Nowakowski Szczepan, Mijaljica Dalibor, Prescott Mark, Devenish Rodney J
Department of Biochemistry and Molecular Biology, and ARC Centre of Excellence in Structural and Functional Microbial Genomics, Monash University, Clayton campus, Victoria 3800, Australia; E-Mails:
Int J Mol Sci. 2011;12(7):4693-704. doi: 10.3390/ijms12074693. Epub 2011 Jul 20.
The vacuolar ATPase (V-ATPase) complex of yeast (Saccharomyces cerevisiae) is comprised of two sectors, V(1) (catalytic) and V(O) (proton transfer). The hexameric (A(3)B(3)) cylinder of V(1) has a central cavity that must accommodate at least part of the rotary stalk of V-ATPase, a key component of which is subunit D (Vma8p). Recent electron microscopy (EM) data for the prokaryote V-ATPase complex (Thermus thermophilus) suggest that subunit D penetrates deeply into the central cavity. The functional counterpart of subunit D in mitochondrial F(1)F(O)-ATP synthase, subunit γ, occupies almost the entire length of the central cavity. To test whether the structure of yeast Vma8p mirrors that of subunit γ, we probed the location of the C-terminus of Vma8p by attachment of a large protein adduct, green fluorescent protein (GFP). We found that truncated Vma8p proteins lacking up to 40 C-terminal residues fused to GFP can be incorporated into functional V-ATPase complexes, and are able to support cell growth under alkaline conditions. We conclude that large protein adducts can be accommodated at the top of the central cavity of V(1) without compromising V-ATPase function, arguing for structural flexibility of the V(1) sector.
酵母(酿酒酵母)的液泡型ATP酶(V-ATP酶)复合体由两个部分组成,V1(催化部分)和V0(质子转移部分)。V1的六聚体(A3B3)圆柱体有一个中央腔,该中央腔必须容纳V-ATP酶旋转柄的至少一部分,其关键组分为亚基D(Vma8p)。最近关于原核生物V-ATP酶复合体(嗜热栖热菌)的电子显微镜(EM)数据表明,亚基D深深插入中央腔。线粒体F1F0-ATP合酶中与亚基D功能对应的亚基γ,几乎占据了中央腔的整个长度。为了测试酵母Vma8p的结构是否与亚基γ的结构相似,我们通过连接一种大的蛋白质加合物——绿色荧光蛋白(GFP)来探测Vma8p C末端的位置。我们发现,缺失多达40个C末端残基并与GFP融合的截短型Vma8p蛋白能够被整合到功能性V-ATP酶复合体中,并能够在碱性条件下支持细胞生长。我们得出结论,大的蛋白质加合物能够被容纳在V1中央腔的顶部而不影响V-ATP酶的功能,这表明V1部分具有结构灵活性。