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Journal ArticleDOI

Relative affinity of angiotensin peptides and novel ligands at AT1 and AT2 receptors

TLDR
Although AngIV and Ang-(1-7) exhibited only modest affinity at AT2R compared with AngII, these two angiotensin peptides, together with AngIII, had substantial At2R selectivity over AT1R.
Abstract
AT1R (angiotensin type 1 receptor) and AT2R (angiotensin type 2 receptor) are well known to be involved in the complex cardiovascular actions of AngII (angiotensin II) However, shorter peptide fragments of AngII are thought to have biological activity in their own right and elicit effects that oppose those mediated by AngII In the present study, we have used HEK (human embryonic kidney)-293 cells stably transfected with either AT1R or AT2R to perform a systematic analysis of binding affinities of all the major angiotensin peptides Additionally, we tested the novel AT2R agonist Compound 21, as well as the MasR (Mas receptor) agonist and antagonist AVE0991 and A-779 respectively, for their ability to bind to AT1R or AT2R Candesartan, CGP42214 and PD123319 were used as reference compounds Binding studies using 125I-[Sar1Ile8]AngII on the AT1R-transfected HEK-293 cells revealed only AngII, AngIII [angiotensin III; angiotensin-(2-8)] and candesartan to have high affinity for AT1R In the AT2R-transfected HEK-293 cells, competition for 125I-[Sar1Ile8]AngII binding was observed for all ligands except candesartan, AVE0991 and A-779, the latter two compounds having negligible affinity at either AT1R or AT2R The rank order of affinity of ligands at AT2R was CGP42112>AngII≥AngIII>Compound 21≥PD123319≫AngIV [angiotensin IV; angiotensin-(3-8)]>Ang-(1-7) [angiotensin-(1-7)] Of note, although AngIV and Ang-(1-7) exhibited only modest affinity at AT2R compared with AngII, these two angiotensin peptides, together with AngIII, had substantial AT2R selectivity over AT1R Collectively, our results suggest that shorter angiotensin peptides can act as endogenous ligands at AT2R

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Journal ArticleDOI

Hypertension Renin–Angiotensin–Aldosterone System Alterations

TL;DR: Animal studies support the existence of protective aminopeptidase A-Ang III-Ang II type 2 receptor and ACE2-Ang-(1 to 7)-Mas receptor arms, paving the way for multiple new treatment options for resistant hypertension.
Journal ArticleDOI

Counter-regulatory renin-angiotensin system in cardiovascular disease

TL;DR: The latest insights are provided into the complexity and interplay of the components of the non-canonical renin–angiotensin system, and the function and therapeutic potential of targeting this system to treat cardiovascular disease.
Journal ArticleDOI

Angiotensin-converting enzyme 2 and angiotensin 1–7: novel therapeutic targets

TL;DR: The ACE2-mediated catabolism of angiotensin II is likely to have a major role in cardiovascular protection, whereas the relevant functions and signalling mechanisms of actions induced by ang Elliotensin 1–7 have not been conclusively determined.
Journal ArticleDOI

Pulmonary Angiotensin-Converting Enzyme 2 (ACE2) and Inflammatory Lung Disease.

TL;DR: Current literature findings and progress made in uncovering the role of ACE2 in inflammatory lung disease are summarized to focus on recent studies examining pulmonary ACE2 biology, its roles ininflammatory lung disease pathogenesis and possible underlying mechanisms.
References
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Journal ArticleDOI

A Novel Angiotensin-Converting Enzyme–Related Carboxypeptidase (ACE2) Converts Angiotensin I to Angiotensin 1-9

TL;DR: The organ- and cell-specific expression of ACE2 and its unique cleavage of key vasoactive peptides suggest an essential role for ACE2 in the local renin-angiotensin system of the heart and kidney.
Journal Article

International Union of Pharmacology. XXIII. The Angiotensin II Receptors

TL;DR: Although AT(1) receptors mediate most of the known actions of Ang II, the AT(2) receptor contributes to the regulation of blood pressure and renal function and the development of specific nonpeptide receptor antagonists has led to major advances in the physiology, pharmacology, and therapy of the renin-angiotensin system.
Journal ArticleDOI

A Human Homolog of Angiotensin-converting Enzyme CLONING AND FUNCTIONAL EXPRESSION AS A CAPTOPRIL-INSENSITIVE CARBOXYPEPTIDASE

TL;DR: A novel human zinc metalloprotease that has considerable homology to human angiotensin-converting enzyme (ACE) (40% identity and 61% similarity) has been identified.
Journal ArticleDOI

Preliminary biochemical characterization of two angiotensin II receptor subtypes.

TL;DR: There is a good correlation between the affinities of the selected agonists and antagonists for the two subtypes in the various tissues tested which is a usual requirement for receptor classification.
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