Enteric NeuroScience Program, Mayo Clinic, Rochester, MN 55905, USA.
Biochem Biophys Res Commun. 2012 Oct 19;427(2):248-53. doi: 10.1016/j.bbrc.2012.09.022. Epub 2012 Sep 17.
Ion channels play important roles in regulation of cellular proliferation. Ano1 (TMEM16A) is a Ca(2+)-activated Cl(-) channel expressed in several tumors and cell types. In the muscle layers of the gastrointestinal tract Ano1 is selectively expressed in interstitial cells of Cajal (ICC) and appears to be required for normal gastrointestinal slow wave electrical activity. However, Ano1 is expressed in all classes of ICC, including those that do not generate slow waves suggesting that Ano1 may have other functions. Indeed, a role for Ano1 in regulating proliferation of tumors and ICC has been recently suggested. Recently, a high-throughput screen identified a small molecule, T16A(inh)-A01 as a specific inhibitor of Ano1.
To investigate the effect of the T16A(inh)-A01 inhibitor on proliferation in ICC and in the Ano1-expressing human pancreatic cancer cell line CFPAC-1.
Inhibition of Ano1 was demonstrated by whole cell voltage clamp recordings of currents in cells transfected with full-length human Ano1. The effect of T16A(inh)-A01 on ICC proliferation was examined in situ in organotypic cultures of intact mouse small intestinal smooth muscle strips and in primary cell cultures prepared from these tissues. ICC were identified by Kit immunoreactivity. Proliferating ICC and CFPAC-1 cells were identified by immunoreactivity for the nuclear antigen Ki67 or EdU incorporation, respectively.
T16A(inh)-A01 inhibited Ca(2+)-activated Cl(-) currents by 60% at 10μM in a voltage-independent fashion. Proliferation of ICC was significantly reduced in primary cultures from BALB/c mice following treatment with T16A(inh)-A01. Proliferation of the CFPAC-1 human cell-line was also reduced by T16A(inh)-A01. In organotypic cultures of smooth muscle strips from mouse jejunum, the proliferation of ICC was reduced but the total number of proliferating cells/confocal stack was not affected, suggesting that the inhibitory effect was specific for ICC.
The selective Ano1 inhibitor T16A(inh)-A01 inhibited Ca(2+)-activated Cl(-) currents, reduced the number of proliferating ICC in culture and inhibited proliferation in the pancreatic cancer cell line CFPAC-1. These data support the notion that chloride channels in general and Ano1 in particular are involved in the regulation of proliferation.
离子通道在细胞增殖的调节中发挥重要作用。Ano1(TMEM16A)是一种在几种肿瘤和细胞类型中表达的钙激活氯离子通道。在胃肠道的肌肉层中,Ano1选择性地表达于 Cajal 间质细胞(ICC)中,并且似乎是正常胃肠道慢波电活动所必需的。然而,Ano1在所有类型的 ICC 中均有表达,包括那些不产生慢波的 ICC,这表明 Ano1 可能具有其他功能。事实上,最近有研究表明 Ano1 在调节肿瘤和 ICC 的增殖方面具有作用。最近,一项高通量筛选鉴定出一种小分子 T16A(inh)-A01 作为 Ano1 的特异性抑制剂。
研究 T16A(inh)-A01 抑制剂对 ICC 和表达 Ano1 的人胰腺癌细胞系 CFPAC-1 增殖的影响。
通过转染全长人 Ano1 的细胞的全细胞膜电压钳记录来证明 Ano1 的抑制作用。在完整的小鼠小肠平滑肌条的器官型培养物和从这些组织制备的原代细胞培养物中,原位检测 T16A(inh)-A01 对 ICC 增殖的影响。ICC 通过 Kit 免疫反应性来鉴定。增殖的 ICC 和 CFPAC-1 细胞通过核抗原 Ki67 或 EdU 掺入的免疫反应性分别鉴定。
T16A(inh)-A01 在 10μM 时以电压非依赖性方式抑制 60%的 Ca2+激活的 Cl-电流。在 BALB/c 小鼠的原代培养物中,T16A(inh)-A01 处理后 ICC 的增殖显著减少。CFPAC-1 人细胞系的增殖也被 T16A(inh)-A01 减少。在来自小鼠空肠的平滑肌条的器官型培养物中,ICC 的增殖减少,但每个共聚焦堆栈中的增殖细胞总数不受影响,这表明抑制作用是 ICC 特异性的。
选择性的 Ano1 抑制剂 T16A(inh)-A01 抑制 Ca2+激活的 Cl-电流,减少培养中增殖的 ICC 数量,并抑制胰腺癌细胞系 CFPAC-1 的增殖。这些数据支持这样的观点,即氯离子通道,特别是 Ano1,参与了增殖的调节。