钠泵作用下ATP水解与阳离子运输耦合的结构变化。

J H Kaplan, C Gatto, J P Holden, S J Thornewell
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引用次数: 0

摘要

大多数与阳离子配位相关的残基似乎存在于Na - k -ATP酶的α亚基的跨膜片段中,而似乎参与ATP配位的氨基酸则存在于跨膜片段M4和M5之间的主要细胞质环中(见Lingrel & Kuntzweiler, 1994;Lutsenko & Kaplan, 1995)。参与Na和K离子主动转运的阳离子转运和ATP水解两个功能的耦合必须涉及这两个结构单元之间的相互作用。本文综述了近年来肾脏Na, k - atp酶在生理配体存在下的受控蛋白水解、一系列试剂的化学修饰和各种功能测定等方面的实验结果和研究结论。这些数据为与阳离子结合构象相关的特定跨膜段之间的运动和ATP结合域中发生的偶联变化提供了证据。不同阳离子在阳离子结合域中的结合在ATP结合域中被感知,表现为反应性的变化。这发生在初级结构中间隔很宽的氨基酸残基上。很明显,由于占据阳离子结合结构域,结构变化通过大部分atp结合结构域传递。我们还提供证据表明,结合的阳离子的数量和身份也在atp结合域中被感知。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Structural changes associated with the coupling of ATP hydrolysis and cation transport by the Na pump.

Most of the residues associated with cation coordination seem to reside within transmembrane segments of the alpha-subunit of the Na,K-ATPase, whereas amino acids which appear to be involved in the coordination of ATP are found in the major cytoplasmic loop between transmembrane segments M4 and M5 (see Lingrel & Kuntzweiler, 1994; Lutsenko & Kaplan, 1995). The coupling of the two functions of cation transport and ATP hydrolysis involved in the active transport of Na and K ions must involve interactions between these two structural units. This paper summarizes recent experimental results and conclusions of studies on the renal Na,K-ATPase which have employed controlled proteolysis in the presence of physiological ligands, chemical modification with a range of reagents and a variety of functional assays. The data provide evidence for movements between specific transmembrane segments associated with cation-binding conformations and coupled changes which take place in the ATP binding domain. The binding of different cations in the cation-binding domain is sensed in the ATP binding domain and manifested as a change in reactivity. This occurs at amino acid residues which are widely spaced in primary structure. It is apparent that structural changes are transmitted through much of the ATP-binding domain as a consequence of the occupancy of the cation-binding domain. We also provide evidence that both the number and identity of cations bound are also sensed in the ATP-binding domain.

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