Franco Peter J, Matzke Elizabeth A, Johnson Jerry L, Wiczer Brian M, Brooker Robert J
Department of Genetics, Cell Biology and Development and the Biotechnology Institute, University of Minnesota, Minneapolis, MN 55455, USA.
J Membr Biol. 2006;211(2):101-13. doi: 10.1007/s00232-005-7020-x. Epub 2006 Sep 18.
Four amino acids critical for lactose permease function were altered using site-directed mutagenesis. The resulting Quad mutant (E269Q/R302L/H322Q/E325Q) was expressed at 60% of wild-type levels but found to have negligible transport activity. The Quad mutant was used as a parental strain to isolate suppressors that regained the ability to ferment the alpha-galactoside melibiose. Six different suppressors were identified involving five discrete amino acid changes and one amino acid deletion (Q60L, V229G, Y236D, S306L, K319N and DeltaI298). All of the suppressors transported alpha-galactosides at substantial rates. In addition, the Q60L, DeltaI298 and K319N suppressors regained a small but detectable amount of lactose transport. Assays of sugar-driven cation transport showed that both the Q60L and K319N suppressors couple the influx of melibiose with cations (H(+) or H(3)O(+)). Taken together, the data show that the cation-binding domain in the lactose permease is not a fixed structure as proposed in previous models. Rather, the data are consistent with a model in which several ionizable residues form a dynamic coupling sensor that also may interact directly with the cation and lactose.
利用定点诱变技术改变了乳糖通透酶功能至关重要的四个氨基酸。由此产生的四重突变体(E269Q/R302L/H322Q/E325Q)的表达水平为野生型的60%,但发现其转运活性可忽略不计。该四重突变体被用作亲本菌株来分离恢复了发酵α-半乳糖苷蜜二糖能力的抑制子。鉴定出六种不同的抑制子,涉及五个离散的氨基酸变化和一个氨基酸缺失(Q60L、V229G、Y236D、S306L、K319N和ΔI298)。所有抑制子都能以相当高的速率转运α-半乳糖苷。此外,Q60L、ΔI298和K319N抑制子恢复了少量但可检测到的乳糖转运能力。糖驱动的阳离子转运测定表明,Q60L和K319N抑制子都能使蜜二糖的流入与阳离子(H(+)或H3O(+))偶联。综上所述,数据表明乳糖通透酶中的阳离子结合结构域并非如先前模型所提出的那样是一个固定结构。相反,这些数据与一个模型一致,即几个可电离残基形成一个动态偶联传感器,该传感器也可能直接与阳离子和乳糖相互作用。