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确定抑制蛋白2和抑制蛋白3在高血压中血管收缩受体脱敏中的作用。

Defining the roles of arrestin2 and arrestin3 in vasoconstrictor receptor desensitization in hypertension.

作者信息

Willets Jonathon M, Nash Craig A, Rainbow Richard D, Nelson Carl P, Challiss R A John

机构信息

Department of Cell Physiology and Pharmacology, University of Leicester, Leicester, United Kingdom; and

Department of Cell Physiology and Pharmacology, University of Leicester, Leicester, United Kingdom; and.

出版信息

Am J Physiol Cell Physiol. 2015 Aug 1;309(3):C179-89. doi: 10.1152/ajpcell.00079.2015. Epub 2015 May 13.

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.

摘要

血管收缩剂刺激磷脂酶C活性的长期升高可导致动脉收缩、高血压以及平滑肌肥大/增生。抑制蛋白可被激动剂占据的G蛋白偶联受体招募,从而终止信号传导并抵消血管张力的变化。在此,我们研究高血压的发展是否会影响阻力动脉中抑制蛋白的表达,以及这种变化如何改变动脉收缩信号传导和功能。与正常血压的Wistar-Kyoto(WKY)对照相比,12周龄自发性高血压大鼠(SHR)肠系膜动脉中抑制蛋白2/3的表达增加,而6周龄SHR和WKY动物之间未观察到抑制蛋白表达的差异。在肠系膜动脉肌动描记实验中,6周龄和12周龄SHR动物中高细胞外钾(K⁺)刺激的收缩均增加。通过P2Y受体起作用的尿苷5'-三磷酸(UTP)的浓度-反应实验显示,12周龄动物(而非6周龄动物)的曲线向左移位。12周龄(而非6周龄)SHR动物中UTP刺激的血管收缩脱敏增强。肠系膜动脉细胞中的双肌醇三磷酸/钙离子(IP3/Ca²⁺)成像显示,与WKY大鼠相比,12周龄(而非6周龄)SHR中UTP和内皮素-1(ET1)反应的脱敏增强。小干扰RNA(siRNA)介导的针对UTP的抑制蛋白2和针对ET1的抑制蛋白3的缺失,逆转了磷脂酶C信号传导的脱敏。总之,在早期高血压表型出现期间,阻力动脉中抑制蛋白2和3的表达升高,这是血管收缩信号传导和血管收缩脱敏能力增强的基础。这种调节变化可能起到补偿血管收缩剂诱导的血管收缩增加的作用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/2b3c/4525080/cd18bf56d8ea/zh00141577640001.jpg

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