Wooltorton Julian R A, Gaboyard Sophie, Hurley Karen M, Price Steven D, Garcia Jasmine L, Zhong Meng, Lysakowski Anna, Eatock Ruth Anne
Department of Neuroscience, Baylor College of Medicine, Houston, TX, USA.
J Neurophysiol. 2007 Feb;97(2):1684-704. doi: 10.1152/jn.00649.2006. Epub 2006 Oct 25.
Two kinds of sodium current (I(Na)) have been separately reported in hair cells of the immature rodent utricle, a vestibular organ. We show that rat utricular hair cells express one or the other current depending on age (between postnatal days 0 and 22, P0-P22), hair cell type (I, II, or immature), and epithelial zone (striola vs. extrastriola). The properties of these two currents, or a mix, can account for descriptions of I(Na) in hair cells from other reports. The patterns of Na channel expression during development suggest a role in establishing the distinct synapses of vestibular hair cells of different type and epithelial zone. All type I hair cells expressed I(Na,1), a TTX-insensitive current with a very negative voltage range of inactivation (midpoint: -94 mV). I(Na,2) was TTX sensitive and had less negative voltage ranges of activation and inactivation (inactivation midpoint: -72 mV). I(Na,1) dominated in the striola at all ages, but current density fell by two-thirds after the first postnatal week. I(Na,2) was expressed by 60% of hair cells in the extrastriola in the first week, then disappeared. In the third week, all type I cells and about half of type II cells had I(Na,1); the remaining cells lacked sodium current. I(Na,1) is probably carried by Na(V)1.5 subunits based on biophysical and pharmacological properties, mRNA expression, and immunoreactivity. Na(V)1.5 was also localized to calyx endings on type I hair cells. Several TTX-sensitive subunits are candidates for I(Na,2).
在未成熟啮齿动物前庭器官椭圆囊的毛细胞中,已分别报道了两种钠电流(I(Na))。我们发现,大鼠椭圆囊毛细胞表达哪种电流取决于年龄(出生后0至22天,P0 - P22)、毛细胞类型(I型、II型或未成熟型)以及上皮区域(纹状区与纹状外区)。这两种电流或其混合形式的特性,可以解释其他报道中毛细胞I(Na)的描述。发育过程中钠通道的表达模式表明,其在建立不同类型和上皮区域的前庭毛细胞独特突触中发挥作用。所有I型毛细胞均表达I(Na,1),这是一种对河豚毒素(TTX)不敏感的电流,其失活电压范围非常负(中点:-94 mV)。I(Na,2)对TTX敏感,其激活和失活的电压范围较不那么负(失活中点:-72 mV)。I(Na,1)在所有年龄段的纹状区均占主导,但出生后第一周后电流密度下降了三分之二。I(Na,2)在第一周时由纹状外区60%的毛细胞表达,随后消失。在第三周,所有I型细胞和约一半的II型细胞具有I(Na,1);其余细胞缺乏钠电流。基于生物物理和药理学特性、mRNA表达及免疫反应性,I(Na,1)可能由Na(V)1.5亚基携带。Na(V)1.5也定位于I型毛细胞的杯状终末。几种对TTX敏感的亚基是I(Na,2)的候选者。