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仓鼠颊囊小动脉和牵张肌供血动脉平滑肌细胞与内皮细胞中连接蛋白亚型的表达

Connexin isoform expression in smooth muscle cells and endothelial cells of hamster cheek pouch arterioles and retractor feed arteries.

作者信息

Hakim Chady H, Jackson William F, Segal Steven S

机构信息

University of Missouri, Department of Medical Pharmacology and Physiology, Columbia, Missouri 65212, USA.

出版信息

Microcirculation. 2008 Aug;15(6):503-14. doi: 10.1080/10739680801982808.

Abstract

OBJECTIVE

Gap junction channels formed by connexin (Cx) protein subunits enable cell-to-cell conduction of vasoactive signals. Given the lack of quantitative measurements of Cx expression in microvascular endothelial cells (EC) and smooth muscle cells (SMC), the objective was to determine whether Cx expression differed between EC and SMC of resistance microvessels for which conduction is well-characterized.

METHODS

Cheek pouch arterioles (CPA) and retractor feed arteries (RFA) were hand-dissected and dissociated to obtain SMC or endothelial tubes. In complementary experiments, small intestine was dissociated to obtain SMC. Following reverse transcription, quantitative Real-Time Polymerase Chain Reaction (qRT-PCR) was performed by using specific primers and fluorescent probes for Cx37, Cx40, and Cx43. Smooth muscle alpha-actin (SMAA) and platelet endothelial cell adhesion molecule-1 (PECAM-1) served as respective reference genes.

RESULTS

Transcript copy numbers were similar for each Cx isoform in EC from CPA and RFA (approximately 0.5 Cx/PECAM-1). For SMC, Cx43 transcript in CPA and RFA (< 0.1 Cx/SMAA) was less (p < 0.05) than that in small intestine (approximately 0.4 Cx/SMAA). Transcripts for Cx37 and Cx40 were also detected in SMC. Punctate immunolabeling for each Cx isoform was pronounced at EC borders and that for Cx43 was pronounced in SMC of small intestine. In contrast, Cx immunolabeling was not detected in SMC of CPA or RFA.

CONCLUSIONS

Connexin expression occurs primarily within the endothelium of arterioles and feed arteries, supporting a highly effective pathway for conducting vasoactive signals along resistance networks. The apparent paucity of Cx expression within SMC underscores discrete homocellular coupling and focal localization of myoendothelial gap junctions.

摘要

目的

由连接蛋白(Cx)蛋白亚基形成的缝隙连接通道能够实现血管活性信号的细胞间传导。鉴于缺乏对微血管内皮细胞(EC)和平滑肌细胞(SMC)中Cx表达的定量测量,本研究旨在确定在传导特性明确的阻力微血管的EC和SMC之间,Cx表达是否存在差异。

方法

手工解剖并分离颊囊小动脉(CPA)和牵开器供血动脉(RFA)以获得SMC或内皮管。在补充实验中,分离小肠以获得SMC。逆转录后,使用针对Cx37、Cx40和Cx43的特异性引物和荧光探针进行定量实时聚合酶链反应(qRT-PCR)。平滑肌α-肌动蛋白(SMAA)和血小板内皮细胞黏附分子-1(PECAM-1)分别作为参考基因。

结果

CPA和RFA的EC中每种Cx异构体的转录本拷贝数相似(约0.5 Cx/PECAM-1)。对于SMC,CPA和RFA中的Cx43转录本(<0.1 Cx/SMAA)低于(p<0.05)小肠中的(约0.4 Cx/SMAA)。在SMC中也检测到Cx37和Cx40的转录本。每种Cx异构体的点状免疫标记在EC边界处明显,而Cx43的点状免疫标记在小肠的SMC中明显。相比之下,在CPA或RFA的SMC中未检测到Cx免疫标记。

结论

连接蛋白表达主要发生在小动脉和供血动脉的内皮内,支持沿着阻力网络传导血管活性信号的高效途径。SMC中明显缺乏Cx表达强调了肌内皮缝隙连接的离散同细胞偶联和局灶定位。

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