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What'S where and why at a vascular myoendothelial microdomain signalling complex.

机译:血管内皮微区信号复合物的位置和位置为何。

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摘要

1. Modulation of vascular cell calcium is critical for the control of vascular tone, blood flow and pressure. 2. Specialized microdomain signalling sites associated with calcium modulation are present in vascular smooth muscle cells, where spatially localized channels and calcium store receptors interact functionally. Anatomical studies suggest that such sites are also present in endothelial cells. 3. The characteristics of these sites near heterocellular myoendothelial gap junctions (MEGJs) are described, focusing on rat mesenteric artery. The MEGJs enable current and small molecule transfer to coordinate arterial function and are thus critical for endothelium-derived hyperpolarization, regulation of smooth muscle cell diameter in response to contractile stimuli and vasomotor conduction over distance. 4. Although MEGJs occur on endothelial cell projections within internal elastic lamina (IEL) holes, not all IEL holes have MEGJ-related projections (approximately 0-50% of such holes have MEGJ-related projections, with variations occurring within and between vessels, species, strains and disease). 5. In rat mesenteric, saphenous and caudal cerebellar artery and hamster cheek pouch arteriole, but not rat middle cerebral artery or cremaster arteriole, intermediate conductance calcium-activated potassium channels (IK(Ca)) localize to endothelial cell projections. 6. Rat mesenteric artery MEGJ connexins and IK(Ca) are in close spatial association with endothelial cell inositol 1,4,5-trisphosphate receptors and endoplasmic reticulum. 7. Data suggest a relationship between spatially associated endothelial cell ion channels and calcium stores in modulation of calcium release and action. Differences in spatial relationships between ion channels and calcium stores in different vessels reflect heterogeneity in vasomotor function, representing a selective target for the control of endothelial and vascular function.
机译:1.调节血管细胞钙对于控制血管张力,血流量和压力至关重要。 2.与钙调节相关的专门的微区信号传导位点存在于血管平滑肌细胞中,其中空间定位通道和钙存储受体在功能上相互作用。解剖学研究表明,这些位点也存在于内皮细胞中。 3.描述了这些位置在异细胞肌内皮间隙连接(MEGJs)附近的特征,重点是大鼠肠系膜动脉。 MEGJ使电流和小分子转移能够协调动脉功能,因此对于内皮衍生的超极化,响应于收缩刺激的血管平滑肌细胞直径调节和远距离血管舒缩传导至关重要。 4.尽管MEGJ出现在内部弹性薄片(IEL)孔内的内皮细胞突起上,但并非所有IEL孔都有与MEGJ相关的突起(大约0-50%的此类孔具有MEGJ相关的突起,并且在血管内部和血管之间发生变化,种类,品系和疾病)。 5.在大鼠肠系膜,隐性和尾小脑动脉和仓鼠颊囊小动脉中,但在大鼠中脑动脉或提睾小动脉中则没有,中间电导钙激活的钾通道(IK(Ca))定位于内皮细胞投射。 6.大鼠肠系膜动脉MEGJ连接蛋白和IK(Ca)与内皮细胞肌醇1,4,5-三磷酸酯受体和内质网紧密相关。 7.数据表明空间相关的内皮细胞离子通道和钙储存之间的关系调节钙的释放和作用。离子通道和钙离子在不同血管中的空间关系在空间上的差异反映了血管舒缩功能的异质性,代表了控制内皮和血管功能的选择性靶点。

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