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首页> 外文期刊>Journal of Neurochemistry: Offical Journal of the International Society for Neurochemistry >NGF activates the phosphorylation of MAP1B by GSK3beta through the TrkA receptor and not the p75(NTR) receptor.
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NGF activates the phosphorylation of MAP1B by GSK3beta through the TrkA receptor and not the p75(NTR) receptor.

机译:NGF通过TrkA受体而不是p75(NTR)受体激活GSK3beta激活的MAP1B磷酸化。

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We have recently shown that nerve growth factor (NGF) induces the phosphorylation of the microtubule-associated protein 1B (MAP1B) by activating the serine/threonine kinase glycogen synthase kinase 3beta (GSK3beta) in a spatio-temporal pattern in PC12 cells that correlates tightly with neurite growth. PC12 cells express two types of membrane receptor for NGF: TrkA receptors and p75NTR receptors, and it was not clear from our studies which receptor was responsible. We show here that brain-derived neurotrophic factor, which activates p75NTR but not TrkA receptors, does not stimulate GSK3beta phosphorylation of MAP1B in PC12 cells. Similarly, NGF fails to activate GSK3beta phosphorylation of MAP1B in PC12 cells that lack TrkA receptors but express p75NTR receptors (PC12 nnr). Chick ciliary ganglion neurons in culture lack TrkA receptors but express p75NTR and also fail to show NGF-dependent GSK3beta phosphorylation of MAP1B, whereas in rat superior cervical ganglion neurons in culture, NGF activation of TrkA receptors elicits GSK3beta phosphorylation of MAP1B. Finally, inhibition of TrkA receptor tyrosine kinase activity in PC12 cells and superior cervical ganglion neurons with K252a potently and dose-dependently inhibits neurite elongation while concomitantly blocking GSK3beta phosphorylation of MAP1B. These results suggest that the activation of GSK3beta by NGF is mediated through the TrkA tyrosine kinase receptor and not through p75NTR receptors.
机译:我们最近发现神经生长因子(NGF)通过以时空模式激活PC12细胞中紧密相关的丝氨酸/苏氨酸激酶糖原合酶激酶3beta(GSK3beta)来诱导微管相关蛋白1B(MAP1B)的磷酸化神经突生长。 PC12细胞表达两种类型的NGF膜受体:TrkA受体和p75NTR受体,从我们的研究中尚不清楚哪个受体起作用。我们在这里显示,脑源性神经营养因子激活p75NTR而不激活TrkA受体,不会刺激PC12细胞中MAP1B的GSK3beta磷酸化。同样,NGF无法激活PC12细胞(缺少TrkA受体但表达p75NTR受体(PC12 nnr))中MAP1B的GSK3beta磷酸化。培养物中的小睫状神经节神经元缺乏TrkA受体,但表达p75NTR,也无法显示MAP1B的NGF依赖性GSK3beta磷酸化,而在培养的大鼠上颈神经节神经元中,TrkA受体的NGF活化引起MAP1B的GSK3beta磷酸化。最后,用K252a抑制PC12细胞和上颈神经节神经元中的TrkA受体酪氨酸激酶活性有效且剂量依赖性地抑制了神经突的伸长,并同时阻止了MAP1B的GSK3beta磷酸化。这些结果表明,NGF对GSK3beta的激活是通过TrkA酪氨酸激酶受体而非p75NTR受体介导的。

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