首页> 外文期刊>Neuroscience: An International Journal under the Editorial Direction of IBRO >Regulation of a site-specific phosphorylation of the microtubule-associated protein 2 during the development of cultured neurons.
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Regulation of a site-specific phosphorylation of the microtubule-associated protein 2 during the development of cultured neurons.

机译:在培养的神经元发育过程中微管相关蛋白2的位点特异性磷酸化的调节。

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摘要

The phosphorylation state of cytoskeletal proteins, including certain microtubule-associated proteins, may influence the development and plasticity of axons and dendrites in mammalian neuron in response to appropriate extracellular stimuli. In particular, high molecular weight microtubule-associated protein 2, has been implicated in dendrite growth and synaptic plasticity and is thought to be modulated by phosphorylation and dephosphorylation. We have previously determined that threonines 1620/1623 on the microtubule-associated protein 2 molecule become phosphorylated in vivo and are targets for proline-directed protein kinases in vitro. Using the phosphorylated site-specific antibody 305, we now report the decreased phosphorylation state of high molecular weight microtubule-associated protein 2 during the development of cultured cerebellar granule neurons. Phosphorylation of high molecular weight microtubule-associated protein 2 at this site is significantly inhibited by lithium in short-term cultured neurons, which suggests the implication of glycogen synthase kinase-3. In long-term cultured neurons, it is also partially inhibited by PD098059, an inhibitor of extracellular signal-regulated protein kinase activation, which indicates an additional contribution of this kinase to high molecular weight microtubule-associated protein 2 phosphorylation at this stage. Both in short-term and long-term cultured neurons, okadaic acid augments high molecular weight microtubule-associated protein 2 phosphorylation at this site through the inhibition of protein phosphatases 1 and/or 2A. Finally, glutamate receptor activation leads to a dephosphorylation of high molecular weight microtubule-associated protein 2 at this site which can also be effectively prevented by okadaic acid. These results are consistent with the participation of glycogen synthase kinase-3, extracellular signal-regulated protein kinases and protein phosphatases 1 and 2A, in the regulation of microtubule-associated protein 2 phosphorylation within living neurons, which may be modulated by extracellular signals like the neurotransmitter glutamate.
机译:细胞骨架蛋白(包括某些与微管相关的蛋白)的磷酸化状态可能会影响哺乳动物神经元中轴突和树突的发育和可塑性,以响应适当的细胞外刺激。特别地,高分子量微管相关蛋白2与树突生长和突触可塑性有关,并且被认为是通过磷酸化和去磷酸化来调节的。我们先前已经确定,微管相关蛋白2分子上的苏氨酸1620/1623在体内被磷酸化,并且是体外脯氨酸定向蛋白激酶的靶标。使用磷酸化的位点特异性抗体305,我们现在报告在培养的小脑颗粒神经元发育过程中高分子量微管相关蛋白2的磷酸化状态降低。短期培养的神经元中的锂显着抑制了高分子量微管相关蛋白2在此位点的磷酸化,这暗示了糖原合酶激酶-3的含义。在长期培养的神经元中,PD098059也可部分抑制它,PD098059是一种细胞外信号调节蛋白激酶激活的抑制剂,表明该激酶在此阶段对高分子量微管相关蛋白2磷酸化的额外贡献。在短期和长期培养的神经元中,冈田酸都通过抑制蛋白磷酸酶1和/或2A增强了该部位与高分子量微管相关的蛋白2的磷酸化。最后,谷氨酸受体的活化导致该位点的高分子量微管相关蛋白2的去磷酸化,这也可以通过冈田酸有效地防止。这些结果与糖原合酶激酶3,细胞外信号调节的蛋白激酶以及蛋白磷酸酶1和2A参与活神经元内微管相关蛋白2磷酸化的调节相一致,这可能受到细胞外信号如神经递质谷氨酸。

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