Lambert Daniel W, Yarski Mike, Warner Fiona J, Thornhill Paul, Parkin Edward T, Smith A Ian, Hooper Nigel M, Turner Anthony J
Proteolysis Research Group, School of Biochemistry and Microbiology, University of Leeds, Leeds LS2 9JT, United Kingdom.
J Biol Chem. 2005 Aug 26;280(34):30113-9. doi: 10.1074/jbc.M505111200. Epub 2005 Jun 27.
Angiotensin-converting enzyme-2 (ACE2) is a critical regulator of heart function and a cellular receptor for the causative agent of severe-acute respiratory syndrome (SARS), SARS-CoV (coronavirus). ACE2 is a type I transmembrane protein, with an extracellular N-terminal domain containing the active site and a short intracellular C-terminal tail. A soluble form of ACE2, lacking its cytosolic and transmembrane domains, has been shown to block binding of the SARS-CoV spike protein to its receptor. In this study, we examined the ability of ACE2 to undergo proteolytic shedding and investigated the mechanisms responsible for this shedding event. We demonstrated that ACE2, heterologously expressed in HEK293 cells and endogenously expressed in Huh7 cells, undergoes metalloproteinase-mediated, phorbol ester-inducible ectodomain shedding. By using inhibitors with differing potency toward different members of the ADAM (a disintegrin and metalloproteinase) family of proteases, we identified ADAM17 as a candidate mediator of stimulated ACE2 shedding. Furthermore, ablation of ADAM17 expression using specific small interfering RNA duplexes reduced regulated ACE2 shedding, whereas overexpression of ADAM17 significantly increased shedding. Taken together, these data provided direct evidence for the involvement of ADAM17 in the regulated ectodomain shedding of ACE2. The identification of ADAM17 as the protease responsible for ACE2 shedding may provide new insight into the physiological roles of ACE2.
血管紧张素转换酶2(ACE2)是心脏功能的关键调节因子,也是严重急性呼吸综合征(SARS)病原体SARS-CoV(冠状病毒)的细胞受体。ACE2是一种I型跨膜蛋白,其细胞外N端结构域包含活性位点,细胞内C端尾巴较短。一种缺乏胞质和跨膜结构域的可溶性ACE2已被证明可阻断SARS-CoV刺突蛋白与其受体的结合。在本研究中,我们检测了ACE2进行蛋白水解性裂解的能力,并研究了导致这种裂解事件的机制。我们证明,在HEK293细胞中异源表达以及在Huh7细胞中内源性表达的ACE2会经历金属蛋白酶介导的、佛波酯诱导的胞外域裂解。通过使用对ADAM(一种去整合素和金属蛋白酶)家族蛋白酶的不同成员具有不同效力的抑制剂,我们确定ADAM17是刺激ACE2裂解的候选介质。此外,使用特异性小干扰RNA双链体消除ADAM17的表达可减少ACE2的调节性裂解,而ADAM17的过表达则显著增加裂解。综上所述,这些数据为ADAM17参与ACE2的调节性胞外域裂解提供了直接证据。确定ADAM17为负责ACE2裂解的蛋白酶可能为ACE2的生理作用提供新的见解。