Lingrel J B, Argüello J M, Van Huysse J, Kuntzweiler T A
Department of Molecular Genetics, Biochemistry and Microbiology, University of Cincinnati College of Medicine, Ohio 45267-0524, USA.
Ann N Y Acad Sci. 1997 Nov 3;834:194-206. doi: 10.1111/j.1749-6632.1997.tb52251.x.
From the structural data obtained by systematically altering residues of the Na,K-ATPase, we are beginning to understand portions of how this active cation transporter couples hydrolysis of ATP with the vectorial movement of cations against their ionic gradients. In addition, the inhibitory action of cardiac glycosides and their interaction sites on the protein has focused our attentions on a catalytic core of the protein involving the H5-H6 transmembrane segment. In future investigations, both the ATP and the Na+ sites of the Na,K-ATPase must be uncovered to refine the structural picture of this complex transporter.
通过系统改变钠钾ATP酶的残基所获得的结构数据,我们开始了解这种活性阳离子转运蛋白是如何将ATP水解与阳离子逆离子梯度的向量移动相偶联的部分机制。此外,强心苷的抑制作用及其在蛋白质上的相互作用位点,使我们将注意力集中在涉及H5-H6跨膜片段的蛋白质催化核心上。在未来的研究中,必须揭示钠钾ATP酶的ATP和钠离子位点,以完善这种复杂转运蛋白的结构图景。