首页> 外文期刊>The Journal of Neuroscience: The Official Journal of the Society for Neuroscience >Caltubin, a novel molluscan tubulin-interacting protein, promotes axonal growth and attenuates axonal degeneration of rodent neurons.
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Caltubin, a novel molluscan tubulin-interacting protein, promotes axonal growth and attenuates axonal degeneration of rodent neurons.

机译:Caltubin是一种新型的软体动物微管蛋白相互作用蛋白,可促进轴突的生长并减轻啮齿动物神经元的轴突变性。

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摘要

Axotomized central neurons of most invertebrate species demonstrate a strong regenerative capacity, and as such may provide valuable molecular insights and new tools to promote axonal regeneration in injured mammalian neurons. In this study, we identified a novel molluscan protein, caltubin, ubiquitously expressed in central neurons of Lymnaea stagnalis and locally synthesized in regenerating neurites. Reduction of caltubin levels by gene silencing inhibits the outgrowth and regenerative ability of adult Lymnaea neurons and decreases local alpha- and beta-tubulin levels in neurites. Caltubin binds to alpha- and/or beta-tubulin in both Lymnaea and rodent neurons. Expression of caltubin in PC12 cells and mouse cortical neurons promotes NGF-induced axonal outgrowth and attenuates axonal retraction after injury. This is the first study illustrating that a xenoprotein can enhance outgrowth and prevent degeneration of injured mammalian neurons. These results may open up new avenues in molecular repair strategies through the insertion of molecular components of invertebrate regenerative pathways into mammalian neurons.
机译:大多数无脊椎动物物种的被轴突切除的中枢神经元具有很强的再生能力,因此可提供有价值的分子见解和新的工具来促进受损哺乳动物神经元的轴突再生。在这项研究中,我们确定了一种新型的软体动物蛋白,钙调蛋白,在胸腺中枢神经元中普遍表达,并在再生神经突中局部合成。通过基因沉默降低钙调蛋白水平抑制成年Lymnaea神经元的生长和再生能力,并降低神经突中局部α-和β-微管蛋白的水平。钙调蛋白与淋巴瘤和啮齿动物神经元中的α-和/或β-微管蛋白结合。钙调蛋白在PC12细胞和小鼠皮质神经元中的表达可促进NGF诱导的轴突生长并减轻损伤后的轴突收缩。这是第一项研究,表明异种蛋白可增强生长并防止受伤的哺乳动物神经元变性。这些结果可能通过将无脊椎动物再生途径的分子成分插入哺乳动物神经元中,从而开辟了分子修复策略的新途径。

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