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Roles of intracellular fibroblast growth factors in neural development and functions

机译:细胞内成纤维细胞生长因子在神经发育和功能中的作用

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Fibroblast growth factors (FGFs) can be classified as secretory ( FGF1 -10 and FGF15-23) or intracellular non-secretory forms (FGF11-14). Secretory forms of FGF and their receptors are best known for their regulatory roles in cell growth, differentiation and morphogenesis in the early stages of neural development. However, the functions of intracellular FGFs remain to be explored. FGF12 and FGF14 are found to interact with voltage-gated sodium channels, and regulate the channel activity in neurons. FGF13 is expressed in primary sensory neurons, and is colocalized with sodium channels at the nodes of Ranvier along the myelinated afferent fibers. FGF13 is also expressed in cerebral cortical neurons during the late developmental stage. A recent study showed that FGF13 is a microtubule-stabilizing protein required for regulating the neuronal development in the cerebral cortex. Thus, non-secretory forms of FGF appear to have important roles in the brain, and it would be interesting to further investigate the functions of intracellular FGFs in the nervous system and in neural diseases.
机译:成纤维细胞生长因子(FGFs)可以分为分泌型(FGF1 -10和FGF15-23)或细胞内非分泌型(FGF11-14)。 FGF及其受体的分泌形式以其在神经发育早期对细胞生长,分化和形态发生的调节作用而闻名。然而,细胞内FGF的功能仍有待探索。发现FGF12和FGF14与电压门控钠通道相互作用,并调节神经元中的通道活性。 FGF13在初级感觉神经元中表达,并与钠通道在髓鞘传入纤维与Ranvier结处共定位。 FGF13在发育后期也表达在大脑皮层神经元中。最近的一项研究表明,FGF13是微管稳定蛋白,是调节大脑皮层神经元发育所必需的。因此,FGF的非分泌形式似乎在脑中具有重要作用,并且进一步研究细胞内FGF在神经系统和神经疾病中的功能将是有趣的。

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