Ang II (Angiotensin II) Conversion to Angiotensin-(1-7) in the Circulation Is POP (Prolyloligopeptidase)-Dependent and ACE2 (Angiotensin-Converting Enzyme 2)-Independent

被引:147
|
作者
Serfozo, Peter [1 ,2 ]
Wysocki, Jan [1 ]
Gulua, Gvantca [1 ,2 ]
Schulze, Arndt [1 ,2 ]
Ye, Minghao [1 ]
Liu, Pan [1 ]
Jin, Jing [1 ]
Bader, Michael [2 ,3 ]
Myohanen, Timo [4 ]
Garcia-Horsman, J. Arturo [5 ]
Batlle, Daniel [1 ]
机构
[1] Northwestern Univ, Dept Med, Div Nephrol & Hypertens, Feinberg Sch Med, Chicago, IL 60611 USA
[2] Charite Univ Med Berlin, Berlin, Germany
[3] Max Delbrueck Ctr Mol Med Berlin, Berlin, Germany
[4] Univ Helsinki, Div Pharmacol & Pharmacotherapy, Helsinki, Finland
[5] Univ Helsinki, Regenerat Pharmacol, Helsinki, Finland
关键词
angiotensins; hypertension; renin-angiotensin system; HUMAN PERIPHERAL-TISSUES; CONVERTING-ENZYME; PROLYL ENDOPEPTIDASE; IN-VIVO; OLIGOPEPTIDASE; PROLYLCARBOXYPEPTIDASE; METABOLISM; PEPTIDES; CARBOXYPEPTIDASE; INHIBITOR;
D O I
10.1161/HYPERTENSIONAHA.119.14071
中图分类号
R6 [外科学];
学科分类号
1002 ; 100210 ;
摘要
The Ang II (Angiotensin II)-Angiotensin-(1-7) axis of the Renin Angiotensin System encompasses 3 enzymes that form Angiotensin-(1-7) [Ang-(1-7)] directly from Ang II: ACE2 (angiotensin-converting enzyme 2), PRCP (prolylcarboxypeptidase), and POP (prolyloligopeptidase). We investigated their relative contribution to Ang-(1-7) formation in vivo and also ex vivo in serum, lungs, and kidneys using models of genetic ablation coupled with pharmacological inhibitors. In wild-type (WT) mice, infusion of Ang II resulted in a rapid increase of plasma Ang-(1-7). In ACE2(-/-)/PRCP-/- mice, Ang II infusion resulted in a similar increase in Ang-(1-7) as in WT (563 +/- 48 versus 537 +/- 70 fmol/mL, respectively), showing that the bulk of Ang-(1-7) formation in circulation is essentially independent of ACE2 and PRCP. By contrast, a POP inhibitor, Z-Pro-Prolinal reduced the rise in plasma Ang-(1-7) after infusing Ang II to control WT mice. In POP-/- mice, the increase in Ang-(1-7) was also blunted as compared with WT mice (309 +/- 46 and 472 +/- 28 fmol/mL, respectively P=0.01), and moreover, the rate of recovery from acute Ang II-induced hypertension was delayed (P=0.016). In ex vivo studies, POP inhibition with ZZP reduced Ang-(1-7) formation from Ang II markedly in serum and in lung lysates. By contrast, in kidney lysates, the absence of ACE2, but not POP, obliterated Ang-(1-7) formation from added Ang II. We conclude that POP is the main enzyme responsible for Ang II conversion to Ang-(1-7) in the circulation and in the lungs, whereas Ang-(1-7) formation in the kidney is mainly ACE2-dependent.
引用
收藏
页码:173 / 182
页数:10
相关论文
共 50 条
  • [1] Angiotensin-converting enzyme 2 (ACE2), angiotensin-(1-7) and Mas receptor in gonadal and reproductive functions
    Reis, Fernando M.
    Reis, Adelina M.
    CLINICAL SCIENCE, 2020, 134 (22) : 2929 - 2941
  • [2] ACE and ACE2: their role to balance the expression of angiotensin II and angiotensin-(1-7)
    Chappel, M. C.
