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首页> 外文期刊>Biochemical and Biophysical Research Communications >Extracellular Nm23H1 stimulates neurite outgrowth from dorsal root ganglia neurons in vitro independently of nerve growth factor supplementation or its nucleoside diphosphate kinase activity.
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Extracellular Nm23H1 stimulates neurite outgrowth from dorsal root ganglia neurons in vitro independently of nerve growth factor supplementation or its nucleoside diphosphate kinase activity.

机译:细胞外Nm23H1可以在体外刺激背根神经节神经元的神经突生长,而与神经生长因子的补充或其核苷二磷酸激酶活性无关。

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摘要

The nucleoside diphosphate (NDP) kinase, Nm23H1, is a highly expressed during neuronal development, whilst induced over-expression in neuronal cells results in increased neurite outgrowth. Extracellular Nm23H1 affects the survival, proliferation and differentiation of non-neuronal cells. Therefore, this study has examined whether extracellular Nm23H1 regulates nerve growth. We have immobilised recombinant Nm23H1 proteins to defined locations of culture plates, which were then seeded with explants of embryonic chick dorsal root ganglia (DRG) or dissociated adult rat DRG neurons. The substratum-bound extracellular Nm23H1 was stimulatory for neurite outgrowth from chick DRG explants in a concentration-dependent manner. On high concentrations of Nm23H1, chick DRG neurite outgrowth was extensive and effectively limited to the location of the Nm23H1, i.e. neuronal growth cones turned away from adjacent collagen-coated substrata. Nm23H1-coated substrata also significantly enhanced rat DRG neuronal cell adhesion and neurite outgrowth in comparison to collagen-coated substrata. These effects were independent of NGF supplementation. Recombinant Nm23H1 (H118F), which does not possess NDP kinase activity, exhibited the same activity as the wild-type protein. Hence, a novel neuro-stimulatory activity for extracellular Nm23H1 has been identified in vitro, which may function in developing neuronal systems.
机译:二磷酸核苷(NDP)激酶Nm23H1在神经元发育过程中高度表达,而在神经元细胞中诱导的过表达会导致神经突增生。细胞外Nm23H1影响非神经元细胞的存活,增殖和分化。因此,本研究检查了细胞外Nm23H1是否调节神经生长。我们已将重组Nm23H1蛋白固定在培养板的指定位置,然后将其植入胚胎小鸡背根神经节(DRG)或离体成年大鼠DRG神经元的外植体。基质下结合的细胞外Nm23H1以浓度依赖的方式刺激小鸡DRG外植体的神经突生长。在高浓度的Nm23H1上,鸡的DRG神经突向外生长广泛,并有效地限制在Nm23H1的位置,即神经元生长锥远离相邻的胶原蛋白涂层。与胶原包被的基质相比,Nm23H1包被的基质还显着增强了大鼠DRG神经元细胞的粘附和神经突的生长。这些作用独立于NGF补充。不具有NDP激酶活性的重组Nm23H1(H118F)表现出与野生型蛋白相同的活性。因此,已经在体外鉴定出了针对细胞外Nm23H1的新型神经刺激活性,其可能在发育中的神经元系统中起作用。

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