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首页> 外文期刊>Molecular and cellular neurosciences >The 'SCG10-LIke Protein' SCLIP is a novel regulator of axonal branching in hippocampal neurons, unlike SCG10.
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The 'SCG10-LIke Protein' SCLIP is a novel regulator of axonal branching in hippocampal neurons, unlike SCG10.

机译:与SCG10不同,“ SCG10-Like蛋白” SCLIP是海马神经元中轴突分支的新型调节剂。

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摘要

Stathmin family phosphoproteins participate in the control of microtubule dynamics and have been proposed to be involved in the control of neuronal differentiation. We examined the biological properties and functions of SCLIP, the stathmin family protein most similar to SCG10, a widely studied and recognized neuronal differentiation marker. SCLIP, like SCG10, is present from the earliest stages of hippocampal neuron differentiation in culture at vesicle-like structures following dynamic microtubules. Its inhibition by RNA interference resulted in increased axonal branching, revealing a novel biological role for SCLIP, distinct from SCG10 whose down-regulation in the same conditions promoted growth cone expansion. The enhanced axonal branching resulted from the formation of collateral lamellar protrusions, with cytoskeleton reorganization typical of normal branching. In addition to revealing a novel function for SCLIP in axonal morphogenesis, our results demonstrate for the first time that stathmin family proteins fulfill different and complementary roles during neuronal differentiation.
机译:Stathmin家族的磷蛋白参与微管动力学的控制,并已提出参与神经元分化的控制。我们检查了SCLIP的生物学特性和功能,SCLIP是最类似于SCG10的一种Stathmin家族蛋白,SCG10是一种经过广泛研究和公认的神经元分化标记。 SCLIP和SCG10一样,是从培养的海马神经元分化的最早阶段出现的,在动态微管后的囊样结构中培养。其受RNA干扰的抑制导致轴突分支增加,从而揭示了SCLIP的新型生物学作用,这与SCG10不同,后者在相同条件下的下调促进了生长锥的扩张。轴突分支的增强是由于侧枝状片状突起的形成,而正常分支通常具有细胞骨架重组。除了揭示SCLIP在轴突形态发生中的新功能外,我们的研究结果还首次证明了stathmin家族蛋白在神经元分化过程中起着不同和互补的作用。

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