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首页> 外文期刊>Molecular medicine reports >Silencing of desmoplakin decreases connexin43/Nav1.5 expression and sodium current in HL-1 cardiomyocytes
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Silencing of desmoplakin decreases connexin43/Nav1.5 expression and sodium current in HL-1 cardiomyocytes

机译:桥粒铂的沉默可降低HL-1心肌细胞中connexin43 / Nav1.5的表达和钠电流

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摘要

Desmosomes and gap junctions are situated in the intercalated disks of cardiac muscle and maintain the integrity of mechanical coupling and electrical impulse conduction between cells. The desmosomal plakin protein, desmoplakin (DSP), also plays a crucial role in the stability of these interconnected components as well as gap junction connexin proteins. In addition to cell-to-cell junctions, other molecules, including voltage-gated sodium channels (Nav1.5) are present in the intercalated disk and support the contraction of cardiac muscle. Mutations in genes encoding desmosome proteins may result in fatal arrhythmias, including arrhythmogenic right ventricular cardiomyopathy (ARVC). Therefore, the aim of the present study was to determine whether the presence of DSP is necessary for the normal function and localization of gap junction protein connexin43 (Cx43) and Nav1.5. To examine this hypothesis, RNA interference was utilized to knock down the expression of DSP in HL-1 cells and the content, distribution and function of Cx43 and Nav1.5 was assessed. Western blotting and flow cytometry experiments revealed that Cx43 and Nav1.5 expression decreased following DSP silencing. In addition, immunofluorescence studies demonstrated that a loss of DSP expression led to an abnormal distribution of Cx43 and Nav1.5, while scrape-loading dye/transfer revealed a decrease in dye transfer in DSP siRNA-treated cells. The sodium current was also recorded by the whole-cell patch clamp technique. The results indicated that DSP suppression decreased sodium current and slowed conduction velocity in cultured cells. The present study indicates that impaired mechanical coupling largely affects electrical synchrony, further uncovering the pathogenesis of ARVC.
机译:桥粒和间隙连接位于心肌的插入盘中,并保持细胞之间机械耦合和电脉冲传导的完整性。 desmosomal plakin蛋白desmoplakin(DSP)在这些相互连接的组件以及间隙连接连接蛋白的稳定性中也起着至关重要的作用。除细胞间连接外,在插层盘中还存在其他分子,包括电压门控钠通道(Nav1.5),支持心肌的收缩。编码桥粒蛋白的基因突变可能导致致命性心律失常,包括致心律失常性右室心肌病(ARVC)。因此,本研究的目的是确定间隙连接蛋白连接蛋白连接蛋白43(Cx43)和Nav1.5的正常功能和定位是否需要DSP的存在。为了检验该假设,利用RNA干扰来敲除DSP在HL-1细胞中的表达,并评估了Cx43和Nav1.5的含量,分布和功能。 Western印迹和流式细胞仪实验表明,DSP沉默后Cx43和Nav1.5表达降低。此外,免疫荧光研究表明,DSP表达的丧失导致Cx43和Nav1.5的异常分布,而刮取式染料/转移显示出DSP siRNA处理的细胞中染料转移的减少。还通过全细胞膜片钳技术记录了钠电流。结果表明,DSP抑制可降低培养细胞中的钠电流并减慢传导速度。本研究表明,机械耦合受损很大程度上影响了电气同步,进一步揭示了ARVC的发病机理。

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