首页> 外文期刊>The European Journal of Neuroscience >Contactin regulates the current density and axonal expression of tetrodotoxin-resistant but not tetrodotoxin-sensitive sodium channels in DRG neurons.
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Contactin regulates the current density and axonal expression of tetrodotoxin-resistant but not tetrodotoxin-sensitive sodium channels in DRG neurons.

机译:Contactin调节DRG神经元中抗河豚毒素但不对河豚毒素敏感的钠通道的电流密度和轴突表达。

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Abstract Contactin, a glycosyl-phosphatidylinositol (GPI)-anchored predominantly neuronal cell surface glycoprotein, associates with sodium channels Na(v)1.2, Na(v)1.3 and Na(v)1.9, and enhances the density of these channels on the plasma membrane in mammalian expression systems. However, a detailed functional analysis of these interactions and of untested putative interactions with other sodium channel isoforms in mammalian neuronal cells has not been carried out. We examined the expression and function of sodium channels in small-diameter dorsal root ganglion (DRG) neurons from contactin-deficient (CNTN(-/-)) mice, compared to CNTN(+/+) litter mates. Na(v)1.9 is preferentially expressed in isolectin B4 (IB4)-positive neurons and thus we used this marker to subdivide small-diameter DRG neurons. Using whole-cell patch-clamp recording, we observed a greater than two-fold reduction of tetrodotoxin-resistant (TTX-R) Na(v)1.8 and Na(v)1.9 current densities in IB4(+) DRG neurons cultured from CNTN(-/-) vs. CNTN(+/+) mice. Current densities for TTX-sensitive (TTX-S) sodium channels were unaffected. Contactin's effect was selective for IB4(+) neurons as current densities for both TTX-R and TTX-S channels were not significantly different in IB4(-) DRG neurons from the two genotypes. Consistent with these results, we have demonstrated a reduction in Na(v)1.8 and Na(v)1.9 immunostaining on peripherin-positive unmyelinated axons in sciatic nerves from CNTN(-/-) mice but detected no changes in the expression for the two major TTX-S channels Na(v)1.6 and Na(v)1.7. These data provide evidence of a role for contactin in selectively regulating the cell surface expression and current densities of TTX-R but not TTX-S Na(+) channel isoforms in nociceptive DRG neurons; this regulation could modulate the membrane properties and excitability of these neurons.
机译:摘要Contactin是一种糖基磷脂酰肌醇(GPI)锚定的神经细胞表面糖蛋白,与钠通道Na(v)1.2,Na(v)1.3和Na(v)1.9缔合,并增强血浆上这些通道的密度哺乳动物表达系统中的膜。但是,尚未对哺乳动物神经元细胞中的这些相互作用以及与其他钠通道同工型的未经测试的假定相互作用进行详细的功能分析。我们检查了与CNTN(+ / +)窝伴侣相比,来自缺乏接触素的(CNTN(-/-))小鼠的小直径背根神经节(DRG)神经元中钠通道的表达和功能。 Na(v)1.9优先在isolectin B4(IB4)阳性神经元中表达,因此我们用该标记物细分了小直径DRG神经元。使用全细胞膜片钳记录,我们观察到从CNTN培养的IB4(+)DRG神经元中的河豚毒素抗性(TTX-R)Na(v)1.8和Na(v)1.9电流密度降低了两倍以上(-/-)vs. CNTN(+ / +)小鼠。 TTX敏感(TTX-S)钠通道的电流密度不受影响。由于两种基因型的IB4(-)DRG神经元中TTX-R和TTX-S通道的电流密度均无显着差异,因此Contactin对IB4(+)神经元具有选择性。与这些结果一致,我们证明了CNTN(-/-)小鼠坐骨神经中外周蛋白阳性未髓鞘轴突的Na(v)1.8和Na(v)1.9免疫染色降低,但未检测到两者的表达变化主要的TTX-S频道Na(v)1.6和Na(v)1.7。这些数据提供了接触素在选择性调节伤害性DRG神经元中TTX-R而不是TTX-S Na(+)通道亚型的细胞表面表达和电流密度中的作用的证据。这种调节可以调节这些神经元的膜特性和兴奋性。

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