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STV1基因编码95 kDa酵母液泡H(+) -ATP酶亚基Vph1p的功能同源物。

STV1 gene encodes functional homologue of 95-kDa yeast vacuolar H(+)-ATPase subunit Vph1p.

作者信息

Manolson M F, Wu B, Proteau D, Taillon B E, Roberts B T, Hoyt M A, Jones E W

机构信息

Division of Cell Biology, Hospital for Sick Children, Toronto, Ontario, Canada.

出版信息

J Biol Chem. 1994 May 13;269(19):14064-74.

PMID:7514599
Abstract

The Saccharomyces cerevisiae gene, VPH1 (Vacuolar pH 1), encodes a 95-kDa integral membrane subunit of the vacuolar-type H(+)-ATPase (V-ATPase) that is required for enzyme assembly; disruption of the VPH1 gene impairs vacuolar acidification (Manolson, M.F., Proteau, D., Preston, R. A., Stenbit, A., Roberts, B. T., Hoyt, M. A., Preuss, D., Mulholland, J., Botstein, D., and Jones, E. W. (1992) J. Biol. Chem. 267, 14294-14303). Here we show that STV1 (Similar To VPH1) encodes an integral membrane polypeptide of 102 kDa with 54% identity with the peptide sequence of Vph1p. High copy expression of STV1 partially restores vacuolar acidification in a delta vph1 mutant strain; solubilization and fractionation of membrane proteins from these vacuoles show that Stv1p co-purifies with bafilomycin A1-sensitive ATPase activity and with the 60- and 69-kDa V-ATPase subunits. Immunofluorescence microscopy of strains bearing a single copy of epitope-tagged STV1 reveals punctate staining of the cytoplasm; overexpression of epitope-tagged Stv1p reveals both punctate cytoplasmic staining and vacuolar membrane staining. Northern analysis shows that disruption of STV1 does not affect the level of transcription of VPH1 and that disruption of VPH1 does not affect the level of transcription of STV1. Strains bearing disruption of genes encoding other V-ATPase subunits (VMA1, VMA2, VMA3, and VMA4) fail to grow on media supplemented with 100 mM CaCl2 or 4 mM ZnCl2, media buffered to pH 7.5, or media with a glycerol carbon source. On the same types of media only a delta vph1 delta stv1 double disruption mutant has growth phenotypes equivalent to strains bearing a single disruption of the VMA1, VMA2, VMA3, and VMA4 genes; a delta vph1 strain has only moderate growth inhibition while a delta stv1 strain has wild type growth on the conditions listed above. We conclude that Stv1p is a functional homologue of Vph1p and suggest that Stv1p and Vph1p may be equivalent subunits for V-ATPases located on different organelles. The function of these 100-kDa homologues may be to target or regulate other common V-ATPase subunits for two distinct cellular locations.

摘要

酿酒酵母基因VPH1(液泡pH1)编码一种95 kDa的液泡型H(+)-ATP酶(V-ATP酶)整合膜亚基,该亚基是酶组装所必需的;VPH1基因的破坏会损害液泡酸化(Manolson, M.F., Proteau, D., Preston, R. A., Stenbit, A., Roberts, B. T., Hoyt, M. A., Preuss, D., Mulholland, J., Botstein, D., and Jones, E. W. (1992) J. Biol. Chem. 267, 14294 - 14303)。在此我们表明,STV1(类似于VPH1)编码一种102 kDa的整合膜多肽,与Vph1p的肽序列有54%的同一性。STV1的高拷贝表达部分恢复了δvph1突变株中的液泡酸化;对这些液泡的膜蛋白进行溶解和分级分离表明,Stv1p与巴弗洛霉素A1敏感的ATP酶活性以及60 kDa和69 kDa的V-ATP酶亚基共纯化。对带有单拷贝表位标签的STV1菌株进行免疫荧光显微镜检查,显示细胞质有斑点状染色;表位标签的Stv1p过表达显示细胞质有斑点状染色以及液泡膜染色。Northern分析表明,STV1的破坏不影响VPH1的转录水平,VPH1的破坏也不影响STV1的转录水平。编码其他V-ATP酶亚基(VMA1、VMA2、VMA3和VMA4)的基因被破坏的菌株,在补充有100 mM CaCl2或4 mM ZnCl2的培养基、pH值为7.5的缓冲培养基或含有甘油碳源的培养基上无法生长。在相同类型的培养基上,只有δvph1δstv1双破坏突变体具有与VMA1、VMA2、VMA3和VMA4基因单破坏菌株相当的生长表型;δvph1菌株只有中等程度的生长抑制,而δstv1菌株在上述条件下具有野生型生长。我们得出结论,Stv1p是Vph1p的功能同源物,并表明Stv

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