首页> 美国卫生研究院文献>Biochemical Journal >Expression in mammalian cell cultures reveals interdependent but distinct functions for Star and Rhomboid proteins in the processing of the Drosophila transforming-growth-factor-alpha homologue Spitz.
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Expression in mammalian cell cultures reveals interdependent but distinct functions for Star and Rhomboid proteins in the processing of the Drosophila transforming-growth-factor-alpha homologue Spitz.

机译:在哺乳动物细胞培养物中的表达揭示了在果蝇转化生长因子-α同源物斯皮茨的加工过程中星形和菱形蛋白具有相互依赖的但截然不同的功能。

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摘要

We report here distinct interdependent functions for two proteins, Star and Rhomboid, that are key determinants of the epidermal-growth-factor (EGF)-receptor signalling pathway in Drosophila. When we expressed the Drosophila EGF-receptor ligand Spitz in mammalian cells, the protein failed to traffic to the plasma membrane, as assessed by either cell-surface protein biotinylation or immunocytochemical staining. However, when we co-expressed Star with Spitz, trafficking of Spitz to the cell surface could be demonstrated. Only when we co-expressed Spitz, Star and Rhomboid could the release of soluble Spitz protein into the medium be shown. Taken together, our results indicate that Star is required for the intracellular trafficking of Spitz, and that Rhomboid is essential for the release of soluble Spitz protein from cells.
机译:我们在这里报告两个蛋白质,星形和菱形,这是决定性果蝇中表皮生长因子(EGF)-受体信号通路的关键决定因素的独特的相互依存功能。当我们在哺乳动物细胞中表达果蝇EGF受体配体Spitz时,通过细胞表面蛋白生物素化或免疫细胞化学染色评估,该蛋白未能运输至质膜。但是,当我们与Spitz共表达Star时,可以证明Spitz向细胞表面的转运。只有当我们共表达Spitz,Star和Rhomboid时,才能显示可溶性Spitz蛋白向培养基中的释放。两者合计,我们的结果表明,星形细胞是Spitz细胞内运输所必需的,而菱形对于从细胞释放可溶性Spitz蛋白是必不可少的。

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