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酿酒酵母ATP3基因的研究:在第二条染色体右臂上存在两个紧密连锁的拷贝,ATP3a和ATP3b。

Studies on the ATP3 gene of Saccharomyces cerevisiae: presence of two closely linked copies, ATP3a and ATP3b, on the right arm of chromosome II.

作者信息

Ohnishi Katsunori, Ishibashi Shinya, Kunihiro Masayuki, Satoh Takaaki, Matsubara Kiyo, Oku Soichiro, Ono Bun-ichiro, Mabuchi Tadashi, Takeda Masaharu

机构信息

Department of Applied Life Science, Sojo University, 4-22-1 Ikeda, Kumamoto 860-0082, Japan.

出版信息

Yeast. 2003 Aug;20(11):943-54. doi: 10.1002/yea.1009.

Abstract

In this paper, we present evidence that there are two closely linked copies of the ATP3 gene coding for the gamma subunit of the F(1)F(0)-ATPase complex (EC3.6.1.34) in four laboratory strains of Saccharomyces cerevisiae, even though the yeast genome project has reported that ATP3 is a single-copy gene on chromosome II. We previously reported that the gene dosage (three copies) of ATP1 and ATP2 is coincident with the subunit number of F(1)-alpha and F(1)-beta, but that the gene dosage of ATP3 was not consistent with the subunit stoichiometry of F(1)F(0)-ATPase. By applying long PCR and gene walking analyses, we estimated that the two copies of ATP3 were approximately 20 kb apart, and we designated that which is proximal to the centromere ATP3a, while we named that which is distal ATP3b. The nucleotide sequences of the two copies of ATP3 were identical to the reported sequence in the W303-1A, W303-1B and LL20 strains, while only the DC5 strain had a single base substitution in its ATP3a. With the exception of this substitution, the other nucleotide sequences were identical to the upstream 860 bp and the downstream 150 bp. The differences between ATP3 with the single base substitution (Ser(308) to Phe) and ATP3 without the substitution on the complementation of the ATP3 disruptant and on the maintenance of the mitochondrial DNA were observed, suggesting that Atp3ap and Atp3bp in the DC5 strain might have different functions. However, it should not always be necessary for yeast cells to carry different types of ATP3 because the other three strains carry the same type of ATP3. It was also demonstrated that the disruption of the ATP3 genes basically leads to a loss of wild-type mtDNA, but the stability of the mtDNA is not dependent on the ATP3 alone.

摘要

在本文中,我们提供证据表明,在酿酒酵母的四个实验室菌株中,存在两个紧密相连的ATP3基因拷贝,它们编码F(1)F(0)-ATP合酶复合体(EC3.6.1.34)的γ亚基,尽管酵母基因组计划报告称ATP3是位于II号染色体上的单拷贝基因。我们之前报道过,ATP1和ATP2的基因剂量(三个拷贝)与F(1)-α和F(1)-β的亚基数一致,但ATP3的基因剂量与F(1)F(0)-ATP合酶的亚基化学计量不一致。通过应用长PCR和基因步移分析,我们估计两个ATP3拷贝相距约20 kb,我们将靠近着丝粒的那个命名为ATP3a,而将远离着丝粒的那个命名为ATP3b。在W303-1A、W303-1B和LL20菌株中,两个ATP3拷贝的核苷酸序列与报道的序列相同,而只有DC5菌株的ATP3a中有一个单碱基替换。除了这个替换外,其他核苷酸序列与上游860 bp和下游150 bp相同。观察到在ATP3破坏体的互补和线粒体DNA的维持方面,有单碱基替换(Ser(308)突变为Phe)的ATP3与无替换的ATP3之间存在差异,这表明DC5菌株中的Atp3ap和Atp3bp可能具有不同的功能。然而,酵母细胞不一定总是需要携带不同类型的ATP3,因为其他三个菌株携带的是相同类型的ATP3。还证明了ATP3基因的破坏基本上会导致野生型线粒体DNA的丢失,但线粒体DNA的稳定性并不单独依赖于ATP3。

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