Van der Rest M E, Abee T, Molenaar D, Konings W N
Department of Microbiology, University of Groningen, Haren, The Netherlands.
Eur J Biochem. 1991 Jan 1;195(1):71-7. doi: 10.1111/j.1432-1033.1991.tb15677.x.
The citrate-transport determinant of plasmid pES1 from Klebsiella pneumoniae [Schwarz, E. & Oesterhelt, D. (1985) EMBO J. 4, 1599-1603] has been subcloned in Escherichia coli DH1. Uptake of citrate in E. coli membrane vesicles via this uptake system is an electrogenic process, although the pH gradient is the main driving force for citrate uptake. The rate of citrate uptake, driven by artificially imposed ion-gradients, is high in the presence of an artificial delta pH and low in the presence of an artificial delta psi. Citrate transport does not depend on the presence of Na+ or Mg2+ as has been observed for other citrate-transport systems. Citrate has three pK values: 3.14, 4.77 and 5.40. Citrate forms a stable complex with Mg2+ with a stability constant of 3.2. Kinetic parameters and calculations of the different citrate (Cit) species at a given pH, indicate that the HCit2- is the species transported and that transport occurs in symport with three protons. This citrate-transport system is thus a unique example of a 3H solute symport system.
肺炎克雷伯菌质粒pES1的柠檬酸盐转运决定簇[施瓦茨,E. 和厄斯特黑尔特,D.(1985年)《欧洲分子生物学组织杂志》4,1599 - 1603页]已被亚克隆到大肠杆菌DH1中。通过该摄取系统,大肠杆菌膜囊泡对柠檬酸盐的摄取是一个生电过程,尽管pH梯度是柠檬酸盐摄取的主要驱动力。在人工施加离子梯度的情况下,由人工ΔpH驱动时柠檬酸盐摄取速率高,而由人工Δψ驱动时摄取速率低。与其他柠檬酸盐转运系统不同,柠檬酸盐转运不依赖于Na⁺或Mg²⁺的存在。柠檬酸盐有三个pK值:3.14、4.77和5.40。柠檬酸盐与Mg²⁺形成稳定复合物,稳定常数为3.2。给定pH下不同柠檬酸盐(Cit)物种的动力学参数和计算表明,运输的物种是HCit²⁻,并且运输是与三个质子同向转运发生的。因此,这个柠檬酸盐转运系统是3H溶质同向转运系统的一个独特例子。