Elferink M G, Hellingwerf K J, Nano F E, Kaplan S, Konings W N
FEBS Lett. 1983 Nov 28;164(1):185-90. doi: 10.1016/0014-5793(83)80046-5.
Rhodopseudomonas sphaeroides was provided with the ability to transport lactose via conjugation with a strain of Escherichia coli bearing a plasmid containing the lactose operon (including the lac Y gene, coding for the lactose carrier or M protein) and subsequent expression of the lac operon in Rps. sphaeroides (Nano, F.E. and Kaplan, S. submitted). The initial rate of lactose transport in Rps. sphaeroides was studied as a function of the light intensity and the magnitude of the proton-motive force. The results demonstrate that lactose transport is regulated by the rate of cyclic electron transfer in the same way as the endogenous transport systems.
通过与携带含有乳糖操纵子(包括编码乳糖载体或M蛋白的lacY基因)的质粒的大肠杆菌菌株进行接合,球形红假单胞菌获得了转运乳糖的能力,随后乳糖操纵子在球形红假单胞菌中得以表达(纳诺,F.E.和卡普兰,S.已提交)。研究了球形红假单胞菌中乳糖转运的初始速率与光强度和质子动力势大小的关系。结果表明,乳糖转运与内源性转运系统一样,受循环电子传递速率的调控。