Fuchs Sebastien, Xiao Hong D, Hubert Christine, Michaud Annie, Campbell Duncan J, Adams Jonathan W, Capecchi Mario R, Corvol Pierre, Bernstein Kenneth E
Department of Pathology and Laboratory Medicine, Emory University School of Medicine, Atlanta, GA, USA.
Hypertension. 2008 Feb;51(2):267-74. doi: 10.1161/HYPERTENSIONAHA.107.097865. Epub 2007 Dec 24.
Angiotensin-converting enzyme (ACE) plays a central role in the production of the vasoconstrictor angiotensin II. ACE is a single polypeptide, but it contains 2 homologous and independent catalytic domains, each of which binds zinc. To understand the in vivo role of these 2 domains, we used gene targeting to create mice with point mutations in the ACE C-domain zinc-binding motif. Such mice, termed ACE13/13, produce a full-length ACE protein with tissue expression identical to wild-type mice. Analysis of ACE13/13 mice showed that they produce ACE having only N-domain catalytic activity, as determined by the hydrolysis of domain specific substrates and by chloride sensitivity. ACE13/13 mice have blood pressure and blood angiotensin II levels similar to wild-type mice. However, plasma renin concentration is increased 2.6-fold and blood angiotensin I levels are increased 7.5-fold. Bradykinin peptide levels are not different from wild-type levels. ACE13/13 mice have a reduced increase of blood pressure after intravenous infusion of angiotensin I. ACE13/13 mice have a normal renal structure, but they are not able to concentrate urine after dehydration as effectively as wild-type mice. This study shows that the C-domain of ACE is the predominant site of angiotensin I cleavage in vivo. Although mice lacking C-domain activity have normal physiology under laboratory conditions, they respond less well to the stress of dehydration.
血管紧张素转换酶(ACE)在血管收缩剂血管紧张素II的产生中起核心作用。ACE是一种单一多肽,但它包含2个同源且独立的催化结构域,每个结构域都结合锌。为了了解这2个结构域在体内的作用,我们利用基因靶向技术创建了在ACE C结构域锌结合基序中存在点突变的小鼠。这种小鼠称为ACE13/13,产生的全长ACE蛋白与野生型小鼠具有相同的组织表达。对ACE13/13小鼠的分析表明,通过结构域特异性底物的水解和氯离子敏感性测定,它们产生的ACE仅具有N结构域催化活性。ACE13/13小鼠的血压和血液血管紧张素II水平与野生型小鼠相似。然而,血浆肾素浓度增加了2.6倍,血液血管紧张素I水平增加了7.5倍。缓激肽肽水平与野生型水平无差异。静脉注射血管紧张素I后,ACE13/13小鼠血压升高幅度降低。ACE13/13小鼠的肾脏结构正常,但脱水后它们浓缩尿液的能力不如野生型小鼠有效。这项研究表明,ACE的C结构域是体内血管紧张素I裂解的主要位点。尽管缺乏C结构域活性的小鼠在实验室条件下生理功能正常,但它们对脱水应激的反应较差。