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首页> 外文期刊>The Journal of biological chemistry >HNK-1 Epitope-carrying Tenascin-C Spliced Variant Regulates the Proliferation of Mouse Embryonic Neural Stem Cells
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HNK-1 Epitope-carrying Tenascin-C Spliced Variant Regulates the Proliferation of Mouse Embryonic Neural Stem Cells

机译:HNK-1携带的Tenascin-C拼接变体调节小鼠胚胎神经干细胞的增殖

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Neural stem cells (NSCs) possess high proliferative potential and the capacity for self-renewal with retention of multipotency to differentiate into neuronal and glial cells. NSCs are the source for neurogenesis during central nervous system development from fetal and adult stages. Although the human natural killer-1 (HNK-1) carbohydrate epitope is expressed predominantly in the nervous system and involved in intercellular adhesion, cell migration, and synaptic plasticity, the expression patterns and functional roles of HNK-1-containing glycoconjugates in NSCs have not been fully recognized. We found that HNK-1 was expressed in embryonic mouse NSCs and that this expression was lost during the process of differentiation. Based on proteomics analysis, it was revealed that the HNK-1 epitopes were almost exclusively displayed on an extracellular matrix protein, tenascin-C (TNC), in the mouse embryonic NSCs. Furthermore, the HNK-1 epitope was found to be present only on the largest isoform of the TNC molecules. In addition, the expression of HNK-1 was dependent on expression of the largest TNC variant but not by enzymes involved in the biosynthesis of HNK-1. By knocking down HNK-1 sulfotransferase or TNC by small interfering RNA, we further demonstrated that HNK-1 on TNC was involved in the proliferation of NSCs via modulation of the expression level of the epidermal growth factor receptor. Our finding provides insights into the function of HNK-1 carbohydrate epitopes in NSCs to maintain stemness during neural development.
机译:神经干细胞(NSCs)具有高增殖潜力和自我更新能力,保留多能量以区分为神经元和胶质细胞。 NSCs是胎儿和成人阶段中枢神经系统发展期间神经发生的源。虽然人类天然杀手-1(HNK-1)碳水化合物表位主要在神经系统中表达并参与细胞间粘附,细胞迁移和突触塑性,但NSC中的HNK-1的含有HNK-1的糖缀合物的表达模式和功能作用具有没有得到充分认可。我们发现HNK-1在胚胎小鼠NSC中表达,并且在分化过程中丢失了这种表达。基于蛋白质组学分析,揭示了HNK-1表位在小鼠胚胎NSC中的细胞外基质蛋白(TNC)上几乎完全显示在细胞外基质蛋白上。此外,发现HNK-1表位仅存在于TNC分子的最大同种型上。此外,HNK-1的表达依赖于最大TNC变体的表达,而不是由参与HNK-1的生物合成的酶。通过小干扰RNA敲除HNK-1磺基转移酶或TNC,我们进一步证明了TNC上的HNK-1通过切片生长因子受体的表达水平涉及NSCs的增殖。我们的发现提供了对NSCs中HNK-1碳水化合物表位功能的见解,以在神经发育期间保持茎。

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