Tani Kazutoshi, Arthur Christopher P, Tamakoshi Masatada, Yokoyama Ken, Mitsuoka Kaoru, Fujiyoshi Yoshinori, Gerle Christoph
Cellular and Structural Physiology Institute, Nagoya University, Nagoya 464-8601, Japan.
Microscopy (Oxf). 2013 Aug;62(4):467-74. doi: 10.1093/jmicro/dft020. Epub 2013 Apr 9.
V-ATPases are multisubunit, membrane-bound, energy-converting, cellular machines whose assembly and disassembly is innately connected to their activity in vivo. In vitro V-ATPases show a propensity for disassembly that greatly complicates their functional, and, in particular, structural characterization. Direct structural evidence for early stages of their disassembly has not been reported yet. We analyzed the structure of the V-ATPase from Thermus thermophilus in a single negatively stained two-dimensional (2-D) crystal both by electron tomography and by electron crystallography. Our analysis demonstrated that for 2-D crystals of fragile macromolecular complexes, which are too heterogenous or too few for the merging of image data from many crystals, single-crystal 3-D reconstructions by electron tomography and electron crystallography are expedient tools of analysis. The asymmetric unit in the 2-D crystal lattice contains two different V-ATPase complexes that appear to be in an early stage of disassembly and with either one or both peripheral stalks not being visualized, suggesting the involvement of the peripheral stalks in early stages of disassembly.
V-ATP酶是多亚基、膜结合、能量转换的细胞机器,其组装和拆卸与它们在体内的活性内在相关。体外V-ATP酶显示出拆卸倾向,这极大地复杂化了它们的功能,特别是结构表征。尚未报道其拆卸早期阶段的直接结构证据。我们通过电子断层扫描和电子晶体学分析了嗜热栖热菌V-ATP酶在单个负染色二维(2-D)晶体中的结构。我们的分析表明,对于脆弱大分子复合物的二维晶体,由于其过于异质或数量过少而无法合并来自许多晶体的图像数据,通过电子断层扫描和电子晶体学进行的单晶三维重建是便捷的分析工具。二维晶格中的不对称单元包含两种不同的V-ATP酶复合物,它们似乎处于拆卸早期阶段,其中一个或两个外周柄未可视化,这表明外周柄参与了拆卸早期阶段。