Departamento de Bioquímica y Biología Molecular y Fisiología e Instituto de Biología y Genética Molecular , Universidad de Valladolid y CSIC, Valladolid, Spain.
Cardiovasc Res. 2010 Jun 1;86(3):383-91. doi: 10.1093/cvr/cvq011. Epub 2010 Jan 21.
Vascular smooth muscle cell (VSMC) proliferation is involved in cardiovascular pathologies associated with unwanted arterial wall remodelling. Coordinated changes in the expression of several K+ channels have been found to be important elements in the phenotypic switch of VSMCs towards proliferation. We have previously demonstrated the association of functional expression of Kv3.4 channels with proliferation of human uterine VSMCs. Here, we sought to gain deeper insight on the relationship between Kv3.4 channels and cell cycle progression in this preparation.
Expression and function of Kv3.4 channels along the cell cycle was explored in uterine VSMCs synchronized at different checkpoints, combining real-time PCR, western blotting, and electrophysiological techniques. Flow cytometry, Ki67 expression and BrdU incorporation techniques allowed us to explore the effects of Kv3.4 channels blockade on cell cycle distribution. We found cyclic changes in Kv3.4 and MiRP2 mRNA and protein expression along the cell cycle. Functional studies showed that Kv3.4 current amplitude and Kv3.4 channels contribution to cell excitability increased in proliferating cells. Finally, both Kv3.4 blockers and Kv3.4 knockdown with siRNA reduced the proportion of proliferating VSMCs.
Our data indicate that Kv3.4 channels exert a permissive role in the cell cycle progression of proliferating uterine VSMCs, as their blockade induces cell cycle arrest after G2/M phase completion. The modulation of resting membrane potential (V(M)) by Kv3.4 channels in proliferating VSMCs suggests that their role in cell cycle progression could be at least in part mediated by their contribution to the hyperpolarizing signal needed to progress through the G1 phase.
血管平滑肌细胞(VSMC)增殖参与与动脉壁重塑无关的心血管病理。已经发现,几种 K+通道表达的协调变化是 VSMC 向增殖表型转变的重要因素。我们之前已经证明了功能性 Kv3.4 通道的表达与人类子宫 VSMC 的增殖有关。在这里,我们试图在这种准备中更深入地了解 Kv3.4 通道与细胞周期进展之间的关系。
通过实时 PCR、western blot 和电生理技术,在不同检查点同步的子宫 VSMC 中探索 Kv3.4 通道在细胞周期中的表达和功能。流式细胞术、Ki67 表达和 BrdU 掺入技术允许我们探索 Kv3.4 通道阻断对细胞周期分布的影响。我们发现 Kv3.4 和 MiRP2 mRNA 和蛋白表达沿细胞周期呈周期性变化。功能研究表明,Kv3.4 电流幅度和 Kv3.4 通道对细胞兴奋性的贡献在增殖细胞中增加。最后,Kv3.4 阻断剂和 Kv3.4 短发夹 RNA 敲低均降低了增殖性 VSMC 的比例。
我们的数据表明,Kv3.4 通道在增殖性子宫 VSMC 的细胞周期进展中发挥许可作用,因为它们的阻断在 G2/M 期完成后诱导细胞周期停滞。Kv3.4 通道在增殖性 VSMC 中对静息膜电位(V(M))的调节表明,它们在细胞周期进展中的作用至少部分是通过它们对通过 G1 期所需的超极化信号的贡献来介导的。