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酿酒酵母中的质膜电子传递依赖于线粒体呼吸亚基的存在。

Plasma membrane electron transport in Saccharomyces cerevisiae depends on the presence of mitochondrial respiratory subunits.

作者信息

Herst Patries M, Perrone Gabriel G, Dawes Ian W, Bircham Peter W, Berridge Michael V

机构信息

Malaghan Institute of Medical Research, Wellington, New Zealand.

出版信息

FEMS Yeast Res. 2008 Sep;8(6):897-905. doi: 10.1111/j.1567-1364.2008.00418.x. Epub 2008 Jul 23.

Abstract

Most investigations into plasma membrane electron transport (PMET) in Saccharomyces cerevisiae have focused on the inducible ferric reductase responsible for iron uptake under iron/copper-limiting conditions. In this paper, we describe a PMET system, distinct from ferric reductase, which reduces the cell-impermeable water-soluble tetrazolium dye, 2-(4-iodophenyl)-3-(4-nitrophenyl)-5-(2,4-disulphophenyl)-2H-tetrazolium monosodium salt (WST-1), under normal iron/copper conditions. WST-1/1-methoxy-phenazine methosulphate reduction was unaffected by anoxia and relatively insensitive to diphenyleneiodonium. Dye reduction was increased when intracellular NADH levels were high, which, in S. cerevisiae, required deletion of numerous genes associated with NADH recycling. Genome-wide screening of all viable nuclear gene-deletion mutants of S. cerevisiae revealed that, although mitochondrial electron transport per se was not required, the presence of several nuclear and mitochondrially encoded subunits of respiratory complexes III and IV was mandatory for PMET. This suggests some form of interaction between components of mitochondrial and plasma membrane electron transport. In support of this, mitochondrial tubular networks in S. cerevisiae were shown to be located in close proximity to the plasma membrane using confocal microscopy.

摘要

大多数针对酿酒酵母质膜电子传递(PMET)的研究都集中在铁/铜限制条件下负责铁摄取的诱导型铁还原酶上。在本文中,我们描述了一种与铁还原酶不同的PMET系统,该系统在正常铁/铜条件下可还原细胞不可渗透的水溶性四唑盐染料2-(4-碘苯基)-3-(4-硝基苯基)-5-(2,4-二磺苯基)-2H-四唑单钠盐(WST-1)。WST-1/1-甲氧基吩嗪硫酸甲酯的还原不受缺氧影响,且对二亚苯基碘onium相对不敏感。当细胞内NADH水平较高时,染料还原增加,在酿酒酵母中,这需要删除许多与NADH循环相关的基因。对酿酒酵母所有可行的核基因缺失突变体进行全基因组筛选发现,虽然线粒体电子传递本身并非必需,但呼吸复合物III和IV的几个核编码和线粒体编码亚基的存在对PMET是必不可少的。这表明线粒体和质膜电子传递成分之间存在某种形式的相互作用。为此提供支持的是,使用共聚焦显微镜显示酿酒酵母中的线粒体管状网络紧邻质膜。

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