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海洋假单胞菌中钠离子依赖性钾离子转运的动力学

Kinetics of Na+-dependent K+ ion transport in a marine pseudomonad.

作者信息

Hassan H M, MacLeod R A

出版信息

J Bacteriol. 1975 Jan;121(1):160-4. doi: 10.1128/jb.121.1.160-164.1975.

Abstract

The effect of external Na plus concentration on the transport of K plus was studied using K plus-depleted cells of a marine pseudomonad. K plus transport was found to be a saturable process and requires Na plus. The initial rates for K plus transport over a range of external K plus concentrations were measured in suspensions containing various fixed concentrations of Na plus. Reciprocals of the initial rates for K plus transport were plotted against reciprocals of the external concentration of K plus or Na plus to yield two primary Lineweaver-Burk plots. The experimental data were found to fit bisubstrate enzyme kinetics, with a sequential type mechanism. However, the initial rate data did not allow distinction between ordered or random mechanisms. The results suggest that Na plus and K plus form a ternary complex with a specific K plus carrier molecule on the outer surface of the membrane prior to translocation and the release of K plus inside the cell.

摘要

利用海洋假单胞菌的低钾细胞研究了外部钠离子浓度对钾离子转运的影响。发现钾离子转运是一个可饱和的过程,并且需要钠离子。在含有各种固定浓度钠离子的悬浮液中,测量了一系列外部钾离子浓度下钾离子转运的初始速率。将钾离子转运初始速率的倒数与钾离子或钠离子外部浓度的倒数作图,得到两个主要的林-贝氏图。实验数据符合双底物酶动力学,具有顺序型机制。然而,初始速率数据无法区分有序或随机机制。结果表明,钠离子和钾离子在转运和钾离子在细胞内释放之前,会与膜外表面的特定钾离子载体分子形成三元复合物。

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