Gregan J, Bui D M, Pillich R, Fink M, Zsurka G, Schweyen R J
Vienna Biocenter, Department of Microbiology and Genetics, University of Vienna, Austria.
Mol Gen Genet. 2001 Feb;264(6):773-81. doi: 10.1007/s004380000366.
The yeast ORF YPL060w/LPE10 encodes a homologue of the mitochondrial protein Mrs2p. These two proteins are 32% identical, and have two transmembrane domains in their C-terminal regions and a putative magnesium transporter signature, Y/F-G-M-N, at the end of one of these domains. Data presented here indicate that Lpe10p is inserted into the inner mitochondrial membrane with both termini oriented towards the matrix space. Disruption of the LPE10 gene results in a growth defect on non-fermentable substrates (petite phenotype) and a marked defect in group II intron splicing. The fact that in intron-less strains lpe10 disruptants also exhibit a petite phenotype indicates that functions other than RNA splicing are affected by the absence of Lpe10p. In the mitochondria, concentrations of magnesium, but not of several other divalent metal ions, are increased when Lpe10p is overexpressed and reduced when it is absent. Magnesium concentrations are raised to normal levels and growth on non-fermentable substrates is partially restored by the expression of CorA, the bacterial magnesium transporter, in the lpe10 disruptant. These features are similar to those previously reported for Mrs2p, suggesting that Lpe10p and Mrs2p are functional homologues. However, they cannot easily substitute for each other. Their roles in magnesium homeostasis and, possibly as a secondary effect, in RNA splicing are discussed.
酵母开放阅读框YPL060w/LPE10编码一种线粒体蛋白Mrs2p的同源物。这两种蛋白的同源性为32%,在其C端区域有两个跨膜结构域,且在其中一个结构域末端有一个假定的镁转运蛋白特征序列Y/F - G - M - N。本文提供的数据表明,Lpe10p插入线粒体内膜,其两端均朝向基质空间。LPE10基因的破坏导致在非发酵底物上生长缺陷(小菌落表型)以及II组内含子剪接的显著缺陷。在无内含子菌株中,lpe10破坏株也表现出小菌落表型,这一事实表明除RNA剪接外的其他功能也受到Lpe10p缺失的影响。在线粒体中,当Lpe10p过表达时,镁的浓度升高,但其他几种二价金属离子的浓度未升高;当Lpe10p缺失时,镁的浓度降低。在lpe10破坏株中,通过表达细菌镁转运蛋白CorA,镁浓度恢复到正常水平,且在非发酵底物上的生长部分恢复。这些特征与先前报道的Mrs2p的特征相似,表明Lpe10p和Mrs2p是功能同源物。然而,它们不能轻易相互替代。本文讨论了它们在镁稳态中的作用,以及可能作为次要效应在RNA剪接中的作用。