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钠/钙交换与 Cajal 间质细胞的起搏活动

Na/Ca Exchange and Pacemaker Activity of Interstitial Cells of Cajal.

作者信息

Zheng Haifeng, Drumm Bernard T, Zhu Mei Hong, Xie Yeming, O'Driscoll Kate E, Baker Salah A, Perrino Brian A, Koh Sang Don, Sanders Kenton M

机构信息

Department of Physiology and Cell Biology, University of Nevada School of Medicine, Reno, NV, United States.

出版信息

Front Physiol. 2020 Mar 18;11:230. doi: 10.3389/fphys.2020.00230. eCollection 2020.

Abstract

Interstitial cells of Cajal (ICC) are pacemaker cells that generate electrical slow waves in gastrointestinal (GI) smooth muscles. Slow waves organize basic motor patterns, such as peristalsis and segmentation in the GI tract. Slow waves depend upon activation of Ca-activated Cl channels (CaCC) encoded by . Slow waves consist of an upstroke depolarization and a sustained plateau potential that is the main factor leading to excitation-contraction coupling. The plateau phase can last for seconds in some regions of the GI tract. How elevated Ca is maintained throughout the duration of slow waves, which is necessary for sustained activation of CaCC, is unknown. Modeling has suggested a role for Na/Ca exchanger (NCX) in regulating CaCC currents in ICC, so we tested this idea on murine intestinal ICC. ICC of small and large intestine express NCX isoforms. NCX3 is closely associated with ANO1 in ICC, as shown by immunoprecipitation and proximity ligation assays (PLA). KB-R7943, an inhibitor of NCX, increased CaCC current in ICC, suggesting that NCX, acting in Ca exit mode, helps to regulate basal [Ca] in these cells. Shifting NCX into Ca entry mode by replacing extracellular Na with Li increased spontaneous transient inward currents (STICs), due to activation of CaCC. Stepping ICC from -80 to -40 mV activated slow wave currents that were reduced in amplitude and duration by NCX inhibitors, KB-R7943 and SN-6, and enhanced by increasing the NCX driving force. SN-6 reduced the duration of clustered Ca transients that underlie the activation of CaCC and the plateau phase of slow waves. Our results suggest that NCX participates in slow waves as modeling has predicted. Dynamic changes in membrane potential and ionic gradients during slow waves appear to flip the directionality of NCX, facilitating removal of Ca during the inter-slow wave interval and providing Ca for sustained activation of ANO1 during the slow wave plateau phase.

摘要

Cajal间质细胞(ICC)是在胃肠道(GI)平滑肌中产生电慢波的起搏细胞。慢波组织基本的运动模式,如胃肠道的蠕动和分段。慢波依赖于由……编码的钙激活氯通道(CaCC)的激活。慢波由一个上升去极化和一个持续的平台电位组成,该平台电位是导致兴奋-收缩偶联的主要因素。在胃肠道的某些区域,平台期可持续数秒。在慢波持续期间如何维持升高的钙水平(这是CaCC持续激活所必需的)尚不清楚。模型研究表明钠/钙交换器(NCX)在调节ICC中的CaCC电流方面发挥作用,因此我们在小鼠肠道ICC上验证了这一观点。小肠和大肠的ICC表达NCX亚型。免疫沉淀和邻近连接分析(PLA)显示,NCX3在ICC中与ANO1密切相关。NCX抑制剂KB-R7943增加了ICC中的CaCC电流,表明以钙外流模式起作用的NCX有助于调节这些细胞中的基础钙浓度。用锂替代细胞外钠使NCX进入钙内流模式,由于CaCC的激活增加了自发瞬时内向电流(STICs)。将ICC从-80 mV钳制到-40 mV激活了慢波电流,NCX抑制剂KB-R7943和SN-6降低了其幅度和持续时间,而增加NCX驱动力则增强了慢波电流。SN-6缩短了作为CaCC激活和慢波平台期基础的成簇钙瞬变的持续时间。我们的结果表明,正如模型预测的那样,NCX参与了慢波活动。慢波期间膜电位和离子梯度的动态变化似乎改变了NCX的方向性,有助于在慢波间期清除钙,并在慢波平台期为ANO1的持续激活提供钙。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/0ebe/7093646/e305168bae21/fphys-11-00230-g001.jpg

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