Singh Raman Deep, Gibbons Simon J, Saravanaperumal Siva Arumugam, Du Peng, Hennig Grant W, Eisenman Seth T, Mazzone Amelia, Hayashi Yujiro, Cao Chike, Stoltz Gary J, Ordog Tamas, Rock Jason R, Harfe Brian D, Szurszewski Joseph H, Farrugia Gianrico
Department of Physiology and Biomedical Engineering Enteric NeuroScience Program, Mayo Clinic, Rochester, MN, USA.
Auckland Bioengineering Institute, University of Auckland, Auckland, New Zealand.
J Physiol. 2014 Sep 15;592(18):4051-68. doi: 10.1113/jphysiol.2014.277152. Epub 2014 Jul 25.
Interstitial cells of Cajal (ICC) are pacemaker cells that generate electrical activity to drive contractility in the gastrointestinal tract via ion channels. Ano1 (Tmem16a), a Ca(2+)-activated Cl(-) channel, is an ion channel expressed in ICC. Genetic deletion of Ano1 in mice resulted in loss of slow waves in smooth muscle of small intestine. In this study, we show that Ano1 is required to maintain coordinated Ca(2+) transients between myenteric ICC (ICC-MY) of small intestine. First, we found spontaneous Ca(2+) transients in ICC-MY in both Ano1 WT and knockout (KO) mice. However, Ca(2+) transients within the ICC-MY network in Ano1 KO mice were uncoordinated, while ICC-MY Ca(2+) transients in Ano1 WT mice were rhythmic and coordinated. To confirm the role of Ano1 in the loss of Ca(2+) transient coordination, we used pharmacological inhibitors of Ano1 activity and shRNA-mediated knock down of Ano1 expression in organotypic cultures of Ano1 WT small intestine. Coordinated Ca(2+) transients became uncoordinated using both these approaches, supporting the conclusion that Ano1 is required to maintain coordination/rhythmicity of Ca(2+) transients. We next determined the effect on smooth muscle contractility using spatiotemporal maps of contractile activity in Ano1 KO and WT tissues. Significantly decreased contractility that appeared to be non-rhythmic and uncoordinated was observed in Ano1 KO jejunum. In conclusion, Ano1 has a previously unidentified role in the regulation of coordinated gastrointestinal smooth muscle function through coordination of Ca(2+) transients in ICC-MY.
Cajal间质细胞(ICC)是起搏细胞,通过离子通道产生电活动以驱动胃肠道的收缩性。Ano1(Tmem16a)是一种钙激活氯离子通道,是在ICC中表达的离子通道。小鼠中Ano1的基因缺失导致小肠平滑肌慢波消失。在本研究中,我们表明Ano1是维持小肠肌间ICC(ICC-MY)之间协调的钙瞬变所必需的。首先,我们在Ano1野生型(WT)和敲除(KO)小鼠的ICC-MY中均发现了自发性钙瞬变。然而,Ano1 KO小鼠的ICC-MY网络内的钙瞬变是不协调的,而Ano1 WT小鼠的ICC-MY钙瞬变是有节律且协调的。为了证实Ano1在钙瞬变协调丧失中的作用,我们在Ano1 WT小肠的器官型培养物中使用了Ano1活性的药理学抑制剂以及shRNA介导的Ano1表达敲低。使用这两种方法,协调的钙瞬变都变得不协调了,支持了Ano1是维持钙瞬变的协调/节律性所必需的这一结论。接下来,我们使用Ano1 KO和WT组织中收缩活动的时空图来确定对平滑肌收缩性的影响。在Ano1 KO空肠中观察到收缩性显著降低,似乎是非节律性且不协调的。总之,Ano1在通过协调ICC-MY中的钙瞬变来调节胃肠道平滑肌协调功能方面具有先前未被认识到的作用。