Meredith David
Department of Human Anatomy and Genetics, University of Oxford, South Parks Road, Oxford OX1 3QX, United Kingdom.
J Biol Chem. 2004 Apr 16;279(16):15795-8. doi: 10.1074/jbc.M313922200. Epub 2004 Jan 10.
A conserved positive residue in the seventh transmembrane domain of the mammalian proton-coupled di- and tripeptide transporter PepT1 has been shown by site-directed mutagenesis to be a key residue for protein function. Substitution of arginine 282 with a glutamate residue (R282E-PepT1) gave a protein at the plasma membrane of Xenopus laevis oocytes that was able to transport the non-hydrolyzable dipeptide [3H]d-Phe-l-Gln, although unlike the wild type, the rate of transport by R282E-PepT1 was independent of the extracellular pH level, and the substrate could not be accumulated above equilibrium. The binding affinity of the mutant transport protein was unchanged from the wild type. Thus, R282E-Pept1 appears to have been changed from a proton-driven to a facilitated transporter for peptides. In addition, peptide transport by R282E-PepT1 still induced depolarization as measured by microelectrode recordings of membrane potential. A more detailed study by two-electrode voltage clamping revealed that R282E-PepT1 behaved as a peptide-gated non-selective cation channel with the ion selectivity series lithium > sodium > N-methyl-d-glucamine at pH 7.4. There was also a proton conductance (comparing pH 7.4 and 8.4), and at pH 5.5 the predominant conductance was for potassium ions. Therefore, it can be concluded that changing arginine 282 to a glutamate not only uncouples the cotransport of protons and peptides of the wild-type PepT1 but also creates a peptide-gated cation channel in the protein.
通过定点诱变已表明,哺乳动物质子偶联二肽和三肽转运蛋白PepT1的第七个跨膜结构域中的一个保守正性残基是蛋白质功能的关键残基。用谷氨酸残基取代精氨酸282(R282E-PepT1)后,非洲爪蟾卵母细胞质膜上产生了一种蛋白质,它能够转运不可水解的二肽[3H]d-Phe-l-Gln,不过与野生型不同的是,R282E-PepT1的转运速率与细胞外pH水平无关,且底物无法在平衡状态以上积累。突变转运蛋白的结合亲和力与野生型没有变化。因此,R282E-Pept1似乎已从质子驱动型肽转运体转变为易化型肽转运体。此外,如通过膜电位微电极记录所测,R282E-PepT1介导的肽转运仍会诱导去极化。通过双电极电压钳进行的更详细研究表明,在pH 7.4时,R282E-PepT1表现为肽门控非选择性阳离子通道,离子选择性顺序为锂>钠>N-甲基-D-葡糖胺。同时还存在质子电导(比较pH 7.4和8.4时),在pH 5.5时,主要电导是针对钾离子的。因此,可以得出结论,将精氨酸282变为谷氨酸不仅使野生型PepT1的质子与肽的协同转运解偶联,还在该蛋白质中形成了一个肽门控阳离子通道。