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首页> 外文期刊>Trends in Neurosciences >Location, location, location: a spatial view of neurotrophin signal transduction.
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Location, location, location: a spatial view of neurotrophin signal transduction.

机译:位置,位置,位置:神经营养蛋白信号转导的空间视图。

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摘要

Neurotrophins were originally identified as target-derived factors that regulate the survival and differentiation of innervating neurons. However, neurotrophins can also be released by presynaptic cells to stimulate postsynaptic neurons. Recent studies indicate that differences exist between the signaling pathways activated by neurotrophin stimulation of nerve terminals (retrograde signaling) and neurotrophin stimulation of cell bodies. Retrograde signaling relies on the formation of signaling endosomes, vesicles containing activated Trk receptors and their ligands. Signaling endosomes travel from the nerve terminals to remote cell bodies, where they selectively activate a novel MAP kinase, Erk5, as well as PI3 kinase, and thereby stimulate neuronal survival. The differences in the signaling pathways activated by neurotrophins, which depends on the location of stimulation, provide a mechanism by which neurons can interpret the 'where' as well as the 'what' of growth factor stimulation.
机译:神经营养蛋白最初被确定为调控神经支配神经元存活和分化的靶标衍生因子。但是,神经营养蛋白也可以被突触前细胞释放,以刺激突触后神经元。最近的研究表明,神经末梢的神经营养蛋白刺激激活的信号通路(逆行信号)与细胞体的神经营养蛋白刺激之间存在差异。逆行信号转导依赖于信号转导内体,含有活化的Trk受体及其配体的囊泡的形成。信号内体从神经末梢传播到远端细胞体,在那里它们选择性地激活新型MAP激酶,Erk5和PI3激酶,从而刺激神经元存活。由神经营养蛋白激活的信号传导途径的差异取决于刺激的位置,提供了一种机制,神经元可以通过该机制解释生长因子刺激的“何处”以及“什么”。

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