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Drosophila melanogaster NEP2 is a new soluble member of the neprilysin family of endopeptidases with implications for reproduction and renal function

机译:果蝇黑腹果蝇NEP2是内肽酶neprilysin家族的新可溶性成员对生殖和肾功能有影响

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摘要

The mammalian neprilysin (NEP) family members are typically type II membrane endopeptidases responsible for the activation/inactivation of neuropeptides and peptide hormones. Differences in substrate specificity and subcellular localization of the seven mammalian NEPs contribute to their functional diversity. The sequencing of the Drosophila melanogaster genome has revealed a large expansion of this gene family, resulting in over 20 fly NEP-like genes, suggesting even greater diversity in structure and function than seen in mammals. We now report that one of these genes (Nep2) codes for a secreted endopeptidase with a highly restricted pattern of expression. D. melanogaster NEP2 is expressed in the specialized stellate cells of the renal tubules and in the cyst cells that surround the elongating spermatid bundles in adult testis, suggesting roles for the peptidase in renal function and in spermatogenesis. D. melanogaster NEP2 was found in vesicle-like structures in the syncytial cytoplasm of the spermatid bundles, suggesting that the protein was acquired by endocytosis of protein secreted from the cyst cells. Expression of NEP2 cDNA in D. melanogaster S2 cells confirmed that the peptidase is secreted and is only weakly inhibited by thiorphan, a potent inhibitor of human NEP. D. melanogaster NEP2 also differs from human NEP in the manner in which the peptidase cleaves the tachykinin, GPSGFYGVR-amide. Molecular modelling suggests that there are important structural differences between D. melanogaster NEP2 and human NEP in the S1′ and S2′ ligand-binding subsites, which might explain the observed differences in inhibitor and substrate specificities. A soluble isoform of a mouse NEP-like peptidase is strongly expressed in spermatids, suggesting an evolutionarily conserved role for a soluble endopeptidase in spermatogenesis.
机译:哺乳动物脑啡肽酶(NEP)家族成员通常是负责激活/灭活神经肽和肽激素的II型膜内肽酶。七个哺乳动物NEP的底物特异性和亚细胞定位的差异有助于其功能多样性。果蝇果蝇基因组的测序揭示了该基因家族的大扩展,产生了超过20个类似于NEP的果蝇基因,表明其结构和功能的多样性甚至比哺乳动物更大。现在我们报告这些基因之一(Nep2)编码具有高度受限的表达模式的分泌的内肽酶。 D. melanogaster NEP2在成年睾丸的肾小管的特殊星状细胞和围绕精子束伸长的囊肿细胞中表达,提示肽酶在肾功能和精子发生中的作用。 D. melanogaster NEP2在精子束的合胞体细胞质中的小泡状结构中发现,表明该蛋白是通过胞吞从囊状细胞分泌的蛋白而获得的。 NEP2 cDNA在黑腹果蝇S2细胞中的表达证实了该肽酶是分泌的,并且仅被硫氰酸盐(一种有效的人NEP抑制剂)抑制。 D. melanogaster NEP2与人NEP的区别还在于肽酶切割速激肽GPSGFYGVR-酰胺的方式。分子建模表明,黑腹果蝇NEP2和人NEP在S1'和S2'配体结合亚位点之间存在重要的结构差异,这可能解释了观察到的抑制剂和底物特异性差异。小鼠NEP样肽酶的可溶性同工型在精子细胞中强烈表达,表明可溶性内肽酶在精子发生中的进化保守作用。

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