Potassium channel-mediated NO-induced vasodilation during maturation: Dominance of Kv7 channels

IF 2.5 Q3 BIOCHEMISTRY & MOLECULAR BIOLOGY
Anastasia A. Shvetsova, Dina K. Gaynullina, Peter Winkler, Paulus Wohlfart, Rudolf Schubert
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Abstract

Maturation represents a process characterized by adaptive changes, particularly in the circulatory system. However, it is not known whether, in neonates, potassium channels contribute to NO-induced vasorelaxation at all and, if so, which potassium channels these are. Therefore, this study tested the hypothesis that potassium channels mediate NO-induced vasorelaxation in newborn rats. Young (10- to 15-day-old) and adult (2- to 3-month-old) male rats were studied using real-time PCR, isometric myography, and the sharp microelectrode technique on saphenous arteries. We observed prominent mRNA expression of several distinct isoforms of potassium channel families known to potentially mediate SNP-induced vasodilation. Further, in both adult and young rats, SNP can relax vessels independently of potassium channels. A solely potassium channel-independent anticontractile effect of SNP was observed also when either Kir6, or Kir2, or Kv2 channels, respectively, were available in both adult and young rats. However, when Kv1 channels were available, a Kv1 channel-dependent component contributed to the anticontractile effect of SNP in young rats. When BKCa channels were available, a BKCa channel-dependent component contributed to the anticontractile effect of SNP in adult rats. A considerable Kv7 channel-dependent component contributed to the anticontractile effect of SNP in both adult and young rats. Thus, the data of the present study show for the first time that potassium channels, even multiple ones, contribute to SNP-induced vasorelaxation in newborn rats and that the potassium channels involved in SNP-induced vasorelaxation change from Kv1/Kv7 channels to BKCa/Kv7 channels during postnatal development.

Abstract Image

成熟过程中钾通道介导的no诱导血管舒张:Kv7通道的优势
成熟是一个以适应性变化为特征的过程,特别是在循环系统中。然而,尚不清楚在新生儿中,钾通道是否有助于一氧化氮诱导的血管松弛,如果有,这些钾通道是哪些。因此,本研究验证了钾通道介导新生大鼠一氧化氮诱导的血管松弛的假设。采用实时荧光定量PCR、等长肌图和锐微电极技术对幼年(10 ~ 15日龄)和成年(2 ~ 3月龄)雄性大鼠的隐动脉进行了研究。我们观察到几个已知可能介导snp诱导的血管舒张的钾通道家族不同亚型的显著mRNA表达。此外,在成年和年轻大鼠中,SNP可以独立于钾通道放松血管。当Kir6、Kir2或Kv2通道分别在成年和幼年大鼠中可用时,也观察到SNP的完全不依赖钾通道的抗收缩作用。然而,当Kv1通道可用时,Kv1通道依赖性成分有助于年轻大鼠SNP的抗收缩作用。当BKCa通道可用时,BKCa通道依赖成分有助于成年大鼠SNP的抗收缩作用。一个相当大的Kv7通道依赖性成分有助于SNP在成年和年轻大鼠中的抗收缩作用。因此,本研究的数据首次表明,在新生大鼠中,钾通道(甚至是多个通道)参与了snp诱导的血管舒张,并且在出生后发育过程中,参与snp诱导的血管舒张的钾通道从Kv1/Kv7通道转变为BKCa/Kv7通道。
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来源期刊
FASEB bioAdvances
FASEB bioAdvances Multiple-
CiteScore
5.40
自引率
3.70%
发文量
56
审稿时长
10 weeks
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