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首页> 外文期刊>Journal of cellular and molecular medicine. >The α1H Ca2+ channel subunit is expressed in mouse jejunal interstitial cells of Cajal and myocytes
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The α1H Ca2+ channel subunit is expressed in mouse jejunal interstitial cells of Cajal and myocytes

机译:α1HCa2 +通道亚基在小鼠Cajal空肠间质细胞和心肌细胞中表达

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T-type Ca2+ currents have been detected in cells from the external muscular layers of gastrointestinal smooth muscles and appear to contribute to the generation of pacemaker potentials in interstitial cells of Cajal from those tissues. However, the Ca2+ channel α subunit responsible for these currents has not been determined. We established that the α subunit of the α1H Ca2+ channel is expressed in single myocytes and interstitial cells of Cajal using reverse transcription and polymerase chain reaction from whole tissue, laser capture microdissected tissue and single cells isolated from the mouse jejunum. Whole-cell voltage clamp recordings demonstrated that a nifedipine and Cd2+ resistant, mibefradil-sensitive current is present in myocytes dissociated from the jejunum. Electrical recordings from the circular muscle layer demonstrated that mibefradil reduced the frequency and initial rate of rise of the electrical slow wave. Gene targeted knockout of both alleles of the cacna1h gene, which encodes the α1H Ca2+ channel subunit, resulted in embryonic lethality because of death of the homozygous knockouts prior to E13.5 days in utero. We conclude that a channel with the pharmacological and molecular characteristics of the α1H Ca2+ channel subunit is expressed in interstitial cells of Cajal and myocytes from the mouse jejunum, and that ionic conductances through the α1H Ca2+ channel contribute to the upstroke of the pacemaker potential. Furthermore, the survival of mice that do not express the α1H Ca2+ channel protein is dependent on the genetic background and targeting approach used to generate the knockout mice.
机译:在胃肠道平滑肌外部肌肉层的细胞中检测到T型Ca2 +电流,似乎有助于从这些组织的Cajal间质细胞中产生起搏器电位。但是,尚未确定负责这些电流的Ca2 +通道α亚基。我们通过逆转录和聚合酶链反应从整个组织,激光捕获显微切割的组织和从小鼠空肠分离的单个细胞中,确定了Cajal的单个肌细胞和间质细胞中表达的α1HCa2 +通道的α亚基。全细胞电压钳记录表明,与空肠分离的心肌细胞中存在耐硝苯地平和Cd2 +的耐米贝地尔敏感的电流。圆肌层的电记录表明,米贝地尔降低了电慢波的频率和初始上升速率。编码α1HCa2 +通道亚基的cacna1h基因的两个等位基因的基因靶向敲除,由于在子宫内E13.5天之前纯合敲除的死亡而导致胚胎致死。我们得出的结论是,具有α1HCa2 +通道亚基的药理和分子特征的通道在Cajal间质细胞和小鼠空肠的心肌细胞中表达,并且通过α1HCa2 +通道的离子电导有助于起搏器电位的升高。此外,不表达α1HCa2 +通道蛋白的小鼠的存活取决于遗传背景和用于产生基因敲除小鼠的靶向方法。

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