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kv7.4/kv7.5 异聚体对脑固有反应性和降钙素基因相关肽诱导的反应性的贡献。

Contribution of kv7.4/kv7.5 heteromers to intrinsic and calcitonin gene-related peptide-induced cerebral reactivity.

机构信息

From the Division of Biomedical Sciences, Pharmacology and Cell Physiology Research Group, St George's University of London, London, United Kingdom (P.S.C., T.A.J., G.C., J.B.S., I.A.G.); and The Smooth Muscle Research Group, Department of Physiology and Pharmacology, Faculty of Medicine, University of Calgary, Calgary, Alberta, Canada (H.-L.Z., W.C.C.).

出版信息

Arterioscler Thromb Vasc Biol. 2014 Apr;34(4):887-93. doi: 10.1161/ATVBAHA.114.303405. Epub 2014 Feb 20.

Abstract

OBJECTIVE

Middle cerebral artery (MCA) diameter is regulated by inherent myogenic activity and the effect of potent vasodilators such as calcitonin gene-related peptide (CGRP). Previous studies showed that MCAs express KCNQ1, 4, and 5 potassium channel genes, and the expression products (Kv7 channels) participate in the myogenic control of MCA diameter. The present study investigated the contribution of Kv7.4 and Kv7.5 isoforms to myogenic and CGRP regulation of MCA diameter and determined whether they were affected in hypertensive animals.

APPROACH AND RESULTS

Isometric tension recordings performed on MCA from normotensive rats produced CGRP vasodilations that were inhibited by the pan-Kv7 channel blocker linopirdine (P<0.01) and after transfection of arteries with siRNA against KCNQ4 (P<0.01) but not KCNQ5. However, isobaric myography revealed that myogenic constriction in response to increases in intravascular pressure (20-80 mm Hg) was affected by both KCNQ4 and KCNQ5 siRNA. Proximity ligation assay signals were equally abundant for Kv7.4/Kv7.4 or Kv7.4/Kv7.5 antibody combinations but minimal for Kv7.5/Kv7.5 antibodies or Kv7.4/7.1 combinations. In contrast to systemic arteries, Kv7 function and Kv7.4 abundance in MCA were not altered in hypertensive rats.

CONCLUSIONS

This study reveals, for the first time to our knowledge, that in cerebral arteries, Kv7.4 and Kv7.5 proteins exist predominantly as a functional heterotetramer, which regulates intrinsic myogenicity and vasodilation attributed to CGRP. Surprisingly, unlike systemic arteries, Kv7 activity in MCAs is not affected by the development of hypertension, and CGRP-mediated vasodilation is well maintained. As such, cerebrovascular Kv7 channels could be amenable for therapeutic targeting in conditions such as cerebral vasospasm.

摘要

目的

大脑中动脉(MCA)的直径受固有肌源性活动以及降钙素基因相关肽(CGRP)等强效血管扩张剂的影响。先前的研究表明,MCA 表达 KCNQ1、4 和 5 钾通道基因,其表达产物(Kv7 通道)参与 MCA 直径的肌源性控制。本研究探讨了 Kv7.4 和 Kv7.5 同工型对 MCA 直径的肌源性和 CGRP 调节的贡献,并确定它们是否在高血压动物中受到影响。

方法和结果

对来自正常血压大鼠的 MCA 进行等长张力记录,结果显示 CGRP 血管舒张,被泛 Kv7 通道阻滞剂林普立啶(P<0.01)和用 siRNA 转染动脉后 KCNQ4(P<0.01)而不是 KCNQ5 抑制。然而,等容肌描记法显示,对血管内压(20-80mmHg)增加的肌源性收缩受到 KCNQ4 和 KCNQ5 siRNA 的影响。Kv7.4/Kv7.4 或 Kv7.4/Kv7.5 抗体组合的接近连接测定信号同样丰富,但 Kv7.5/Kv7.5 抗体或 Kv7.4/7.1 组合的信号非常少。与系统性动脉不同,高血压大鼠 MCA 中的 Kv7 功能和 Kv7.4 丰度没有改变。

结论

本研究首次揭示,在脑动脉中,Kv7.4 和 Kv7.5 蛋白主要作为功能性异四聚体存在,调节固有肌源性和归因于 CGRP 的血管舒张。令人惊讶的是,与系统性动脉不同,MCA 中的 Kv7 活性不受高血压发展的影响,CGRP 介导的血管舒张得到很好的维持。因此,脑血管 Kv7 通道可能适合在诸如脑血管痉挛等情况下进行治疗靶向。

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