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首页> 外文期刊>Journal of Neurochemistry: Offical Journal of the International Society for Neurochemistry >The FGF2-induced tanycyte proliferation involves a connexin 43 hemichannel/purinergic-dependent pathway
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The FGF2-induced tanycyte proliferation involves a connexin 43 hemichannel/purinergic-dependent pathway

机译:FGF2诱导的TANYCYTE增殖涉及Connexin 43血管癌/嘌呤能依赖性途径

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In the adult hypothalamus, the neuronal precursor role is attributed to the radial glia-like cells that line the third-ventricle (3V) wall called tanycytes. Under nutritional cues, including hypercaloric diets, tanycytes proliferate and differentiate into mature neurons that moderate body weight, suggesting that hypothalamic neurogenesis is an adaptive mechanism in response to metabolic changes. Previous studies have shown that the tanycyte glucosensing mechanism depends on connexin-43 hemichannels (Cx43 HCs), purine release, and increased intracellular free calcium ion concentration [(Ca~2+)_i] mediated by purinergic P2Y receptors. Since, Fibroblast Growth Factor 2 (FGF2) causes similar purinergic events in other cell types, we hypothesize that this pathway can be also activated by FGF2 in tanycytes to promote their proliferation. Here, we used bromo-deoxyuridine (BrdU) incorporation to evaluate if FGF2-induced tanycyte cell division is sensitive to Cx43 HC inhibition in vitro and in vivo. Immunocytochemical analyses showed that cultured tanycytes maintain the expression of in situ markers. After FGF2 exposure, tanycytic Cx43 HCs opened, enabling release of ATP to the extracellular milieu. Moreover, application of external ATP was enough to induce their cell division, which could be suppressed by Cx43 HC or P2Y1-receptor inhibitors. Similarly, in vivo experiments performed on rats by continuous infusion of FGF2 and a Cx43 HC inhibitor into the 3V, demonstrated that FGF2-induced β-tanycyte proliferation is sensitive to Cx43 HC blockade. Thus, FGF2 induced Cx43 HC opening, triggered purinergic signaling, and increased β-tanycytes proliferation, highlighting some of the molecular mechanisms involved in the cell division response of tanycyte.
机译:在成人下丘脑中,神经元前体细胞的作用归因于第三脑室(3V)壁上的放射状胶质样细胞,称为tanycytes。在营养提示下,包括高热量饮食,tanycytes增殖并分化为体重适中的成熟神经元,这表明下丘脑神经发生是对代谢变化的一种适应性机制。先前的研究表明,tanycyte葡萄糖传感机制依赖于连接蛋白-43半通道(Cx43 HCs)、嘌呤释放和嘌呤能P2Y受体介导的细胞内游离钙离子浓度增加[(Ca~2+)i]。由于成纤维细胞生长因子2(FGF2)在其他类型的细胞中引起类似的嘌呤能事件,我们假设FGF2也可以激活tanycytes中的该通路,以促进其增殖。在这里,我们使用溴脱氧尿苷(BrdU)掺入来评估FGF2诱导的tanycyte细胞分裂在体外和体内是否对Cx43 HC抑制敏感。免疫细胞化学分析显示,培养的tanycytes保持原位标记物的表达。FGF2暴露后,tanycytic Cx43 HCs开放,使ATP释放到细胞外环境。此外,外部ATP的应用足以诱导细胞分裂,而Cx43 HC或P2Y1受体抑制剂可以抑制细胞分裂。类似地,通过将FGF2和Cx43 HC抑制剂持续注入3V在大鼠上进行的体内实验表明,FGF2诱导的β-T细胞增殖对Cx43 HC阻断敏感。因此,FGF2诱导Cx43 HC开放,触发嘌呤能信号传导,增加β-tanycytes增殖,突出了tanycytes细胞分裂反应中涉及的一些分子机制。

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