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首页> 外文期刊>American Journal of Physiology >ERG K+ currents regulate pacemaker activity in ICC.
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ERG K+ currents regulate pacemaker activity in ICC.

机译:ERG K +电流调节ICC中的起搏器活动。

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Ether-a-go-go-related gene (ERG) K channels have been implicated in the generation of pacemaker activities in the heart. To study the presence and function of ERG K channels in the pacemaker cells of the small intestine [the interstitial cells of Cajal (ICC)], a combination of patch-clamp techniques, tissue and live cell immunohistochemistry, RT-PCR, and in vitro functional studies were performed. Nonenzymatically isolated ICC in culture were identified by vital staining and presence of rhythmic inward currents. RT-PCR showed the presence of ERG mRNA in the intestinal musculature, and immunohistochemistry on tissue and cultured cells demonstrated that protein similar to human ERG was concentrated on ICC in the Auerbach's plexus region. Whole cell ERG K+ currents were evoked on hyperpolarization from 0 mV (but not from -70 mV) up to -120 mV and showed strong inward rectification. The currents were inhibited by E-4031, cisapride, La3+, and Gd3+ but not by 50 microM Ba2+. The ERG K+ inward current had a typical transient component with fast activation and inactivation kinetics followed by significant steady-state current. E-4031 also inhibited tetraethylammonium (TEA)-insensitive outward current indicating that the ERG K+ current is operating at depolarizing potentials. In contrast to TEA, blockers of the ERG K+ currents caused marked increase in tissue excitability as reflected by an increase in slow-wave duration and an increase in superimposed action potential activity. In summary, ERG K channels in ICC contribute to the membrane potential and play a role in regulation of pacemaker activity of the small intestine.
机译:以太相关基因(ERG)K通道与心脏起搏器活动的产生有关。为了研究小肠起搏器细胞[Cajal间质细胞(ICC)]中ERG K通道的存在和功能,结合了膜片钳技术,组织和活细胞免疫组织化学,RT-PCR和体外研究进行功能研究。通过重要的染色和节律性内向电流的存在来鉴定培养物中非酶分离的ICC。 RT-PCR显示肠肌肉组织中存在ERG mRNA,组织和培养细胞的免疫组织化学表明,类似于人ERG的蛋白集中在Auerbach神经丛区域的ICC上。从0 mV(但不是从-70 mV开始)到-120 mV发生超极化时,会引发全细胞ERG K +电流,并表现出强大的向内整流能力。电流受E-4031,西沙必利,La3 +和Gd3 +抑制,但不受50 microM Ba2 +抑制。 ERG K +内向电流具有典型的瞬态分量,具有快速的激活和失活动力学,然后具有明显的稳态电流。 E-4031还抑制了对四乙铵(TEA)不敏感的向外电流,表明ERG K +电流在去极化电势下运行。与TEA相比,ERG K +电流的阻滞剂引起组织兴奋性显着增加,这反映为慢波持续时间的增加和叠加动作电位活性的增加。总之,ICC中的ERG K通道有助于膜电位,并在小肠起搏器活性的调节中发挥作用。

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