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d亚基在人类液泡H⁺-ATP酶中起核心作用。

The d subunit plays a central role in human vacuolar H(+)-ATPases.

作者信息

Smith Annabel N, Francis Richard W, Sorrell Sara L, Karet Fiona E

机构信息

Department of Medical Genetics, University of Cambridge, Cambridge, UK.

出版信息

J Bioenerg Biomembr. 2008 Aug;40(4):371-80. doi: 10.1007/s10863-008-9161-y. Epub 2008 Aug 28.

Abstract

The multi-subunit vacuolar-type H(+)-ATPase consists of a V(1) domain (A-H subunits) catalyzing ATP hydrolysis and a V(0) domain (a, c, c', c", d, e) responsible for H(+) translocation. The mammalian V(0) d subunit is one of the least-well characterized, and its function and position within the pump are still unclear. It has two different forms encoded by separate genes, d1 being ubiquitous while d2 is predominantly expressed at the cell surface in kidney and osteoclast. To determine whether it forms part of the pump's central stalk as suggested by bacterial A-ATPase studies, or is peripheral as hypothesized from a yeast model, we investigated both human d subunit isoforms. In silico structural modelling demonstrated that human d1 and d2 are structural orthologues of bacterial subunit C, despite poor sequence identity. Expression studies of d1 and d2 showed that each can pull down the central stalk's D and F subunits from human kidney membrane, and in vitro studies using D and F further showed that the interactions between these proteins and the d subunit is direct. These data indicate that the d subunit in man is centrally located within the pump and is thus important in its rotary mechanism.

摘要

多亚基液泡型H(+)-ATP酶由催化ATP水解的V(1)结构域(A - H亚基)和负责H(+)转运的V(0)结构域(a、c、c'、c''、d、e)组成。哺乳动物的V(0) d亚基是特征了解最少的亚基之一,其在泵中的功能和位置仍不清楚。它有由不同基因编码的两种不同形式,d1普遍存在,而d2主要在肾脏和破骨细胞的细胞表面表达。为了确定它是否如细菌A-ATP酶研究所表明的那样构成泵中心柄的一部分,或者如酵母模型所假设的那样是外周的,我们研究了人类d亚基的两种异构体。计算机模拟结构建模表明,尽管序列一致性较差,但人类d1和d2是细菌C亚基的结构同源物。d1和d2的表达研究表明,它们各自都能从人肾膜中下拉中心柄的D和F亚基,并且使用D和F的体外研究进一步表明这些蛋白质与d亚基之间的相互作用是直接的。这些数据表明,人类的d亚基位于泵的中心位置,因此在其旋转机制中很重要。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/d091/2782108/5ceba205d2ed/10863_2008_Article_9161_Fig1.jpg

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