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Novel Kv3 glycoforms differentially expressed in adult mammalian brain contain sialylated N-glycans.

机译:在成年哺乳动物脑中差异表达的新型Kv3糖型含有唾液酸化的N-聚糖。

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The N-glycan pool of mammalian brain contains remarkably high levels of sialylated N-glycans. This study provides the first evidence that voltage-gated K+ channels Kv3.1, Kv3.3, and Kv3.4, possess distinct sialylated N-glycan structures throughout the central nervous system of the adult rat. Electrophoretic migration patterns of Kv3.1, Kv3.3, and Kv3.4 glycoproteins from spinal cord, hypothalamus, thalamus, cerebral cortex, hippocampus, and cerebellum membranes digested with glycosidases were used to identify the various glycoforms. Differences in the migration of Kv3 proteins were attributed to the desialylated N-glycans. Expression levels of the Kv3 proteins were highest in cerebellum, whereas those of Kv3.1 and Kv3.3 were much lower in the other 5 regions. The lowest level of Kv3.1 was expressed in the hypothalamus, whereas the lowest levels of Kv3.3 were expressed in both thalamus and hypothalamus. The other regions expressed intermediate levels of Kv3.3, with spinal cord expressing the highest. The expression level of Kv3.4 in the hippocampus was slightly lower than that in cerebellum, and was closely followed by the other 4 regions, with spinal cord expressing the lowest level. We suggest that novel Kv3 glycoforms may endow differences in channel function and expression among regions throughout the central nervous system.
机译:哺乳动物脑中的N-聚糖池含有大量的唾液酸化N-聚糖。这项研究提供了第一个证据,即电压门控的K +通道Kv3.1,Kv3.3和Kv3.4在成年大鼠的整个中枢神经系统中拥有独特的唾液酸化N-聚糖结构。使用糖苷酶消化的脊髓,下丘脑,丘脑,大脑皮层,海马和小脑膜的Kv3.1,Kv3.3和Kv3.4糖蛋白的电泳迁移模式可用于鉴定各种糖型。 Kv3蛋白迁移的差异归因于脱唾液酸化的N-聚糖。 Kv3蛋白的表达水平在小脑中最高,而Kv3.1和Kv3.3的表达水平在其他5个区域则低得多。 Kv3.1的最低水平在下丘脑中表达,而Kv3.3的最低水平在丘脑和下丘脑中表达。其他区域表达中等水平的Kv3.3,其中脊髓表达最高。海马中Kv3.4的表达水平略低于小脑,其余四个区域紧随其后,其中脊髓表达最低。我们建议新型的Kv3糖型可能赋予整个中枢神经系统区域之间通道功能和表达的差异。

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