Chlorides

angiotensin I converting enzyme ; Homo sapiens







46 Article(s)
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1 35113855 Genetically proxied therapeutic inhibition of antihypertensive drug targets and risk of common cancers: A mendelian randomization analysis. 2022 Feb 1
2 27184002 QM/MM investigation of the catalytic mechanism of angiotensin-converting enzyme. 2016 Jun 2
3 24297181 Molecular and thermodynamic mechanisms of the chloride-dependent human angiotensin-I-converting enzyme (ACE). 2014 Jan 17 13
4 25205727 Angiotensin-I converting enzyme (ACE): structure, biological roles, and molecular basis for chloride ion dependence. 2014 Oct 5
5 23672666 Catalytic mechanism of angiotensin-converting enzyme and effects of the chloride ion. 2013 Jun 6 2
6 21366335 Chloride regulation of enzyme turnover: application to the role of chloride in photosystem II. 2011 Apr 12 7
7 22174750 A crucial role in fertility for the oyster angiotensin-converting enzyme orthologue CgACE. 2011 1
8 18713002 The role of glycosylation and domain interactions in the thermal stability of human angiotensin-converting enzyme. 2008 Sep 1
9 19021774 Residues affecting the chloride regulation and substrate selectivity of the angiotensin-converting enzymes (ACE and ACE2) identified by site-directed mutagenesis. 2008 Dec 7
10 17597310 Characterization of the first angiotensin-converting like enzyme in bacteria: Ancestor ACE is already active. 2007 Sep 1 1
11 16330143 Procyanidin structure defines the extent and specificity of angiotensin I converting enzyme inhibition. 2006 Mar-Apr 2
12 17042482 Structure of testis ACE glycosylation mutants and evidence for conserved domain movement. 2006 Oct 24 1
13 16008552 Identification of critical active-site residues in angiotensin-converting enzyme-2 (ACE2) by site-directed mutagenesis. 2005 Jul 1
14 15175004 Characterization of the first non-insect invertebrate functional angiotensin-converting enzyme (ACE): leech TtACE resembles the N-domain of mammalian ACE. 2004 Sep 1 1
15 15236580 Structural details on the binding of antihypertensive drugs captopril and enalaprilat to human testicular angiotensin I-converting enzyme. 2004 Jul 13 1
16 12914653 Angiotensin-I-converting enzyme and its relatives. 2003 2
17 14609329 Angiotensin-converting enzyme-2 (ACE2): comparative modeling of the active site, specificity requirements, and chloride dependence. 2003 Nov 18 3
18 10913258 Peptidase specificity characterization of C- and N-terminal catalytic sites of angiotensin I-converting enzyme. 2000 Jul 25 1
19 12903404 [Immobilization and properties of angiotensin converting enzyme]. 2000 Dec 1
20 10536878 Mixed-type inhibition of pulmonary angiotensin I-converting enzyme by captopril, enalaprilat and ramiprilat. 1999 1
21 9534323 [The influence of ACE inhibitors on urinary electrolyte secretion and the response to transitory hypovolemia in chronic heart failure]. 1997 Dec 1
22 8761461 Drosophila melanogaster angiotensin I-converting enzyme expressed in Pichia pastoris resembles the C domain of the mammalian homologue and does not require glycosylation for secretion and enzymic activity. 1996 Aug 15 1
23 8968386 Single-domain angiotensin I converting enzyme (kininase II): characterization and properties. 1996 Dec 1
24 7596197 Tissue angiotensin I-converting enzyme activity in aging hamsters with and without cardiomyopathy. 1995 Mar 1 1
25 7881824 Physiochemical and immunological comparisons between angiotensin I-converting enzymes purified from different mammalian species. 1994 Dec 1
26 7904922 Effect of chloride and diamide on serum angiotensin I-converting enzyme activity from eight mammalian species. 1993 Oct 3
27 8396158 Influence of lisinopril on urinary electrolytes excretion after furosemide in healthy subjects. 1993 Jul 1
28 1339589 [Angiotensin converting enzyme (kininase II). Molecular and physiological aspects]. 1992 1
29 1851160 The two homologous domains of human angiotensin I-converting enzyme are both catalytically active. 1991 May 15 1
30 2551273 Evidence for a single active site in the human angiotensin I-converting enzyme from inhibitor binding studies with [3H] RU 44 403: role of chloride. 1989 Sep 15 1
31 2558510 Purification of angiotensin-converting enzyme from human intestine. 1989 1
32 2846041 Catalysis of angiotensin I hydrolysis by human angiotensin-converting enzyme: effect of chloride and pH. 1988 Jul 26 3
33 2887350 Characterization of angiotensin I-converting enzyme activity in the freshwater turtle, Amyda japonica. 1987 1
34 3038088 Inactivation of angiotensin converting enzyme by sodium nitroprusside. 1987 Jun 30 1
35 3038387 Biochemical characterization of angiotensin-converting enzyme in human neuroblastoma tissue. 1987 1
36 3041080 Familial hyper-angiotensin converting enzyme (ACE)-emia: increased production of ACE by monocyte-macrophage. 1987 May 1
37 2438487 The catalytic mechanism of angiotensin converting enzyme and related zinc enzymes. 1986 3
38 3014244 Demonstration and characterization of angiotensin-converting enzyme in human pituitary tissue. 1986 Jun 23 1
39 2984255 Increased angiotensin-converting enzyme in peripheral blood monocytes from patients with sarcoidosis. 1985 Mar 1
40 2989970 Familial elevation of serum angiotensin converting enzyme. 1985 Apr 1
41 6095894 Inhibition of angiotensin converting enzyme: dependence on chloride. 1984 Oct 23 3
42 6317019 Critical lysine residue at the chloride binding site of angiotensin converting enzyme. 1983 Nov 8 1
43 6320729 Role of chloride ion as an allosteric activator of angiotensin-converting enzyme. 1983 Dec 2
44 6258828 Increased urine angiotensin I converting enzyme activity in patients with upper urinary tract infection. 1981 Jan 22 1
45 6963 Markedly elevated angiotensin converting enzyme in lymph nodes containing non-necrotizing granulomas in sarcoidosis. 1976 Jun 1
46 181981 A sensitive fluorimetric assay for serum angiotensin-converting enzyme. 1976 Aug 1