Beeler T J, Fu D, Rivera J, Monaghan E, Gable K, Dunn T M
Department of Biochemistry, Uniformed Services University of the Health Sciences, Bethesda, MD 20814, USA.
Mol Gen Genet. 1997 Aug;255(6):570-9. doi: 10.1007/s004380050530.
Saccharomyces cerevisiae cells require two genes, CSG1/SUR1 and CSG2, for growth in 50 mM Ca2+, but not 50 mM Sr2+. CSG2 was previously shown to be required for the mannosylation of inositolphosphorylceramide (IPC) to form mannosylinositolphosphorylceramide (MIPC). Here we demonstrate that SUR1/CSG1 is both genetically and biochemically related to CSG2. Like CSG2, SUR1/CSG1 is required for IPC mannosylation. A 93-amino acid stretch of Csg1p shows 29% identity with the alpha-1, 6-mannosyltransferase encoded by OCH1. The SUR1/CSG1 gene is a dose-dependent suppressor of the Ca(2+)-sensitive phenotype of the csg2 mutant, but overexpression of CSG2 does not suppress the Ca2+ sensitivity of the csg1 mutant. The csg1 and csg2 mutants display normal growth in YPD, indicating that mannosylation of sphingolipids is not essential. Increased osmolarity of the growth medium increases the Ca2+ tolerance of csg1 and csg2 mutant cells, suggesting that altered cell wall synthesis causes Ca(2+)-induced death. Hydroxylation of IPC-C to form IPC-D requires CCC2, a gene encoding an intracellular Cu2+ transporter. Increased expression of CCC2 or increased Cu2+ concentration in the growth medium enhances the Ca2+ tolerance of csg1 mutants, suggesting that accumulation of IPC-C renders csg1 cells Ca2+ sensitive.
酿酒酵母细胞在50 mM Ca2+ 中生长需要两个基因CSG1/SUR1和CSG2,但在50 mM Sr2+ 中则不需要。先前已证明CSG2是将肌醇磷酸神经酰胺(IPC)甘露糖基化形成甘露糖基肌醇磷酸神经酰胺(MIPC)所必需的。在此我们证明SUR1/CSG1在遗传和生化方面均与CSG2相关。与CSG2一样,SUR1/CSG1是IPC甘露糖基化所必需的。Csg1p的一段93个氨基酸的序列与由OCH1编码的α-1,6-甘露糖基转移酶有29%的同一性。SUR1/CSG1基因是csg2突变体Ca(2+)敏感表型的剂量依赖性抑制因子,但CSG2的过表达并不能抑制csg1突变体的Ca2+敏感性。csg1和csg2突变体在YPD中显示正常生长,表明鞘脂的甘露糖基化并非必不可少。生长培养基渗透压的增加会提高csg1和csg2突变体细胞对Ca2+的耐受性,这表明细胞壁合成的改变会导致Ca(2+)诱导的死亡。将IPC-C羟基化形成IPC-D需要CCC2,该基因编码一种细胞内Cu2+转运蛋白。CCC2表达的增加或生长培养基中Cu2+浓度的增加会增强csg1突变体对Ca2+的耐受性,这表明IPC-C的积累使csg1细胞对Ca2+敏感。