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Updated: Apr 12, 2026

Mesenteric Artery Contraction and Relaxation Studies Using Automated Wire Myography
Published on: September 22, 2011
Defining the roles of arrestin2 and arrestin3 in vasoconstrictor receptor desensitization in hypertension
Jonathon M Willets1, Craig A Nash2, Richard D Rainbow3
1Department of Cell Physiology and Pharmacology, University of Leicester, Leicester, United Kingdom; and jmw23@leicester.ac.uk.
Abstract:
Prolonged vasoconstrictor-stimulated phospholipase C activity can induce arterial constriction, hypertension, and smooth muscle hypertrophy/hyperplasia. Arrestin proteins are recruited by agonist-occupied G protein-coupled receptors to terminate signaling and counteract changes in vascular tone. Here we determine whether the development of hypertension affects arrestin expression in resistance arteries and how such changes alter arterial contractile signaling and function. Arrestin2/3 expression was increased in mesenteric arteries of 12-wk-old spontaneously hypertensive rats (SHR) compared with normotensive Wistar-Kyoto (WKY) controls, while no differences in arrestin expression were observed between 6-wk-old SHR and WKY animals. In mesenteric artery myography experiments, high extracellular K(+)-stimulated contractions were increased in both 6- and 12-wk-old SHR animals. Concentration-response experiments for uridine 5'-triphosphate (UTP) acting through P2Y receptors displayed a leftward shift in 12-wk, but not 6-wk-old animals. Desensitization of UTP-stimulated vessel contractions was increased in 12-wk-old (but not 6-wk-old) SHR animals. Dual IP3/Ca(2+) imaging in mesenteric arterial cells showed that desensitization of UTP and endothelin-1 (ET1) responses was enhanced in 12-wk-old (but not 6-wk-old) SHR compared with WKY rats. siRNA-mediated depletion of arrestin2 for UTP and arrestin3 for ET1, reversed the desensitization of PLC signaling. In conclusion, arrestin2 and 3 expression is elevated in resistance arteries during the emergence of the early hypertensive phenotype, which underlies an enhanced ability to desensitize vasoconstrictor signaling and vessel contraction. Such regulatory changes may act to compensate for increased vasoconstrictor-induced vessel contraction.
Insights
Hypertension increases arrestin proteins in rat arteries, enhancing their ability to desensitize vasoconstrictor signaling and vessel contraction. This may help regulate blood pressure during early hypertension.
Area of Science:
- Vascular Biology
- Hypertension Research
- Molecular Pharmacology
Background:
- Prolonged phospholipase C activity contributes to arterial constriction and hypertension.
- Arrestin proteins regulate G protein-coupled receptor signaling and vascular tone.
- Hypertension's impact on arrestin expression in resistance arteries is not fully understood.
Purpose of the Study:
- To investigate changes in arrestin expression in resistance arteries during hypertension development.
- To determine how altered arrestin levels affect arterial contractile signaling and function.
- To elucidate the role of arrestins in regulating vasoconstrictor responses in hypertension.
Main Methods:
- Mesenteric artery myography in spontaneously hypertensive rats (SHR) and Wistar-Kyoto (WKY) controls.
- Assessment of arrestin2/3 expression levels via Western blotting or similar techniques.
- Measurement of vasoconstrictor-induced contractions and desensitization.
- Dual IP3/Ca(2+) imaging in arterial cells.
- siRNA-mediated depletion of arrestins.
Main Results:
- Arrestin2/3 expression increased in 12-wk-old SHR mesenteric arteries compared to WKY controls.
- High K(+)-stimulated contractions were elevated in both 6- and 12-wk-old SHR.
- UTP-stimulated contractions showed leftward shift and enhanced desensitization in 12-wk-old SHR.
- Desensitization of UTP and endothelin-1 responses was enhanced in 12-wk-old SHR.
- siRNA depletion of arrestins reversed PLC signaling desensitization.
Conclusions:
- Arrestin2 and 3 expression is elevated in resistance arteries during early hypertension.
- Increased arrestins enhance the desensitization of vasoconstrictor signaling and vessel contraction.
- These regulatory changes may serve as a compensatory mechanism against increased vasoconstriction in hypertension.
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