Foucaud C, Poolman B
Department of Microbiology, University of Groningen, Haren, The Netherlands.
J Biol Chem. 1992 Nov 5;267(31):22087-94.
The kinetic mechanism of the lactose transport system of Streptococcus thermophilus was studied in membrane vesicles fused with cytochrome c oxidase containing liposomes and in proteoliposomes in which cytochrome c oxidase was coreconstituted with the lactose transport protein. Selective manipulation of the components of the proton (and sodium) motive force indicated that both a membrane potential and a pH gradient could drive transport. The galactoside/proton stoichiometry was close to unity. Experiments which discriminate between the effects of internal pH and delta pH as driving force on galactoside/proton symport showed that the carrier is highly activated at alkaline internal pH values, which biases the transport system kinetically toward the pH component of the proton motive force. Galactoside efflux increased with increasing pH with a pKa of about 8, whereas galactoside exchange (and counterflow) exhibited a pH optimum around 7 with pKa values of 6 and 8, respectively. Imposition of delta pH (interior alkaline) retarded the rate of efflux at any pH value tested, whereas the rate of exchange was stimulated by an imposed delta pH at pH 5.8, not affected at pH 7.0, and inhibited at pH 8.0 and 9.0. The results have been evaluated in terms of random and ordered association/dissociation of galactoside and proton on the inner surface of the membrane. Imposition of delta psi (interior negative) decreased the rate of efflux but had no effect on the rate of exchange, indicating that the unloaded transport protein carries a net negative charge and that during exchange and counterflow the carrier recycles in the protonated form.
在与含细胞色素c氧化酶的脂质体融合的膜囊泡以及细胞色素c氧化酶与乳糖转运蛋白共重组的蛋白脂质体中,研究了嗜热链球菌乳糖转运系统的动力学机制。对质子(和钠离子)动力势各组分的选择性操控表明,膜电位和pH梯度均可驱动转运。半乳糖苷/质子化学计量比接近1。区分内部pH和ΔpH作为半乳糖苷/质子同向转运驱动力的实验表明,载体在碱性内部pH值下高度活化,这在动力学上使转运系统向质子动力势的pH组分倾斜。半乳糖苷外流随pH升高而增加,pKa约为8,而半乳糖苷交换(和逆向流动)的pH最佳值约为7,pKa值分别为6和8。施加ΔpH(内部碱性)会在任何测试的pH值下延迟外流速率,而在pH 5.8时施加的ΔpH会刺激交换速率,在pH 7.0时无影响,在pH 8.0和9.0时受到抑制。已根据半乳糖苷和质子在膜内表面上的随机和有序缔合/解离对结果进行了评估。施加Δψ(内部负)会降低外流速率,但对交换速率无影响,表明空载的转运蛋白带有净负电荷,并且在交换和逆向流动过程中载体以质子化形式循环。