Shih C K, Kwong J, Montalvo E, Neff N
Graduate Program in Molecular Biology, Memorial Sloan-Kettering Cancer Center, New York, New York 10021.
Mol Cell Biol. 1990 Jul;10(7):3397-404. doi: 10.1128/mcb.10.7.3397-3404.1990.
A wild-type haploid yeast strain was transformed with a library of wild-type yeast DNA fragments ligated into a high-copy-number plasmid vector (YEp24). The pooled URA+ transformants were plated on rich medium containing a lethal concentration of trifluoperazine (TFP). Plasmids rescued into Escherichia coli from TFP-resistant yeast colonies contained overlapping DNA fragments from a unique region of yeast chromosome XVI. Deletion and disruption experiments, mini-Tn10 LUK hop analysis, and DNA sequencing defined a novel gene with significant amino acid identity to bovine and yeast vacuoletype proteolipid subunits. This is the second locus identified that can be altered to confer TFP resistance to Saccharomyces cerevisiae and that has significant amino acid identity to a vacuolar ATPase subunit. This suggests that a target for TFP in S. cerevisiae is the electrogenic membranes of the vacuolar network and that alteration of expression or activity of vacuolar proton ATPase subunits is a general mechanism for TFP resistance in this yeast.
用连接到高拷贝数质粒载体(YEp24)中的野生型酵母DNA片段文库转化野生型单倍体酵母菌株。将汇集的URA +转化体接种在含有致死浓度三氟拉嗪(TFP)的丰富培养基上。从TFP抗性酵母菌落拯救到大肠杆菌中的质粒含有来自酵母染色体XVI独特区域的重叠DNA片段。缺失和破坏实验、mini-Tn10 LUK跳跃分析和DNA测序确定了一个与牛和酵母液泡型蛋白脂质亚基具有显著氨基酸同一性的新基因。这是第二个被鉴定出的位点,其改变可使酿酒酵母对TFP产生抗性,并且与液泡ATP酶亚基具有显著氨基酸同一性。这表明酿酒酵母中TFP的一个靶标是液泡网络的生电膜,并且液泡质子ATP酶亚基表达或活性的改变是该酵母中TFP抗性的一般机制。