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1.
Am J Physiol Regul Integr Comp Physiol ; 281(4): R1071-8, 2001 Oct.
Article in English | MEDLINE | ID: mdl-11557612

ABSTRACT

D(1)-like (D(1), D(5)) and D(2)-like (D(2), D(3), D(4)) dopamine receptors interact in the kidney to produce a natriuresis and a diuresis. Disruption of D(1) or D(3) receptors in mice results in hypertension that is caused, in part, by a decreased ability to excrete an acute saline load. We studied D(1)-like and D(2)-like receptor interaction in anesthetized spontaneously hypertensive rats (SHR) by the intrarenal infusion of Z-1046 (a novel dopamine receptor agonist with rank order potency of D(3)> or =D(4)>D(2)>D(5)>D(1)). Z-1046 increased glomerular filtration rate (GFR), urine flow, and sodium excretion in normotensive Wistar-Kyoto rats but not in SHRs. The lack of responsiveness to Z-1046 in SHRs was not an epiphenomenon, because intrarenal cholecystokinin infusion increased GFR, urine flow, and sodium excretion to a similar extent in the two rat strains. We conclude that renal D(1)-like and D(2)-like receptor interaction is impaired in SHRs. The impaired D(1)-like and D(2)-like receptor interaction in SHRs is not caused by alterations in the coding sequence of the D(3) receptor, the D(2)-like receptor expressed in rat renal tubules that has been shown to be involved in sodium transport. Because the diuretic and natriuretic effects of D(1)-like receptors are, in part, caused by an interaction with D(2)-like receptors, it is possible that the decreased Z-1046 action in SHRs is secondary to the renal D(1)-like receptor dysfunction in this rat strain.


Subject(s)
Hypertension/metabolism , Kidney/metabolism , Receptors, Dopamine D1/metabolism , Receptors, Dopamine D2/metabolism , Animals , Biological Transport/physiology , Cholecystokinin/administration & dosage , Disease Models, Animal , Diuresis/drug effects , Dopamine Agonists/administration & dosage , Glomerular Filtration Rate/drug effects , Glomerular Filtration Rate/physiology , Infusions, Intra-Arterial , Kidney/drug effects , Kidney Function Tests , Male , Naphthols/administration & dosage , Natriuresis/drug effects , Natriuresis/physiology , Rats , Rats, Inbred SHR , Rats, Inbred WKY , Receptors, Dopamine D1/agonists , Receptors, Dopamine D2/agonists , Receptors, Dopamine D2/biosynthesis , Receptors, Dopamine D2/genetics , Receptors, Dopamine D3 , Sequence Analysis, DNA , Sodium/metabolism
2.
J Clin Invest ; 102(3): 493-8, 1998 Aug 01.
Article in English | MEDLINE | ID: mdl-9691085

ABSTRACT

Since dopamine receptors are important in the regulation of renal and cardiovascular function, we studied the cardiovascular consequences of the disruption of the D3 receptor, a member of the family of D2-like receptors, expressed in renal proximal tubules and juxtaglomerular cells. Systolic and diastolic blood pressures were higher (approximately 20 mmHg) in heterozygous and homozygous than in wild-type mice. An acute saline load increased urine flow rate and sodium excretion to a similar extent in wild-type and heterozygous mice but the increase was attenuated in homozygous mice. Renal renin activity was much greater in homozygous than in wild-type mice; values for heterozygous mice were intermediate. Blockade of angiotensin II subtype-1 receptors decreased systolic blood pressure for a longer duration in mutant than in wild-type mice. Thus, disruption of the D3 receptor increases renal renin production and produces renal sodium retention and renin-dependent hypertension.


Subject(s)
Hypertension/genetics , Receptors, Dopamine D2/deficiency , Renin/physiology , Angiotensin I/blood , Angiotensin Receptor Antagonists , Animals , Blood Pressure/drug effects , Disease Models, Animal , Diuresis/drug effects , Genotype , Hypertension/physiopathology , Juxtaglomerular Apparatus/physiopathology , Kidney Tubules, Proximal/physiopathology , Mice , Mice, Knockout , Natriuresis/drug effects , Receptors, Angiotensin/physiology , Receptors, Dopamine D2/genetics , Receptors, Dopamine D3 , Renin/blood , Renin-Angiotensin System/physiology , Sodium Chloride/pharmacology
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