Control of dendritic arborization by the phosphoinositide-3'-kinase-Akt-mammalian target of rapamycin pathway

被引:471
作者
Jaworski, J
Spangler, S
Seeburg, DP
Hoogenraad, CC
Sheng, M
机构
[1] MIT, RIKEN, Inst Phys & Chem Res, Picower Inst Learning & Memory, Cambridge, MA 02139 USA
[2] MIT, Neurosci Res Ctr, Cambridge, MA 02139 USA
[3] MIT, Howard Hughes Med Inst, Cambridge, MA 02139 USA
关键词
phosphoinositide; PTEN; rapamycin; dendrite development; dendrite branching; Ras;
D O I
10.1523/JNEUROSCI.2270-05.2005
中图分类号
Q189 [神经科学];
学科分类号
071006 ;
摘要
The molecular mechanisms that determine the size and complexity of the neuronal dendritic tree are unclear. Here, we show that the phosphoinositide-3' kinase (PI3K)-Akt-mammalian target of rapamycin ( mTOR) signaling pathway promotes the growth and branching of dendrites in cultured hippocampal neurons. Constitutively active mutants of Ras, PI3K, and Akt, or RNA interference (RNAi) knockdown of lipid phosphatase PTEN ( phosphatase and tensin homolog deleted on chromosome Ten), induced growth and elaboration of dendrites that was blocked by mTOR inhibitor rapamycin and/or by overexpression of eIF-4E binding protein 1 (4E-BP1), which inhibits translation of 5' capped mRNAs. The effect of PI3K on dendrites was lost in more mature neurons (> 14 d in vitro). Dendritic complexity was reduced by inhibition of PI3K and by RNAi knockdown of mTOR or p70 ribosomal S6 kinase (p70S6K, an effector of mTOR). A rapamycin-resistant mutant of mTOR "rescued" the morphogenetic effects of PI3K in the presence of rapamycin. By regulating global and/or local protein translation, and as a convergence point for multiple signaling pathways, mTOR could play a central role in the control of dendrite growth and branching during development and in response to activity.
引用
收藏
页码:11300 / 11312
页数:13
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