Oxidative Stress Altered Functioning of Both Renal Dopamine D1 and Angiotensin II Type 1 Receptors Causes Hypertension in Old Rats
نویسندگان
چکیده
Activation of renal dopamine D1 (D1R) and angiotensin II type 1 receptors (AT1Rs) influences the activity of proximal tubular sodium transporter Na,K-ATPase and maintains sodium homeostasis and blood pressure. We reported recently that diminished D1R and exaggerated AT1R functions are associated with hypertension in old Fischer 344 Brown Norway F1 (FBN) rats, and oxidative stress plays a central role in this phenomenon. Here we studied the mechanisms of age-associated increase in oxidative stress on diminished D1R and exaggerated AT1R functions in the renal proximal tubules of control and antioxidant Tempol-treated adult and old FBN rats. Although D1R numbers and D1R agonist SKF38393-mediated stimulation of [S]-GTP S binding (index of D1R activation) were lower, G protein–coupled receptor kinase 4 (kinase that uncouples D1R) levels were higher in old FBN rats. Tempol treatment restored D1R numbers and G protein coupling and reduced G protein–coupled receptor kinase 4 levels in old FBN rats. Angiotensin II–mediated stimulation of [S]-GTP S binding and Na,K-ATPase activity were higher in old FBN rats, which were also restored with Tempol treatment. We also measured renal AT1R function in adult and old Fischer 344 (F344) rats, which, despite exhibiting an age-related increase in oxidative stress and diminished renal D1R function, are normotensive. We found that diuretic and natriuretic responses to candesartan (indices of AT1R function) were similar in F344 rats, a likely explanation for the absence of age-associated hypertension in these rats. Perhaps, alterations in both D1R (diminished) and AT1R (exaggerated) functions are necessary for the development of age-associated hypertension, as seen in old FBN rats. (Hypertension. 2012;59:1029-1036.)
منابع مشابه
Altered functioning of both renal dopamine D1 and angiotensin II type 1 receptors causes hypertension in old rats.
Activation of renal dopamine D1 (D1R) and angiotensin II type 1 receptors (AT(1)Rs) influences the activity of proximal tubular sodium transporter Na,K-ATPase and maintains sodium homeostasis and blood pressure. We reported recently that diminished D1R and exaggerated AT(1)R functions are associated with hypertension in old Fischer 344 × Brown Norway F1 (FBN) rats, and oxidative stress plays a ...
متن کاملOxidative stress alters renal D1 and AT1 receptor functions and increases blood pressure in old rats.
Aging is associated with an increase in oxidative stress and blood pressure (BP). Renal dopamine D1 (D1R) and angiotensin II AT1 (AT1R) receptors maintain sodium homeostasis and BP. We hypothesized that age-associated increase in oxidative stress causes altered D1R and AT1R functions and high BP in aging. To test this, adult (3 mo) and old (21 mo) Fischer 344 × Brown Norway F1 rats were supplem...
متن کاملTRANSLATIONAL PHYSIOLOGY Role of oxidative stress in defective renal dopamine D1 receptor-G protein coupling and function in old Fischer 344 rats
Fardoun, Riham Zein, Mohammad Asghar, and Mustafa Lokhandwala. Role of oxidative stress in defective renal dopamine D1 receptor-G protein coupling and function in old Fischer 344 rats. Am J Physiol Renal Physiol 291: F945–F951, 2006. First published June 6, 2006; doi:10.1152/ajprenal.00111.2006.—Aging is associated with an increase in oxidative stress. Previously, we have reported that dopamine...
متن کاملRole of oxidative stress in defective renal dopamine D1 receptor-G protein coupling and function in old Fischer 344 rats.
Aging is associated with an increase in oxidative stress. Previously, we have reported that dopamine failed to inhibit proximal tubular Na-K-ATPase and to promote sodium excretion in old rats (Beheray S, Kansra V, Hussain T, and Lokhandwala MF. Kidney Int 58: 712-720, 2000). This was due to uncoupling of dopamine D1 receptors from G proteins resulting from hyperphosphorylation of D1 receptors. ...
متن کاملOxidative stress causes renal dopamine D1 receptor dysfunction and salt-sensitive hypertension in Sprague-Dawley rats.
Renal dopamine plays an important role in maintaining sodium homeostasis and blood pressure (BP) during increased sodium intake. The present study was carried out to determine whether renal dopamine D1 receptor (D1R) dysfunction contributes to increase in salt sensitivity during oxidative stress. Male Sprague-Dawley rats, divided into various groups, received tap water (vehicle); 1% NaCl (high ...
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