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首页> 外文期刊>Cardiovascular Diabetology >Intracellular Ca2+ regulating proteins in vascular smooth muscle cells are altered with type 1 diabetes due to the direct effects of hyperglycemia
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Intracellular Ca2+ regulating proteins in vascular smooth muscle cells are altered with type 1 diabetes due to the direct effects of hyperglycemia

机译:由于高血糖症的直接作用,血管平滑肌细胞中的细胞内Ca2 +调节蛋白因1型糖尿病而改变

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Background Diminished calcium (Ca2+) transients in response to physiological agonists have been reported in vascular smooth muscle cells (VSMCs) from diabetic animals. However, the mechanism responsible was unclear. Methodology/Principal Findings VSMCs from autoimmune type 1 Diabetes Resistant Bio-Breeding (DR-BB) rats and streptozotocin-induced rats were examined for levels and distribution of inositol trisphosphate receptors (IP3R) and the SR Ca2+ pumps (SERCA 2 and 3). Generally, a decrease in IP3R levels and dramatic increase in ryanodine receptor (RyR) levels were noted in the aortic samples from diabetic animals. Redistribution of the specific IP3R subtypes was dependent on the rat model. SERCA 2 was redistributed to a peri-nuclear pattern that was more prominent in the DR-BB diabetic rat aorta than the STZ diabetic rat. The free intracellular Ca2+ in freshly dispersed VSMCs from control and diabetic animals was monitored using ratiometric Ca2+ sensitive fluorophores viewed by confocal microscopy. In control VSMCs, basal fluorescence levels were significantly higher in the nucleus relative to the cytoplasm, while in diabetic VSMCs they were essentially the same. Vasopressin induced a predictable increase in free intracellular Ca2+ in the VSMCs from control rats with a prolonged and significantly blunted response in the diabetic VSMCs. A slow rise in free intracellular Ca2+ in response to thapsigargin, a specific blocker of SERCA was seen in the control VSMCs but was significantly delayed and prolonged in cells from diabetic rats. To determine whether the changes were due to the direct effects of hyperglycemica, experiments were repeated using cultured rat aortic smooth muscle cells (A7r5) grown in hyperglycemic and control conditions. In general, they demonstrated the same changes in protein levels and distribution as well as the blunted Ca2+ responses to vasopressin and thapsigargin as noted in the cells from diabetic animals. Conclusions/Significance This work demonstrates that the previously-reported reduced Ca2+ signaling in VSMCs from diabetic animals is related to decreases and/or redistribution in the IP3R Ca2+ channels and SERCA proteins. These changes can be duplicated in culture with high glucose levels.
机译:背景技术已经报道了来自糖尿病动物的血管平滑肌细胞(VSMC)中响应于生理激动剂的钙(Ca 2 + )瞬变减少。但是,负责的机制尚不清楚。方法/主要发现检查了自身免疫性1型糖尿病抵抗性生物繁殖(DR-BB)大鼠和链脲佐菌素诱导的大鼠的VSMC的肌醇三磷酸受体(IP 3 R)和SR的水平和分布Ca 2+ 泵(SERCA 2和3)。通常,在糖尿病动物的主动脉样本中,IP 3 水平下降,而莱ano碱受体(RyR)水平急剧上升。特定IP 3 R亚型的重新分布取决于大鼠模型。 SERCA 2重新分布到核周周围模式,该模式在STB糖尿病大鼠中在DR-BB糖尿病大鼠主动脉中更为突出。通过共聚焦显微镜观察,使用比例式Ca 2 + 敏感荧光团监测来自对照组和糖尿病动物的新鲜散布的VSMC中游离细胞内Ca 2 + 。在对照VSMC中,相对于细胞质,细胞核中的基础荧光水平显着更高,而在糖尿病VSMC中,它们基本相同。加压素可诱导糖尿病大鼠VSMCs的VSMC中游离细胞内Ca 2+ 的增加,并且对糖尿病VSMCs的反应明显延长。响应毒胡萝卜素,游离细胞内Ca 2+ 缓慢升高,在对照VSMC中观察到SERCA的特异性阻断剂,但在糖尿病大鼠的细胞中明显延迟和延长。为了确定这些变化是否归因于高血糖症的直接作用,使用在高血糖症和对照条件下生长的培养的大鼠主动脉平滑肌细胞(A7r5)重复实验。通常,他们表现出与糖尿病动物细胞中相同的蛋白质水平和分布变化,以及对血管加压素和毒胡萝卜素的钝化Ca 2+ 反应。结论/意义这项工作证明,先前报道的糖尿病动物VSMC中Ca 2+ 信号减少与IP 3 R Ca <的减少和/或重新分布有关。 sup> 2+ 通道和SERCA蛋白。这些变化可以在高葡萄糖水平的培养物中复制。

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