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首页> 外文期刊>American Journal of Physiology >Epithelial Na + sodium channels in magnocellular cells of the rat supraoptic and paraventricular nuclei
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Epithelial Na + sodium channels in magnocellular cells of the rat supraoptic and paraventricular nuclei

机译:大鼠视上和脑室旁核大细胞中上皮Na +钠通道

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The epithelial Na + channels (ENaCs) are present in kidney and contribute to Na + and water homeostasis. All three ENaC subunits (α, β, and γ) were demonstrated in the cardiovascular regulatory centers of the rat brain, including the magnocellular neurons (MNCs) in the supraoptic nucleus (SON) and the paraventricular nucleus (PVN). However, the functional significance of ENaCs in vasopressin (VP) and oxytocin (OT) synthesizing MNCs is completely unknown. In this study, we show with immunocytochemical double-labeling that the α-ENaC is colocalized with either VP or OT in MNCs in the SON and PVN. In addition, parvocellular neurons in the dorsal, ventrolateral, and posterior subregions of the PVN (not immunoreactive to VP or OT) are also immunoreactive for α-ENaC. In contrast, immunoreactivity to β- and γ-ENaC is colocalized with VP alone within the MNCs. Furthermore, immunoreactivity for a known target for ENaC expression, the mineralcorticoid receptor (MR), is colocalized with both VP and OT in MNCs. Using single-cell RT-PCR, we detected mRNA for all three ENaC subunits and MR in cDNA libraries derived from single MNCs. In whole cell voltage clamp recordings, application of the ENaC blocker benzamil reversibly reduced a steady-state inward current and decreased cell membrane conductance approximately twofold. Finally, benzamil caused membrane hyperpolarization in a majority of VP and about one-half of OT neurons in both spontaneously firing and quiet cells. These results strongly suggest the presence of functional ENaCs that may affect the firing patterns of MNCs, which ultimately control the secretion of VP and OT.
机译:肾脏中存在上皮Na +通道(ENaCs),有助于Na +和水的体内稳态。在大鼠脑的心血管调节中心都证实了这三个ENaC亚基(α,β和γ),包括视上核(SON)和室旁核(PVN)中的大细胞神经元(MNC)。但是,ENaCs在加压素(VP)和催产素(OT)合成MNC中的功能意义是完全未知的。在这项研究中,我们用免疫细胞化学双标记法显示在SON和PVN的MNC中,α-ENaC与VP或OT共定位。此外,PVN背侧,腹侧和后部子区域的小细胞神经元(对VP或OT不具免疫反应性)对α-ENaC也具有免疫反应性。相反,在MNC中,对β-和γ-ENaC的免疫反应性仅与VP共定位。此外,针对ENaC表达的已知靶标(盐皮质激素受体(MR))的免疫反应性与MNC中的VP和OT共同定位。使用单细胞RT-PCR,我们从单个MNC衍生的cDNA文库中检测到所有三个ENaC亚基和MR的mRNA。在全细胞电压钳记录中,使用ENaC阻滞剂苯扎米尔可逆地降低稳态内向电流并使细胞膜电导降低约两倍。最后,苯扎米尔在自发放电和安静细胞中引起大部分VP和约一半OT神经元的膜超极化。这些结果强烈暗示功能性ENaC的存在可能会影响MNC的触发模式,从而最终控制VP和OT的分泌。

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