From the Departments of Physiology and.
Cell Biology, Johns Hopkins University School of Medicine, Baltimore, Maryland 21205 and.
J Biol Chem. 2017 Nov 17;292(46):18760-18774. doi: 10.1074/jbc.M117.807263. Epub 2017 Aug 24.
ATP7B is a copper-transporting P-type ATPase (Cu-ATPase) with an essential role in human physiology. Mutations in ATP7B cause the potentially fatal Wilson disease, and changes in ATP7B expression are observed in several cancers. Despite its physiologic importance, the biochemical information about ATP7B remains limited because of a complex multidomain organization of the protein. By analogy with the better characterized prokaryotic Cu-ATPases, ATP7B is assumed to be a single-chain monomer. We show that in eukaryotic cells, human ATP7B forms dimers that can be purified following solubilization. Deletion of the four N-terminal metal-binding domains, characteristic for human ATP7B, does not disrupt dimerization, the dimer interface is formed by the domains that are conserved among Cu-ATPases. Unlike the full-length ATP7B, which is targeted to the -Golgi network, 1-4ΔMBD-7B is targeted primarily to vesicles. This result and the analysis of differentially tagged ATP7B variants indicate that the dimeric structure is retained during ATP7B trafficking between the intracellular compartments. Purified dimeric species of 1-4ΔMBD-7B were characterized by a negative stain electron microscopy in the presence of ADP/MgCl Single-particle analysis yielded a low-resolution 3D model that provides the first insight into an overall architecture of a human Cu-ATPase, positions of the main domains, and a dimer interface.
ATP7B 是一种铜转运 P 型 ATP 酶(Cu-ATPase),在人体生理学中具有重要作用。ATP7B 突变会导致潜在致命的威尔逊病,并且在几种癌症中观察到 ATP7B 表达的变化。尽管其生理重要性,但由于该蛋白的复杂多结构域组织,有关 ATP7B 的生化信息仍然有限。通过与更好表征的原核 Cu-ATPase 的类比,ATP7B 被假定为单链单体。我们表明,在真核细胞中,人源 ATP7B 形成二聚体,可在溶解后进行纯化。缺失人源 ATP7B 特有的四个 N 端金属结合结构域不会破坏二聚化,二聚体界面由 Cu-ATPase 中保守的结构域形成。与定位于 -高尔基网络的全长 ATP7B 不同,1-4ΔMBD-7B 主要定位于囊泡。这一结果以及对差异标记的 ATP7B 变体的分析表明,在 ATP7B 在细胞内隔室之间运输过程中二聚体结构得以保留。在 ADP/MgCl 存在下,通过负染电子显微镜对纯化的 1-4ΔMBD-7B 二聚体进行了表征。单颗粒分析产生了一个低分辨率的 3D 模型,该模型首次提供了对人源 Cu-ATPase 的整体结构、主要结构域的位置以及二聚体界面的见解。