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Endogenous transport systems in the Xenopus laevis oocyte plasma membrane.

机译:非洲爪蟾卵母细胞质膜中的内源性运输系统。

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摘要

Oocytes of the South African clawed frog Xenopus laevis are widely used as a heterologous expression system for the characterization of transport systems such as passive and active membrane transporters, receptors and a whole plethora of other membrane proteins originally derived from animal or plant tissues. The large size of the oocytes and the high degree of expression of exogenous mRNA or cDNA makes them an optimal tool, when compared with other expression systems such as yeast, Escherichia coli or eukaryotic cell lines, for the expression and functional characterization of membrane proteins. This easy to handle expression system is becoming increasingly attractive for pharmacological research. Commercially available automated systems that microinject mRNA into the oocytes and perform electrophysiological measurements fully automatically allow for a mass screening of new computer designed drugs to target membrane transport proteins. Yet, the oocytes possess a large variety of endogenous membrane transporters and it is absolutely mandatory to distinguish the endogenous transporters from the heterologous, expressed transport systems. Here, we review briefly the endogenous membrane transport systems of the oocytes.
机译:南非爪蛙Xenopus laevis的卵母细胞被广泛用作异源表达系统,用于表征运输系统,例如被动和主动膜转运蛋白,受体以及大量其他最初源自动物或植物组织的膜蛋白。与其他表达系统(例如酵母,大肠杆菌或真核细胞系)相比,卵母细胞的大尺寸和高水平的外源mRNA或cDNA使其成为膜蛋白的表达和功能表征的理想工具。这种易于操作的表达系统对于药理学研究越来越有吸引力。将mRNA微注射到卵母细胞中并完全自动执行电生理测量的可商购获得的自动化系统允许对新的计算机设计药物进行大规模筛选,以靶向膜转运蛋白。然而,卵母细胞具有各种各样的内源性膜转运蛋白,绝对必须将内源性转运蛋白与异源表达的转运系统区分开。在这里,我们简要回顾卵母细胞的内源性膜运输系统。

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