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首页> 外文期刊>BioMetals: An International Journal on the Role of Metal Ions in Biology, Biochemistry and Medicine >The six metal binding domains in human copper transporter, ATP7B: molecular biophysics and disease-causing mutations
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The six metal binding domains in human copper transporter, ATP7B: molecular biophysics and disease-causing mutations

机译:人铜转运蛋白中的六个金属结合结构域,ATP7B:分子生物物理学和疾病突变

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摘要

Wilson Disease (WD) is a hereditary genetic disorder, which coincides with a dysfunctional copper (Cu) metabolism caused by mutations in ATP7B, a membrane-bound P-1B-type ATPase responsible for Cu export from hepatic cells. The N-terminal part (similar to 600 residues) of the multi-domain 1400-residue ATP7B constitutes six metal binding domains (MBDs), each of which can bind a copper ion, interact with other ATP7B domains as well as with different proteins. Although the ATP7B's MBDs have been investigated in vitro and in vivo intensively, it remains unclear how these domains modulate overall structure, dynamics, stability and function of ATP7B. The presence of six MBDs is unique to mammalian ATP7B homologs, and many WD causing missense mutations are found in these domains. Here, we have summarized previously reported in vitro biophysical data on the MBDs of ATP7B and WD point mutations located in these domains. Besides the demonstration of where the research field stands today, this review showcasts the need for further biophysical investigation about the roles of MBDs in ATP7B function. Molecular mechanisms of ATP7B are important not only in the development of new WD treatment but also for other aspects of human physiology where Cu transport plays a role.
机译:威尔逊疾病(WD)是一种遗传性遗传疾病,其与ATP7B中的突变引起的功能障碍铜(Cu)代谢相一致,该膜结合的P-1B型ATP酶负责从肝细胞出口。多域1400-残基ATP7b的N-末端部分(类似于600个残基)构成六个金属结合结构域(MBD),每种金属结合结构域(MBD)可以结合铜离子,与其他ATP7B结构域以及不同的蛋白质相互作用。虽然ATP7B的MBD已经在体外和体内进行了集中研究,但仍然不明确于这些域如何调节ATP7B的整体结构,动力学,稳定性和功能。六种MBD的存在是哺乳动物ATP7B同源物独有的,并且在这些域中发现了许多导致畸形突变的WD。在这里,我们先前已经报道了位于这些结构域中的ATP7B和WD点突变的MBDS上的体外生物物理数据。除了研究领域今天展示的展示外,这篇评论显示了需要进一步的生物物理调查关于MBD在ATP7B功能中的角色。 ATP7B的分子机制不仅是在新WD治疗的发展中的重要性,而且对于CU运输发挥作用的人体生理学的其他方面,重要的是重要的。

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