    Ferrario, C. M.
    KIDNEY INTERNATIONAL, 2006, 70 (01) : 7 - 9
  • [3] Upregulation of hepatic angiotensin-converting enzyme 2 (ACE2) and angiotensin-(1-7) levels in experimental biliary fibrosis
    Herath, Chandana B.
    Warner, Fiona J.
    Lubel, John S.
    Dean, Rachael G.
    Jia, Zhiyuan
    Lew, Rebecca A.
    Smith, A. Ian
    Burrell, Louise M.
    Angus, Peter W.
    JOURNAL OF HEPATOLOGY, 2007, 47 (03) : 387 - 395
  • [4] ACE2: Angiotensin II/Angiotensin-(1-7) Balance in Cardiac and Renal Injury
    Varagic, Jasmina
    Ahmad, Sarfaraz
    Nagata, Sayaka
    Ferrario, Carlos M.
    CURRENT HYPERTENSION REPORTS, 2014, 16 (03)
  • [5] The In Vivo Effect Of Recombinant ACE2 On Angiotensin II And Angiotensin-(1-7) Levels
    Ye, Minghao
    Wysocki, Jan
    Rodriguez, Eva
    Barrios, Clara
    Schuster, Manfred
    Loibner, Hans
    Penninger, Josef M.
    Ferrario, Carlos M.
    Batlle, Daniel
    HYPERTENSION, 2009, 54 (04) : E112 - E112
  • [6] Expression of ACE2, Soluble ACE2, Angiotensin I, Angiotensin II and Angiotensin-(1-7) Is Modulated in COVID-19 Patients
    Osman, Ikram Omar
    Melenotte, Clea
    Brouqui, Philippe
    Million, Matthieu
    Lagier, Jean-Christophe
    Parola, Philippe
    Stein, Andreas
    La Scola, Bernard
    Meddeb, Line
    Mege, Jean-Louis
    Raoult, Didier
    Devaux, Christian A.
    FRONTIERS IN IMMUNOLOGY, 2021, 12
  • [7] Angiotensin-(1-7)-Angiotensin-Converting Enzyme 2 Attenuates Reactive Oxygen Species Formation to Angiotensin II Within the Cell Nucleus
    Gwathmey, TanYa M.
    Pendergrass, Karl D.
    Reid, Sean D.
    Rose, James C.
    Diz, Debra I.
    Chappell, Mark C.
    HYPERTENSION, 2010, 55 (01) : 166 - 171
  • [8] Angiotensin-converting enzyme 2 and angiotensin-(1-7) - An evolving story in cardiovascular regulation
    Ferrario, CM
    HYPERTENSION, 2006, 47 (03) : 515 - 521
  • [9] THE ACE2/ANGIOTENSIN-(1-7)/MAS AXIS OF THE RENIN-ANGIOTENSIN SYSTEM: FOCUS ON ANGIOTENSIN-(1-7)
    Souza Santos, Robson Augusto
    Sampaio, Walkyria Oliveira
    Alzamora, Andreia C.
    Motta-Santos, Daisy
    Alenina, Natalia
    Bader, Michael
    Campagnole-Santos, Maria Jose
    PHYSIOLOGICAL REVIEWS, 2018, 98 (01) : 505 - 553
  • [10] Possible Role of Angiotensin-Converting Enzyme 2 and Activation of Angiotensin II Type 2 Receptor by Angiotensin-(1-7) in Improvement of Vascular Remodeling by Angiotensin II Type 1 Receptor Blockade
    Ohshima, Kousei
    Mogi, Masaki
    Nakaoka, Hirotomo
    Iwanami, Jun
    Min, Li-Juan
    Kanno, Harumi
    Tsukuda, Kana
    Chisaka, Toshiyuki
    Bai, Hui-Yu
    Wang, Xiao-Li
    Ogimoto, Akiyoshi
    Higaki, Jitsuo
    Horiuchi, Masatsugu
    HYPERTENSION, 2014, 63 (03) : E53 - E59