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首页> 外文期刊>Journal of Anatomy >Kir4.1 expression by astrocytes and oligodendrocytes in CNS white matter: a developmental study in the rat optic nerve.
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Kir4.1 expression by astrocytes and oligodendrocytes in CNS white matter: a developmental study in the rat optic nerve.

机译:中枢神经系统白质中星形胶质细胞和少突胶质细胞的Kir4.1表达:在大鼠视神经中的发育研究。

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Deletion studies in transgenic mice indicate that the potassium inward rectifying channel Kir4.1 is crucial for oligodendrocyte differentiation and has a special role in regulation of extracellular potassium (K(+)), a major function of astrocytes. However, there are conflicting reports on whether Kir4.1 is expressed by white matter astrocytes and oligodendrocytes, raising doubts over its functions. Here, we have examined Kir4.1 expression in astrocytes and oligodendrocytes of the rat optic nerve, a typical central nervous system white matter tract. Single and double immunofluorescence labelling was performed on frozen sections from optic nerves aged postnatal day (P)5, 10, 15, 20 and adult, using anti-Kir4.1 antibodies and the glia-specific antibodies glial fibrillary acidic protein (GFAP, astrocytes), carbonic anhydrase II (CAII, oligodendrocyte somata and processes) and myelin basic protein (MBP, oligodendrocyte myelin sheaths). The results demonstrate Kir4.1 expression in rows of glial cells as early as P5, and this pattern persisted throughout development and into adulthood, consistent with early expression of Kir4.1 on developing oligodendrocytes. Clear co-expression of Kir4.1 and GFAP is first evident at P10 and increases to adult levels by P15 and P20, which correlates with the development of K(+) regulation between P15 and P20. Astrocyte expression of Kir4.1 is localized to perivascular end-feet and fine processes within the fascicles of myelinated axons, consistent with a role in K(+) spatial buffering between nodes of Ranvier and blood vessels. By contrast, Kir4.1 is concentrated in the cell bodies of oligodendrocytes, and there is no apparent co-expression with MBP(+) myelin sheaths, suggesting oligodendroglial Kir4.1 channels are not involved in K(+) regulation. The results support roles for Kir4.1 in both oligodendrocyte differentiation and K(+) regulation by astrocytes.
机译:在转基因小鼠中的缺失研究表明,钾内向整流通道Kir4.1对于少突胶质细胞的分化至关重要,并且在星形胶质细胞的主要功能细胞外钾(K(+))的调节中具有特殊作用。但是,关于Kir4.1是否由白质星形胶质细胞和少突胶质细胞表达的报道相互矛盾,这使人们对其功能产生怀疑。在这里,我们检查了大鼠视神经(典型的中枢神经系统白质束)的星形胶质细胞和少突胶质细胞中Kir4.1的表达。使用抗Kir4.1抗体和神经胶质特异性抗体神经胶质纤维酸性蛋白(GFAP,星形胶质细胞)在出生后第(P)5、10、15、20和成人年龄的视神经冷冻切片上进行单次和两次免疫荧光标记),碳酸酐酶II(CAII,少突胶质细胞和过程)和髓磷脂碱性蛋白(MBP,少突胶质髓鞘)。结果表明,早在P5时,神经胶质细胞中Kir4.1的表达就一直存在,这种模式在整个发育过程中一直持续到成年,这与发育中的少突胶质细胞上Kir4.1的早期表达相一致。 Kir4.1和GFAP的明确共表达首先在P10出现,并在P15和P20增加到成人水平,这与P15和P20之间的K(+)调节的发展相关。 Kir4.1的星形胶质细胞表达局限于髓鞘轴突束内的血管周围末端和细小过程,与Ranvier和血管结之间的K(+)空间缓冲作用一致。相比之下,Kir4.1集中在少突胶质细胞的细胞体中,与MBP(+)髓鞘没有明显的共表达,表明少突胶质Kir4.1通道不参与K(+)调节。结果支持星形胶质细胞在少突胶质细胞分化和K(+)调节中的Kir4.1作用。

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