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Transport of citrate catalyzed by the sodium-dependent citrate carrier of Klebsiella pneumoniae is obligatorily coupled to the transport of two sodium ions

机译:肺炎克雷伯菌的依赖钠的柠檬酸盐载体催化的柠檬酸盐的运输必须与两个钠离子的运输偶联

摘要

Aerobically grown Escherichia coli GM48 harboring plasmid pKScitS that codes for the sodium-dependent citrate carrier from Klebsiella pneumoniae (CitS) allows initial-rate measurements of citrate uptake in whole cells. The cation stoichiometry and selectivity of CitS was studied using this experimental system. The relationship between the initial rate of uptake of citrate and the Na+ concentration was sigmoidal at pH values between 5 and 7 suggesting a Na+ stoichiometry higher than 1. Rates of uptake increased quadratically in a range of non-saturating Na+ concentrations showing that two Na+ are translocated/catalytic cycle. Symport of Na+ is absolutely required in the range pH 5-7 because no uptake could be detected in the absence of Na+. Protons cannot replace Na+ in the translocation step but the decrease in apparent affinity for Na+ towards lower pH suggests that protons can compete with Na+ for the cation-binding sites. Li+ can replace Na+ in the symport reaction but it takes about a 200-fold higher concentration of Li+ over Na+ to achieve the same rate of uptake, showing that the affinity of CitS for Li+ is much lower than for Na+. Though high Li+ concentrations have an inhibitory effect on citrate uptake, the data suggest that the Li+ stoichiometry is also 2.
机译:带有质粒pKScitS的需氧生长大肠杆菌GM48编码来自肺炎克雷伯菌(CitS)的钠依赖性柠檬酸盐载体,可对整个细胞中柠檬酸盐的摄取进行初始速率测量。使用该实验系统研究了CitS的阳离子化学计量和选择性。在5到7之间的pH值下,柠檬酸盐的初始摄取速率与Na +浓度之间的关系呈S型,表明Na +化学计量比1高。在一系列非饱和Na +浓度下,摄取速率呈二次方增加,表明两个Na +为易位/催化循环。在pH 5-7范围内绝对需要Na +共混,因为在没有Na +的情况下无法检测到摄取。质子不能在易位步骤中替代Na +,但是对Na +的表观亲和力在较低的pH值下的降低表明质子可以与Na +竞争阳离子结合位点。 Li +可以在共迁移反应中替代Na +,但要达到相同的吸收速率,其Li +的浓度要比Na +高200倍,这表明CitS对Li +的亲和力远低于Na +。尽管高浓度的Li +对柠檬酸盐的摄取有抑制作用,但数据表明Li +的化学计量比也为2。

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