagc1Δ strain, swell in isosmotic ammonium glutamate showing that glutamate is transported by Ymc2p and Agc1p together with a H. It is proposed that the function of Ymc2p and BOU is to transport glutamate across the mitochondrial inner membrane and thereby play a role in intermediary metabolism, C1 metabolism and mitochondrial protein synthesis.

摘要

酿酒酵母的基因组编码 35 种线粒体载体家族(MCF)成员,拟南芥的基因组编码 58 种 MCF 成员,其中大多数已被功能表征。在这里,我们对该家族的两个成员,来自酿酒酵母的 Ymc2p 和来自拟南芥的 BOU,进行了深入的表征。这些蛋白质在细菌中过量表达并重新构成脂质体。它们的转运特性和动力学参数表明,Ymc2p 和 BOU 转运谷氨酸,并且在较小程度上转运 L-高半胱氨酸亚磺酸盐,但不转运其他氨基酸和许多其他测试代谢物。两种载体催化的转运都是饱和的,被氯化汞抑制,并依赖于穿过蛋白脂质体膜的质子梯度。缺乏基因 ymc2 和 agc1 的酿酒酵母细胞的生长表型,该基因编码除天冬氨酸外唯一能够转运谷氨酸的酿酒酵母载体,通过表达 Ymc2p、Agc1p 或 BOU 得到完全互补。从 ymc2Δagc1Δ 细胞中提取的线粒体提取物,重新构成脂质体,没有显示出谷氨酸转运,与野生型、ymc2Δ 和 agc1Δ 细胞不同,表明在乙酸存在下生长的酿酒酵母细胞除了 Ymc2p 和 Agc1p 之外,不含有其他线粒体谷氨酸转运体。此外,从野生型、ymc2Δ 和 agc1Δ 菌株分离的线粒体,但不是从双突变体 ymc2Δagc1Δ 菌株分离的线粒体,在等渗谷氨酸铵中肿胀,表明谷氨酸是由 Ymc2p 和 Agc1p 与 H 一起转运的。因此,Ymc2p 和 BOU 的功能是将谷氨酸跨线粒体内膜转运,从而在中间代谢、C1 代谢和线粒体蛋白合成中发挥作用。

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