Department of Pharmacology, University of Cambridge, Cambridge, United Kingdom.
J Biol Chem. 2012 Aug 10;287(33):27682-90. doi: 10.1074/jbc.M112.372334. Epub 2012 Jun 22.
LmrP is a major facilitator superfamily multidrug transporter from Lactococcus lactis that mediates the efflux of cationic amphiphilic substrates from the cell in a proton-motive force-dependent fashion. Interestingly, motif searches and docking studies suggested the presence of a putative Ca(2+)-binding site close to the interface between the two halves of inward facing LmrP. Binding experiments with radioactive (45)Ca(2+) demonstrated the presence of a high affinity Ca(2+)-binding site in purified LmrP, with an apparent K(d) of 7.2 μm, which is selective for Ca(2+) and Ba(2+) but not for Mn(2+), Mg(2+), or Co(2+). Consistent with our structure model and analogous to crystal structures of EF hand Ca(2+)-binding proteins, two carboxylates (Asp-235 and Glu-327) were found to be critical for (45)Ca(2+) binding. Using (45)Ca(2+) and a fluorescent Ca(2+)-selective probe, calcium transport measurements in intact cells, inside-out membrane vesicles, and proteoliposomes containing functionally reconstituted purified protein provided strong evidence for active efflux of Ca(2+) by LmrP with an apparent K(t) of 8.6 μm via electrogenic exchange with three or more protons. These observations demonstrate for the first time that LmrP mediates selective calcium/proton antiport and raise interesting questions about the functional and physiological links between this reaction and that of multidrug transport.
LmrP 是乳球菌属中的一种主要易化超家族多药转运蛋白,以质子动力势依赖的方式将阳离子两亲性底物从细胞内排出。有趣的是,基序搜索和对接研究表明,在内向构象的 LmrP 两半之间的界面附近存在一个假定的 Ca2+结合位点。放射性(45)Ca2+结合实验表明,在纯化的 LmrP 中存在一个高亲和力的 Ca2+结合位点,表观 Kd 为 7.2 μm,该结合位点对 Ca2+和 Ba2+具有选择性,但对 Mn2+、Mg2+或 Co2+没有选择性。与我们的结构模型一致,类似于 EF 手 Ca2+结合蛋白的晶体结构,发现两个羧酸盐(天冬氨酸 235 和谷氨酸 327)对(45)Ca2+结合至关重要。使用(45)Ca2+和荧光 Ca2+选择性探针,在完整细胞、外翻膜囊泡和含有功能重建的纯化蛋白的蛋白脂质体中进行的钙转运测量,为 LmrP 通过与三个或更多质子的电交换,以 8.6 μm 的表观 Kt 主动排出 Ca2+提供了有力证据。这些观察结果首次表明,LmrP 介导选择性的钙/质子反向转运,并提出了关于该反应与多药转运之间的功能和生理联系的有趣问题。