Turner A J, Isaac R E, Coates D
School of Biochemistry and Molecular Biology, University of Leeds, Leeds, UK.
Bioessays. 2001 Mar;23(3):261-9. doi: 10.1002/1521-1878(200103)23:3<261::AID-BIES1036>3.0.CO;2-K.
Neprilysin (NEP), a thermolysin-like zinc metalloendopeptidase, plays an important role in turning off peptide signalling events at the cell surface. It is involved in the metabolism of a number of regulatory peptides of the mammalian nervous, cardiovascular, inflammatory and immune systems. Examples include enkephalins, tachykinins, natriuretic and chemotactic peptides. NEP is an integral plasma membrane ectopeptidase of the M13 family of zinc peptidases. Other related mammalian NEP-like enzymes include the endothelin-converting enzymes (ECE-1 and ECE-2), KELL and PEX. A number of novel mammalian homologues of NEP have also recently been described. NEP family members are potential therapeutic targets, for example in cardiovascular and inflammatory disorders, and potent and selective inhibitors such as phosphoramidon have contributed to understanding enzyme function. Inhibitor design should be facilitated by the recent three-dimensional structural solution of the NEP-phosphoramidon complex. For several of the family members, however, a well-defined physiological function or substrate is lacking. Knowledge of the complete genomes of Caenorhabditis elegans and Drosophila melanogaster allows the full complement of NEP-like activities to be analysed in a single organism. These model organisms also provide convenient systems for examining cell-specific expression, developmental and functional roles of this peptidase family, and reveal the power of functional genomics.
中性肽链内切酶(NEP)是一种与嗜热菌蛋白酶类似的锌金属内肽酶,在终止细胞表面的肽信号传导事件中发挥重要作用。它参与哺乳动物神经、心血管、炎症和免疫系统中多种调节肽的代谢。例子包括脑啡肽、速激肽、利钠肽和趋化肽。NEP是锌肽酶M13家族的一种完整的质膜外肽酶。其他相关的哺乳动物NEP样酶包括内皮素转化酶(ECE - 1和ECE - 2)、KELL和PEX。最近也描述了一些新的哺乳动物NEP同源物。NEP家族成员是潜在的治疗靶点,例如在心血管和炎症性疾病中,像磷酰胺素这样的强效和选择性抑制剂有助于了解酶的功能。NEP - 磷酰胺素复合物最近的三维结构解析应有助于抑制剂的设计。然而,对于一些家族成员来说,缺乏明确的生理功能或底物。秀丽隐杆线虫和黑腹果蝇完整基因组的知识使得能够在单一生物体中分析NEP样活性的完整补充。这些模式生物还为研究该肽酶家族的细胞特异性表达、发育和功能作用提供了便利的系统,并揭示了功能基因组学的力量。