Frommer W B, Hummel S, Riesmeier J W
Institut für Genbiologische Forschung, Abteilung Willmitzer, Berlin, Federal Republic of Germany.
Proc Natl Acad Sci U S A. 1993 Jul 1;90(13):5944-8. doi: 10.1073/pnas.90.13.5944.
To study amino acid transport in plants at the molecular level, we have isolated an amino acid permease cDNA from Arabidopsis thaliana by complementation of a yeast mutant defective in proline uptake with a cDNA. The predicted polypeptide of 53 kDa is highly hydrophobic with 12 putative membrane-spanning regions and shows no significant homologies to other known transporters. Expression of the cDNA enables the yeast mutant to take up L-[14C]proline. Competition studies argue for a broad but stereospecific substrate recognition by the permease, which resembles neutral or general amino acid transport systems from Chlorella and higher plants. Both pH dependence and inhibition by protonophores are consistent with a proton symport mechanism.
为了在分子水平上研究植物中的氨基酸转运,我们通过用cDNA互补脯氨酸摄取缺陷的酵母突变体,从拟南芥中分离出了一个氨基酸通透酶cDNA。预测的53 kDa多肽具有高度疏水性,有12个推定的跨膜区域,与其他已知转运蛋白没有明显的同源性。该cDNA的表达使酵母突变体能够摄取L-[14C]脯氨酸。竞争研究表明该通透酶具有广泛但立体特异性的底物识别能力,这类似于小球藻和高等植物中的中性或一般氨基酸转运系统。pH依赖性和质子载体抑制均与质子同向转运机制一致。