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July 1, 2000Journal of Clinical Investigation202 citationsOpen Access

Divergent functions of angiotensin II receptor isoforms in the brain

RDRobin L. DavissonMOMichael I. OliverioTCThomas M. Coffman

Structured PICO

P
Population
Conscious mice with gene targeting for AT(1A) and AT(1B) receptors
I
Intervention
Centrally administered angiotensin II
O
Outcome
Blood pressure increase and drinking responsesurrogate

This study demonstrates for the first time a primary and nonredundant physiological function for AT(1B) receptors in mediating the drinking response to central angiotensin II, distinct from the AT(1A) receptor's role in blood pressure regulation.

Abstract

The renin-angiotensin system (RAS) plays a critical role in cardiovascular and fluid homeostasis. The major biologically active peptide of the RAS is angiotensin II, which acts through G protein-coupled receptors of two pharmacological classes, AT(1) and AT(2). AT(1) receptors, expressed in brain and peripheral tissues, mediate most classically recognized actions of the RAS, including blood pressure homeostasis and regulation of drinking and water balance. In rodents, two highly homologous AT(1) receptor isoforms, termed AT(1A) and AT(1B) receptors, are expressed at different levels in major forebrain cardiovascular and fluid regulatory centers, with AT(1A) expression generally exceeding AT(1B) expression, but the relative contributions of these receptor subtypes to central angiotensin II responses are not known. We used gene targeting in combination with a unique system for maintaining catheters in the cerebral ventricles of conscious mice to test whether there are differential roles for AT(1A) and AT(1B) receptors in responses elicited by angiotensin II in the brain. Here we show that the blood pressure increase elicited by centrally administered angiotensin II can be selectively ascribed to the AT(1A) receptor. However, the drinking response requires the presence of AT(1B) receptors. To our knowledge, this is the first demonstration of a primary and nonredundant physiological function for AT(1B) receptors.

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Cite This Study

Davisson et al. (2000) studied this question.

synapsesocial.com/papers/6a7081cb35aa2c282ce1d50chttps://doi.org/10.1172/jci10022
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Also Consider

Synapse has enriched 5 closely related papers on similar clinical questions. Consider them for comparative context:

  1. 1Physiological and pathophysiological functions of different angiotensins in the brain2010 · 14 citations
  2. 2Angiotensin Receptors in the Brain1995 · 64 citations
  3. 3Proceedings of the Symposium ‘Angiotensin AT<sub>1</sub> Receptors: From Molecular Physiology to Therapeutics’: PHYSIOLOGICAL ACTIONS OF ANGIOTENSIN II MEDIATED BY AT<sub>1</sub> AND AT<sub>2</sub> RECEPTORS IN THE BRAIN1996 · 88 citations
  4. 4The Angiotensin II Type 2 Receptor in Brain Functions: An Update2012 · 82 citations
  5. 5Influence of Changes of Blood Pressure on Vascular Angiotensin II Receptor Subtype Expression2005 · 5 citations