Margheritis Eleonora, Imperiali Francesca Guia, Cinquetti Raffaella, Vollero Alessandra, Terova Genciana, Rimoldi Simona, Girardello Rossana, Bossi Elena
Department of Biotechnology and Life Science, University of Insubria, Via J.H. Dunant 3, 21100, Varese, Italy.
Interuniversity Center "The Protein Factory", Politecnico di Milano, ICRM-CNR Milano and Università dell'Insubria, Via Mancinelli 7, I-20131, Milan, Italy.
Pflugers Arch. 2016 Aug;468(8):1363-74. doi: 10.1007/s00424-016-1842-5. Epub 2016 Jun 2.
Amino acids play an important role in the metabolism of all organisms. Their epithelial re-absorption is due to specific transport proteins, such as B(0)AT1, a Na(+)-coupled neutral amino acid symporter belonging to the solute carrier 6 family. Here, a recently cloned fish orthologue, from the intestine of Salmo salar, was electrophysiologically characterized with the two-electrode voltage clamp technique, in Xenopus laevis oocytes heterologously expressing the transporter. Substrate specificity, apparent affinities and the ionic dependence of the transport mechanism were determined in the presence of specific collectrin. Results demonstrated that like the human, but differently from sea bass (Dicentrarchus labrax) orthologue, salmon B(0)AT1 needs to be associated with partner proteins to be correctly expressed at the oocyte plasma membrane. Cloning of sea bass collectrin and comparison of membrane expression and functionality of the B(0)AT1 orthologue transporters allowed a deeper investigation on the role of their interactions. The parameters acquired by electrophysiological and immunolocalization experiments in the mammalian and fish transporters contributed to highlight the dynamic of relations and impacts on transport function of the ancillary proteins. The comparative characterization of the physiological parameters of amino acid transporters with auxiliary proteins can help the comprehension of the regulatory mechanism of essential nutrient absorption.
氨基酸在所有生物体的新陈代谢中发挥着重要作用。它们的上皮重吸收归因于特定的转运蛋白,如B(0)AT1,这是一种与溶质载体6家族相关的钠偶联中性氨基酸同向转运体。在此,利用双电极电压钳技术,在异源表达该转运体的非洲爪蟾卵母细胞中,对一种最近从大西洋鲑肠道中克隆出的鱼类直系同源物进行了电生理学表征。在存在特定收集蛋白的情况下,确定了转运机制的底物特异性、表观亲和力和离子依赖性。结果表明,与人类相似,但与海鲈(欧洲舌齿鲈)直系同源物不同,鲑鱼B(0)AT1需要与伴侣蛋白结合才能在卵母细胞质膜上正确表达。海鲈收集蛋白的克隆以及B(0)AT1直系同源物转运体的膜表达和功能比较,使得对它们相互作用的作用有了更深入的研究。通过在哺乳动物和鱼类转运体中进行的电生理学和免疫定位实验获得的参数,有助于突出辅助蛋白之间关系的动态变化及其对转运功能的影响。对具有辅助蛋白的氨基酸转运体生理参数的比较表征,有助于理解必需营养物质吸收的调节机制。