Baroni Debora, Picco Cristiana, Barbieri Raffaella, Moran Oscar
Istituto di Biofisica, CNR, 16149, Genoa, Italy.
Biol Cell. 2014 Jan;106(1):13-29. doi: 10.1111/boc.201300040. Epub 2013 Dec 4.
Voltage-dependent sodium channels are membrane proteins essential for cell excitability. They are composed by a pore-forming α-subunit and one or more β subunits. Nine α subunit and five β subunit isoforms have been identified in mammals: β1, its splice variant β1B, β2, β3 and β4. Although they do not form the ion channel pore, β subunits modulate both function as well as expression of sodium channels on cell membrane.
To investigate the role of β1 subunit on the modulation of sodium channel expression, we silenced this auxiliary subunit with specific antisense oligonucleotides (ASONs) in two rat cell lines, the GH3 and the H9C2, from neuro-ectoderm and cardiac myocyte origin, respectively. Treatment of cells with ASONs determined a reduction of about 50% of β1 subunit mRNA and protein expression in both cell lines. We found that this level of β1 subunit silencing resulted in an overall decrease of α subunit mRNA, protein expression and a decrease of sodium current density, without altering significantly the voltage-dependent and kinetic properties of the currents. In GH3 cells, the β1 subunit silencing reduced the expression of Nav1.1, Nav1.3 and Nav1.6 isoforms, whereas the Nav 1.2 isoform expression remained unaltered. The expression of the only α subunit present in H9C2 cells, the Nav1.5, was also reduced by β1 subunit silencing.
These results indicate that the β1 subunit may exert an isoform-specific fine-tuned modulation of sodium channel expression.
电压依赖性钠通道是细胞兴奋性所必需的膜蛋白。它们由一个形成孔道的α亚基和一个或多个β亚基组成。在哺乳动物中已鉴定出九种α亚基和五种β亚基异构体:β1及其剪接变体β1B、β2、β3和β4。虽然β亚基不形成离子通道孔,但它们可调节细胞膜上钠通道的功能和表达。
为了研究β1亚基在调节钠通道表达中的作用,我们分别在两种大鼠细胞系GH3和H9C2中用特异性反义寡核苷酸(ASONs)沉默了这个辅助亚基,这两种细胞系分别起源于神经外胚层和心肌细胞。用ASONs处理细胞导致两种细胞系中β1亚基mRNA和蛋白表达均降低约50%。我们发现,这种β1亚基沉默水平导致α亚基mRNA、蛋白表达总体下降以及钠电流密度降低,而电流的电压依赖性和动力学特性没有明显改变。在GH3细胞中,β1亚基沉默降低了Nav1.1、Nav1.3和Nav1.6异构体的表达,而Nav 1.2异构体表达未改变。H9C2细胞中唯一存在的α亚基Nav1.5的表达也因β1亚基沉默而降低。
这些结果表明,β1亚基可能对钠通道表达发挥异构体特异性的微调调节作用。