The Graduate University for Advanced Studies (SOKENDAI), Kanagawa, 240-0193, Japan.
National Institute for Physiological Sciences, Okazaki, Aichi, 444-8585, Japan.
Sci Rep. 2018 Oct 23;8(1):15632. doi: 10.1038/s41598-018-33977-9.
EhV-ATPase is an ATP-driven Na pump in the eubacteria Enterococcus hirae (Eh). Here, we present the first entire structure of detergent-solubilized EhV-ATPase by single-particle cryo-electron microscopy (cryo-EM) using Zernike phase plate. The cryo-EM map dominantly showed one of three catalytic conformations in this rotary enzyme. To further stabilize the originally heterogeneous structure caused by the ATP hydrolysis states of the V-ATPases, a peptide epitope tag system was adopted, in which the inserted peptide epitope sequence interfered with rotation of the central rotor by binding the Fab. As a result, the map unexpectedly showed another catalytic conformation of EhV-ATPase. Interestingly, these two conformations identified with and without Fab conversely coincided with those of the minor state 2 and the major state 1 of Thermus thermophilus V/A-ATPase, respectively. The most prominent feature in EhV-ATPase was the off-axis rotor, where the cytoplasmic V domain was connected to the transmembrane V domain through the off-axis central rotor. Furthermore, compared to the structure of ATP synthases, the larger size of the interface between the transmembrane a-subunit and c-ring of EhV-ATPase would be more advantageous for active ion pumping.
EhV-ATPase 是一种在真细菌肠球菌(Eh)中由 ATP 驱动的 Na+泵。在这里,我们通过使用泽尼克相衬板的单颗粒冷冻电子显微镜(cryo-EM)首次呈现了去污剂溶解的 EhV-ATPase 的完整结构。该 cryo-EM 图谱主要显示了该旋转酶中的三种催化构象之一。为了进一步稳定由 V-ATPases 的 ATP 水解状态引起的原本异构的结构,采用了肽表位标签系统,其中插入的肽表位序列通过与 Fab 结合干扰中央转子的旋转。结果,图谱出人意料地显示了 EhV-ATPase 的另一种催化构象。有趣的是,这两种构象与 Fab 有和无分别与嗜热菌 V/A-ATPase 的次要状态 2 和主要状态 1 相对应。EhV-ATPase 最显著的特征是偏心转子,其中细胞质 V 结构域通过偏心中央转子与跨膜 V 结构域相连。此外,与 ATP 合酶的结构相比,EhV-ATPase 的跨膜 a-亚基和 c 环之间的界面更大,这对主动离子泵更有利。