Department of Biomedicine, MEMBRANES, Health, Aarhus University, Aarhus, Denmark.
Department for Clinical Biochemistry and Pharmacology, University of Southern Denmark, Odense, Denmark.
Physiol Rep. 2020 Nov;8(22):e14645. doi: 10.14814/phy2.14645.
A Ca -activated Cl channel protein, ANO1, is expressed in vascular smooth muscle cells where Cl current is thought to potentiate contraction by contributing to membrane depolarization. However, there is an inconsistency between previous knockout and knockdown studies on ANO1's role in small arteries. In this study, we assessed cardiovascular function of heterozygous mice with global deletion of exon 7 in the ANO1 gene. We found decreased expression of ANO1 in aorta, saphenous and tail arteries from heterozygous ANO1 knockout mice in comparison with wild type. Accordingly, ANO1 knockdown reduced the Ca -activated Cl current in smooth muscle cells. Consistent with conventional hypothesis, the contractility of aorta from ANO1 heterozygous mice was reduced. Surprisingly, we found an enhanced contractility of tail and saphenous arteries from ANO1 heterozygous mice when stimulated with noradrenaline, vasopressin, and K -induced depolarization. This difference was endothelium-independent. The increased contractility of ANO1 downregulated small arteries was due to increased Ca influx. The expression of L-type Ca channels was not affected but expression of the plasma membrane Ca ATPase 1 and the Piezo1 channel was increased. Expressional analysis of tail arteries further suggested changes of ANO1 knockdown smooth muscle cells toward a pro-contractile phenotype. We did not find any difference between genotypes in blood pressure, heart rate, pressor response, and vasorelaxation in vivo. Our findings in tail and saphenous arteries contrast with the conventional hypothesis and suggest additional roles for ANO1 as a multifunctional protein in the vascular wall that regulates Ca homeostasis and smooth muscle cell phenotype.
一种钙激活氯离子通道蛋白 ANO1 在血管平滑肌细胞中表达,氯离子电流被认为通过促进膜去极化来增强收缩。然而,ANO1 在小动脉中的作用的先前敲除和敲低研究之间存在不一致。在这项研究中,我们评估了 ANO1 基因外显子 7 全局缺失的杂合子小鼠的心血管功能。我们发现,与野生型相比,杂合子 ANO1 敲除小鼠的主动脉、隐静脉和尾动脉中的 ANO1 表达减少。相应地,ANO1 敲低减少了平滑肌细胞中的钙激活氯离子电流。与传统假说一致,ANO1 杂合子小鼠的主动脉收缩性降低。令人惊讶的是,我们发现 ANO1 杂合子小鼠的尾动脉和隐静脉对去甲肾上腺素、血管加压素和 K 诱导去极化的收缩性增强。这种差异与内皮无关。ANO1 下调小动脉的收缩性增强是由于 Ca 内流增加。L 型 Ca 通道的表达不受影响,但质膜 Ca-ATPase 1 和 Piezo1 通道的表达增加。尾动脉的表达分析进一步表明,ANO1 敲低平滑肌细胞向促收缩表型的转变。我们没有发现基因型之间在体内血压、心率、升压反应和血管舒张方面有任何差异。我们在尾动脉和隐静脉中的发现与传统假说相反,表明 ANO1 作为血管壁中的多功能蛋白在调节 Ca 稳态和平滑肌细胞表型方面具有额外的作用。