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题名

Diverse Kir Expression Contributes to Distinct Bimodal Distribution of Resting Potentials and Vasotone Responses of Arterioles

作者
通讯作者Jiang, Zhi-Gen
发表日期
2015-05-04
DOI
发表期刊
ISSN
1932-6203
卷号10期号:5
摘要

The resting membrane potential (RP) of vascular smooth muscle cells (VSMCs) is a major determinant of cytosolic calcium concentration and vascular tone. The heterogeneity of RPs and its underlying mechanism among different vascular beds remain poorly understood. We compared the RPs and vasomotion properties between the guinea pig spiral modiolar artery (SMA), brain arterioles (BA) and mesenteric arteries (MA). We found: 1) RPs showed a robust bimodal distribution peaked at -76 and -40 mV evenly in the SMA, unevenly at -77 and -51 mV in the BA and similar to-71 and -52 mV in the MA. Ba2+ 0.1 mM eliminated their high RP peaks similar to-75 mV. 2) Cells with low RP (similar to-45 mV) hyperpolarized in response to 10 mM extracellular K+, while cells with a high RP depolarized, and cells with intermediate RP (similar to-58 mV) displayed an initial hyperpolarization followed by prolonged depolarization. Moderate high K+ typically induced dilation, constriction and a dilation followed by constriction in the SMA, MA and BA, respectively. 3) Boltzmann-fit analysis of the Ba2+-sensitive inward rectifier K+ (Kir) whole-cell current showed that the maximum Kir conductance density significantly differed among the vessels, and the half-activation voltage was significantly more negative in the MA. 4) Corresponding to the whole-cell data, computational modeling simulated the three RP distribution patterns and the dynamics of RP changes obtained experimentally, including the regenerative swift shifts between the two RP levels after reaching a threshold. 5) Molecular works revealed strong Kir2.1 and Kir2.2 transcripts and Kir2.1 immunolabeling in all 3 vessels, while Kir2.3 and Kir2.4 transcript levels varied. We conclude that a dense expression of functional Kir2. X channels underlies the more negative RPs in endothelial cells and a subset of VSMC in these arterioles, and the heterogeneous Kir function is primarily responsible for the distinct bimodal RPs among these arterioles. The fast Kir-based regenerative shifts between two RP states could form a critical mechanism for conduction/spread of vasomotion along the arteriole axis.

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英语
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资助项目
NIH[P30 DC005983]
WOS研究方向
Science & Technology - Other Topics
WOS类目
Multidisciplinary Sciences
WOS记录号
WOS:000353943000055
出版者
来源库
Web of Science
引用统计
被引频次[WOS]:6
成果类型期刊论文
条目标识符http://sustech.caswiz.com/handle/2SGJ60CL/29993
专题生命科学学院_生物系
作者单位
1.Oregon Hlth & Sci Univ, Oregon Hearing Res Ctr, Portland, OR 97239 USA
2.South Univ Sci & Technol China, Dept Biol, Shenzhen 518055, Peoples R China
3.Shihezi Univ, Coll Med, Dept Physiol, Shihezi, Peoples R China
4.Hebei Med Univ, Dept Pharmacol, Shijiazhuang, Peoples R China
推荐引用方式
GB/T 7714
Yang, Yuqin,Chen, Fangyi,Karasawa, Takatoshi,et al. Diverse Kir Expression Contributes to Distinct Bimodal Distribution of Resting Potentials and Vasotone Responses of Arterioles[J]. PLoS One,2015,10(5).
APA
Yang, Yuqin.,Chen, Fangyi.,Karasawa, Takatoshi.,Ma, Ke-Tao.,Guan, Bing-Cai.,...&Jiang, Zhi-Gen.(2015).Diverse Kir Expression Contributes to Distinct Bimodal Distribution of Resting Potentials and Vasotone Responses of Arterioles.PLoS One,10(5).
MLA
Yang, Yuqin,et al."Diverse Kir Expression Contributes to Distinct Bimodal Distribution of Resting Potentials and Vasotone Responses of Arterioles".PLoS One 10.5(2015).
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