Panitsas Konstantinos-E, Boyd C A R, Meredith David
Department of Human Anatomy and Genetics, University of Oxford, South Parks Road, OX1 3QX, Oxford, UK.
Pflugers Arch. 2006 Apr;452(1):53-63. doi: 10.1007/s00424-005-0002-0. Epub 2006 Feb 8.
To test whether the rabbit proton-coupled peptide transporter PepT1 is a multimer, we have employed a combination of transport assays, luminometry and site-directed mutagenesis. A functional epitope-tagged PepT1 construct (PepT1-FLAG) was co-expressed in Xenopus laevis oocytes with a non-functional but normally trafficked mutant form of the same transporter (W294F-PepT1). The amount of PepT1-FLAG cRNA injected into the oocytes was kept constant, while the amount of W294F-PepT1 cRNA was increased over the mole fraction range of 0 to 1. The uptake of [(3)H]-D: -Phe-L: -Gln into the oocytes was measured at pH(out) 5.5, and the surface expression of PepT1-FLAG was quantified by luminometry. As the mole fraction of injected W294F-PepT1 increased, the uptake of D: -Phe-L: -Gln decreased. This occurred despite the surface expression of PepT1-FLAG remaining constant, and so we can conclude that PepT1 must be a multimer. Assuming that PepT1 acts as a homomultimer, the best fit for the modelling suggests that PepT1 could be a tetramer, with a minimum requirement of two functional subunits in each protein complex. Western blotting also showed the presence of higher-order complexes of PepT1-FLAG in oocyte membranes. It should be noted that we cannot formally exclude the possibility that PepT1 interacts with unidentified Xenopus protein(s). The finding that PepT1 is a multimer has important implications for the molecular modelling of this protein.
为了检测兔质子偶联肽转运体PepT1是否为多聚体,我们采用了转运分析、发光测定法和定点诱变相结合的方法。将一个带有功能性表位标签的PepT1构建体(PepT1-FLAG)与同一转运体的无功能但正常转运的突变形式(W294F-PepT1)在非洲爪蟾卵母细胞中共表达。注入卵母细胞的PepT1-FLAG cRNA量保持恒定,而W294F-PepT1 cRNA量在0至1的摩尔分数范围内增加。在细胞外pH值为5.5的条件下测量卵母细胞对[³H]-D-苯丙氨酸-L-谷氨酰胺的摄取,并通过发光测定法定量PepT1-FLAG的表面表达。随着注入的W294F-PepT1摩尔分数增加,D-苯丙氨酸-L-谷氨酰胺的摄取减少。尽管PepT1-FLAG的表面表达保持恒定,但仍出现这种情况,因此我们可以得出结论,PepT1一定是多聚体。假设PepT1作为同型多聚体起作用,建模的最佳拟合表明PepT1可能是四聚体,每个蛋白质复合物中至少需要两个功能亚基。蛋白质免疫印迹法也显示在卵母细胞膜中存在PepT1-FLAG的高阶复合物。应该注意的是,我们不能完全排除PepT1与未鉴定的非洲爪蟾蛋白相互作用的可能性。PepT1是多聚体这一发现对该蛋白质的分子建模具有重要意义。