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首页> 外文期刊>Journal of Molecular and Cellular Cardiology >Regulation of cardiac Kv1.5 K+ channel expression by cardiac fibroblasts and mechanical load in cultured newborn rat ventricular myocytes.
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Regulation of cardiac Kv1.5 K+ channel expression by cardiac fibroblasts and mechanical load in cultured newborn rat ventricular myocytes.

机译:在培养的新生大鼠心室肌细胞中,通过心脏成纤维细胞和机械负荷调节心脏Kv1.5 K +通道的表达。

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摘要

Of the six voltage-gated K+ channel alpha subunits detected in rat heart, the Kv1.5 channel is abundantly expressed, and its gene transcription and protein expression are reduced during cardiac remodeling. Since cardiac fibroblasts and mechanical load have been known to play important roles in myocardial hypertrophy, we studied the regulation of Kv1.5 K+ channel protein expression by these factors in cultured newborn rat ventricular myocytes, using immunofluorescent cytochemistry and Western blot analysis. Ventricular cells were isolated from 1-day-old Wistar rats and cultured for a period of 5 days. The effect of cardiac fibroblasts was examined by co-culturing myocytes with fibroblasts or incubating pure myocytes in fibroblast-conditioned growth medium (FCGM) for 72 h. In addition, a 48-h cyclic stretch at 0.5 Hz with 20% elongation in length was applied to pure myocyte cultures to mimic mechanical load. With a polyclonal antibody against rat Kv1.5 K+ channel protein, single cultured myocytes showed a weak and uniform antibody labeling. Co-culturing with fibroblasts or incubating pure myocytes in FCGM both induced a significant increase in myocyte size implying cell hypertrophy, but neither allowed normal expression of the Kv1.5 K+ channel as indicated by almost negative anti-Kv1.5 labeling. Western blots of cell proteins prepared from ventricular myocyte cultures revealed a single protein band at 75 kD recognized by the anti-Kv1.5 antibody and a 45% decrease in Kv1.5 immunoreactive protein level in the FCGM-treated preparations. Application of 1 microM losartan, an angiotensin II type I receptor blocker, significantly attenuated the FCGM-induced myocyte hypertrophy and reduction of Kv1.5 K+ channel expression. On the other hand, although no cell hypertrophy was stimulated by mechanical stretch, intense punctate antibody labeling with a 48% increase in Kv1.5 protein level was observed in the stretched myocytes. These results suggest that the protein expression of cardiac Kv1.5 K+ channel is differentially regulated by cardiac fibroblasts and mechanical load. Some soluble factors produced from cardiac fibroblasts contribute to the depressed Kv1.5 K+ channel expression in myocardial hypertrophy. This channel regulation may be mediated by angiotensin II type I receptor.
机译:在大鼠心脏中检测到的六个电压门控性K +通道α亚基中,Kv1.5通道大量表达,并且在心脏重塑期间其基因转录和蛋白质表达降低。由于已知心肌成纤维细胞和机械负荷在心肌肥大中起重要作用,因此我们使用免疫荧光细胞化学和蛋白质印迹分析研究了这些因素对培养的新生大鼠心室肌细胞中Kv1.5 K +通道蛋白表达的调节作用。从1天大的Wistar大鼠中分离出心室细胞,并培养5天。通过将心肌细胞与成纤维细胞共同培养或在成纤维细胞条件生长培养基(FCGM)中孵育纯肌细胞72小时来检查心脏成纤维细胞的作用。此外,将0.5 Hz的48小时循环拉伸(长度延长了20%)应用于纯肌细胞培养,以模拟机械负荷。使用针对大鼠Kv1.5 K +通道蛋白的多克隆抗体,单培养的心肌细胞显示出弱而均匀的抗体标记。与成纤维细胞共同培养或在FCGM中孵育纯肌细胞均可诱导肌细胞大小显着增加,暗示细胞肥大,但两者均无法正常表达Kv1.5 K +通道,这几乎由抗Kv1.5阴性标记所指示。从心室肌细胞培养物制备的细胞蛋白的蛋白质印迹显示,抗Kv1.5抗体识别75 kD的单个蛋白带,FCGM处理的制剂中Kv1.5免疫反应蛋白水平降低了45%。 1 microM氯沙坦(一种血管紧张素II型I受体阻滞剂)的应用显着减弱了FCGM诱导的心肌肥大并降低了Kv1.5 K +通道表达。另一方面,尽管机械拉伸没有刺激细胞肥大,但是在拉伸的心肌细胞中观察到了强烈的点状抗体标记,其Kv1.5蛋白水平增加了48%。这些结果表明,心脏Kv1.5 K +通道的蛋白质表达受到心脏成纤维细胞和机械负荷的差异调节。心脏成纤维细胞产生的一些可溶性因子有助于心肌肥大中Kv1.5 K +通道表达的降低。该通道调节可以由I型血管紧张素II受体介导。

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