Döring F, Michel T, Rösel A, Nickolaus M, Daniel H
Institute of Nutritional Sciences, University of Giessen, Germany.
Mol Membr Biol. 1998 Apr-Jun;15(2):79-88. doi: 10.3109/09687689809027522.
It has recently been identified the PEPT2 cDNA encodes the high affinity proton-coupled peptide transporter in rabbit kidney cortex. PEPT2 represents a 729 amino acid protein with 12 putative transmembrane domains that mediates H+/H3O+ dependent electrogenic transmembrane transport of di- and tripeptides and of selected peptidomimetics. Here the functional expression of PEPT2 in the methylotropic yeast Pichia pastoris is described under the control of a methanol inducible promoter. Western blot analysis of Pichia cell membranes prepared from a recombinant clone identified a protein with an apparent molecular mass of about 85-87 kDa. Peptide uptake into cells expressing PEPT2 was up to 80 times higher than in control cells. Cells of recombinant clones showed a saturable peptide transport activity for the hydrolysis resistant dipeptide 3H-D-Phe-Ala with an app. K0.5 of 0.143 +/- 0.016 mM. Inhibition of 3H-D-Phe-Ala uptake by selected di- and tripeptides and beta-lactam antibiotics revealed the same substrate specificity as obtained in renal membrane vesicles or for PEPT2 when expressed in Xenopus laevis oocytes. A novel fluorescence based assay for assessing transport function based on a coumarin-labeled fluorescent peptide analogue has also been developed. Moreover, using a histidyl auxotrophe strain a PEPT2 expressing cell clone in which transport function can be monitored by a simple yeast growth test was established. In conclusion, this is one of only a few reports on successful functional expression of mammalian membrane transport proteins in yeast. The high expression level will provide a simple means for future studies either on the structure-affinity relationship for substrate interaction with PEPT2 or for selection of mutants generated by random mutagenesis.
最近已确定,PEPT2 cDNA编码兔肾皮质中的高亲和力质子偶联肽转运体。PEPT2是一种由729个氨基酸组成的蛋白质,具有12个假定的跨膜结构域,介导二肽、三肽和选定的拟肽的H⁺/H₃O⁺依赖性电致跨膜转运。本文描述了在甲醇诱导型启动子控制下,PEPT2在甲基营养型酵母毕赤酵母中的功能表达。对重组克隆制备的毕赤酵母细胞膜进行蛋白质印迹分析,鉴定出一种表观分子量约为85 - 87 kDa的蛋白质。表达PEPT2的细胞对肽的摄取比对照细胞高80倍。重组克隆的细胞对水解抗性二肽³H-D-苯丙氨酸-丙氨酸表现出可饱和的肽转运活性,其表观K₀.₅为0.143±0.016 mM。选定的二肽、三肽和β-内酰胺抗生素对³H-D-苯丙氨酸-丙氨酸摄取的抑制作用,显示出与在肾膜囊泡中或在非洲爪蟾卵母细胞中表达时的PEPT2相同的底物特异性。还开发了一种基于香豆素标记荧光肽类似物的新型荧光测定法来评估转运功能。此外,利用组氨酸营养缺陷型菌株建立了一个表达PEPT2的细胞克隆,其转运功能可通过简单的酵母生长试验进行监测。总之,这是关于哺乳动物膜转运蛋白在酵母中成功进行功能表达的少数报道之一。高表达水平将为未来研究PEPT2与底物相互作用的结构-亲和力关系或筛选随机诱变产生的突变体提供一种简单的方法。