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A conserved mechanism for extracellular signaling in eukaryotes and prokaryotes

机译:真核生物和原核生物细胞外信号传导的保守机制

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摘要

Epidermal growth factor receptor (EGFr) is a key mediator of cell communication during animal development and homeostasis. In Drosophila, the signaling event is commonly regulated by the polytopic membrane protein Rhomboid (RHO), which mediates the proteolytic activation of EGFr ligands, allowing the secretion of the active signal. Until very recently, the biochemical function of RHO had remained elusive. It is now believed that Drosophila RHO is the founder member of a previously undescribed family of serine proteases, and that it could be directly responsible for the unusual, intramembranous cleavage of EGFr ligands. Here we show that the function of RHO is conserved in Gram-negative bacteria. AarA, a Providencia stuartii RHO-related protein, is active in Drosophila on the fly EGFr ligands. Vice versa, Drosophila RHO-1 can effectively rescue the bacterium's ability to produce or release the signal that activates density-dependent gene regulation (or quorum sensing). This study provides the first evidence that prokaryotic and eukaryotic RHOs could have a conserved role in cell communication and that their biochemical properties could be more similar than previously anticipated.
机译:表皮生长因子受体(EGFr)是动物发育和体内平衡过程中细胞通讯的关键介质。在果蝇中,信号转导事件通常由多角膜蛋白菱形(RHO)调节,该蛋白介导EGFr配体的蛋白水解活化,从而分泌活性信号。直到最近,RHO的生化功能仍然难以捉摸。现在认为,果蝇RHO是先前未描述的丝氨酸蛋白酶家族的创始成员,并且它可能直接导致EGFr配体的异常,膜内裂解。在这里,我们显示RHO的功能在革兰氏阴性细菌中是保守的。 AarA是一种与斯威特氏菌(Provenncia stuartii)RHO相关的蛋白质,在果蝇中具有动态EGFr配体的活性。反之亦然,果蝇RHO-1可以有效地拯救细菌产生或释放激活依赖密度的基因调节(或群体感应)信号的能力。这项研究提供了第一个证据,即原核和真核RHOs在细胞通讯中可以发挥保守作用,其生化特性可能比以前预期的更相似。

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