Key result
Genetic deletion or pharmacological inhibition of angiotensinogen has demonstrated experimental benefits across a spectrum of cardiovascular and metabolic diseases.
Why the study?
Angiotensinogen is the precursor for all renin-angiotensin system peptides but has received relatively scant attention, with increased study needed on its structure-function relationship and therapeutic targeting.
This review highlights the emerging therapeutic potential of targeting angiotensinogen synthesis for the treatment of cardiovascular and metabolic diseases.
AGT-targeted therapies may enter trials soon; leaves open roles of its conserved serpin domains.
AGT (angiotensinogen) is the unique precursor for the generation of all the peptides of the renin-angiotensin system, but it has received relatively scant attention compared to many other renin-angiotensin system components. Focus on AGT has increased recently, particularly with the evolution of drugs to target the synthesis of the protein. AGT is a noninhibitory serpin that has several conserved domains in addition to the angiotensin II sequences at the N terminus. Increased study is needed on the structure-function relationship to resolve many unknowns regarding AGT metabolism. Constitutive whole-body genetic deletion of Agt in mice leads to multiple developmental defects creating a challenge to use these mice for mechanistic studies. This has been overcome by creating Agt -floxed mice to enable the development of cell-specific deficiencies that have provided considerable insight into a range of cardiovascular and associated diseases. This has been augmented by the recent development of pharmacological approaches targeting hepatocytes in humans to promote protracted inhibition of AGT synthesis. Genetic deletion or pharmacological inhibition of Agt has been demonstrated to be beneficial in a spectrum of diseases experimentally, including hypertension, atherosclerosis, aortic and superior mesenteric artery aneurysms, myocardial dysfunction, and hepatic steatosis. This review summarizes the findings of recent studies utilizing AGT manipulation as a therapeutic approach.
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Daugherty et al. (2024) conducted a review in Cardiovascular and metabolic diseases. Angiotensinogen (AGT) manipulation was evaluated. Genetic deletion or pharmacological inhibition of angiotensinogen has demonstrated experimental benefits across a spectrum of cardiovascular and metabolic diseases.
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