Harrison Michael, Durose Lyndsey, Song Chun Feng, Barratt Elizabeth, Trinick John, Jones Richard, Findlay John B C
School of Biochemistry and Molecular Biology, University of Leeds, Leeds LS2 9JT, United Kingdom.
J Bioenerg Biomembr. 2003 Aug;35(4):337-45. doi: 10.1023/a:1025728915565.
In the absence of a high-resolution structure for the vacuolar H+-ATPase, a number of approaches can yield valuable information about structure/function relationships in the enzyme. Electron microscopy can provide not only a representation of the overall architecture of the complex, but also a low-resolution map onto which structures solved for individually expressed subunits can be fitted. Here we review the possibilities for electron microscopy of the Saccharomyces V-ATPase and examine the suitability of V-ATPase subunits for expression in high yield prokaryotic systems, a key step towards high-resolution structural studies. We also review the role of experimentally-derived structural models in understanding structure/function relationships in the V-ATPase, with particular reference to the complex of proton-translocating 16 kDa proteolipids in the membrane domain of the V-ATPase. This model in turn makes testable predictions about the sites of binding of bafilomycins and the functional interactions between the proteolipid and the single-copy membrane subunit Vph1p, with implications for the constitution of the proton translocation pathway.
由于缺乏液泡H⁺-ATP酶的高分辨率结构,多种方法可以提供有关该酶结构/功能关系的有价值信息。电子显微镜不仅可以呈现该复合物的整体结构,还能提供一个低分辨率图谱,单独表达的亚基所解析出的结构可以拟合到该图谱上。在此,我们综述了酿酒酵母V-ATP酶电子显微镜研究的可能性,并考察了V-ATP酶亚基在高产原核系统中表达的适用性,这是迈向高分辨率结构研究的关键一步。我们还综述了实验得出的结构模型在理解V-ATP酶结构/功能关系中的作用,特别提及V-ATP酶膜结构域中质子转运16 kDa蛋白脂质的复合物。该模型进而对巴弗洛霉素的结合位点以及蛋白脂质与单拷贝膜亚基Vph1p之间的功能相互作用做出了可检验的预测,这对质子转运途径的组成具有重要意义。