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IGF-1介导的PI3K激活对于神经生长锥处的膜扩张调节至关重要。

PI3K activation by IGF-1 is essential for the regulation of membrane expansion at the nerve growth cone.

作者信息

Laurino Lisandro, Wang Xiaoxin X, de la Houssaye Becky A, Sosa Lucas, Dupraz Sebastian, Cáceres Alfredo, Pfenninger Karl H, Quiroga Santiago

机构信息

Departamento de Química Biológica, Facultad de Ciencias Químicas, Universidad Nacional de Córdoba y CIQUIBIC, CONICET, Córdoba 5000, Argentina.

出版信息

J Cell Sci. 2005 Aug 15;118(Pt 16):3653-62. doi: 10.1242/jcs.02490. Epub 2005 Jul 26.

Abstract

Exocytotic incorporation of plasmalemmal precursor vesicles (PPVs) into the cell surface is necessary for axonal outgrowth and is known to occur mainly at the nerve growth cone. We have demonstrated recently that plasmalemmal expansion is regulated at the growth cone by IGF-1, but not by BDNF, in a manner that is quasi independent of the neuron's perikaryon. To begin elucidating the signaling pathway by which exocytosis of the plasmalemmal precursor is regulated, we studied activation of the IRS/PI3K/Akt pathway in isolated growth cones and hippocampal neurons in culture stimulated with IGF-1 or BDNF. Our results show that IGF-1, but not BDNF, significantly and rapidly stimulates IRS/PI3K/Akt and membrane expansion. Inhibition of PI3K with Wortmannin or LY294002 blocked IGF-1-stimulated plasmalemmal expansion at the growth cones of cultured neurons. Finally, our results show that, upon stimulation with IGF-1, most active PI3K becomes associated with distal microtubules in the proximal or central domain of the growth cone. Taken together, our results suggest a critical role for IGF-1 and the IRS/PI3K/Akt pathway in the process of membrane assembly at the axonal growth cone.

摘要

将质膜前体囊泡(PPV)胞吐融合到细胞表面是轴突生长所必需的,并且已知主要发生在神经生长锥。我们最近证明,在生长锥处,质膜扩张受IGF-1调节,而非BDNF,其调节方式几乎独立于神经元胞体。为了开始阐明质膜前体胞吐作用的调控信号通路,我们研究了在分离的生长锥和培养的海马神经元中,用IGF-1或BDNF刺激后IRS/PI3K/Akt通路的激活情况。我们的结果表明,IGF-1而非BDNF能显著且快速地刺激IRS/PI3K/Akt和膜扩张。用渥曼青霉素或LY294002抑制PI3K可阻断培养神经元生长锥处IGF-1刺激的质膜扩张。最后,我们的结果表明,在IGF-1刺激下,大多数活性PI3K与生长锥近端或中央区域的远端微管相关联。综上所述,我们的结果表明IGF-1和IRS/PI3K/Akt通路在轴突生长锥的膜组装过程中起关键作用。

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