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ACS Bio & Med Chem Au|October 20, 2025
Ciprofloxacin Inhibits Angiotensin I‑Converting Enzyme (ACE) Activity by Binding at the Exosite, Distal to the Catalytic PocketKyle S Gregory, Vinasha Ramasamy, Edward D Sturrock, et al.
Journal of Medicinal Chemistry|April 28, 2020
Molecular Basis for Omapatrilat and Sampatrilat Binding to Neprilysin-Implications for Dual Inhibitor Design with Angiotensin-Converting EnzymeUrvashi Sharma, Gyles E Cozier, Edward D Sturrock, et al.
The FEBS Journal|October 17, 2020
Angiotensin-converting enzyme open for business: structural insights into the subdomain dynamicsGyles E Cozier, Lizelle Lubbe, Edward D Sturrock, et al.
International Journal of Molecular Sciences|July 13, 2024
Proteomic Analysis of Human Macrophages Overexpressing Angiotensin-Converting EnzymeDelia Oosthuizen, Tariq A Ganief, Kenneth E Bernstein, et al.
Biological Chemistry|September 11, 2014
Angiotensin-I converting enzyme (ACE): structure, biological roles, and molecular basis for chloride ion dependenceGeoffrey Masuyer, Christopher J Yates, Edward D Sturrock, et al.
Biological Chemistry|August 21, 2008
The role of glycosylation and domain interactions in the thermal stability of human angiotensin-converting enzymeHester G O'Neill, Pierre Redelinghuys, Sylva L U Schwager, et al.
Journal of the Renin-Angiotensin-Aldosterone System : JRAAS|March 12, 2015
Pharmacodynamic effects of C-domain-specific ACE inhibitors on the renin-angiotensin system in myocardial infarcted ratsSarah Sharp, Marko Poglitsch, Peter Zilla, et al.
Nature|January 24, 2003
Crystal structure of the human angiotensin-converting enzyme-lisinopril complexRamanathan Natesh, Sylva L U Schwager, Edward D Sturrock, et al.
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