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首页> 外文期刊>Journal of Neurochemistry: Offical Journal of the International Society for Neurochemistry >A kinase insert isoform of rat TrkA supports nerve growth factor-dependent cell survival but not neurite outgrowth.
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A kinase insert isoform of rat TrkA supports nerve growth factor-dependent cell survival but not neurite outgrowth.

机译:大鼠TrkA的激酶插入同工型支持神经生长因子依赖性细胞存活,但不支持神经突生长。

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摘要

To investigate potential differences between the family of Trk receptors that might have differential consequences on cell signaling, we generated a rat TrkA homologue of the 14-amino acid kinase insert isoform of TrkC termed TrkAKi. Signal transduction by the TrkAKi receptor has been investigated and compared with the homologous signaling defective TrkC(Ki14) receptor. Herein, we demonstrate that TrkAKi receptors show a decrease in the absolute amount of kinase activity relative to wild-type TrkA, yet retain normal patterns of receptor tyrosine phosphorylation, as determined by phosphopeptide mapping studies, unlike TrkC(Ki14). nnr5 cell clones expressing TrkAKi receptors show a decrease in nerve growth factor (NGF)-mediated SHC tyrosine phosphorylation and a loss of high-affinity TrkA-SHC interaction comparable to those expressing TrkC(Ki14). Moreover, nnr5 cells expressing TrkAKi receptors fail to demonstrate NGF-dependent tyrosine phosphorylation of the signaling molecules phospholipase Cgamma-1, MAP kinase/ERK-1, and SNT. TrkAKi receptors internalize NGF comparable to wild-type TrkA, but do not stimulate neurite outgrowth. It is interesting that, unlike TrkC(Ki14), TrkAKi receptors retain phosphatidylinositol 3-kinase activity and nnr5 cells stably expressing TrkAKi receptors retain NGF-dependent cell survival under serum-free conditions. Lastly, TrkAKi receptors fail to stimulate three immediate-early genes (NGF1A, NGF1B, and c-fos), suggesting that these gene products are not required for NGF-dependent cell survival responses.
机译:为了研究可能对细胞信号转导产生不同影响的Trk受体家族之间的潜在差异,我们生成了TrkC的14个氨基酸激酶插入片段同工型的大鼠TrkA同源物,称为TrkAKi。已经研究了由TrkAKi受体进行的信号转导并将其与同源信号缺陷TrkC(Ki14)受体进行了比较。在本文中,我们证明,相对于野生型TrkA,TrkAKi受体的激酶活性绝对值降低了,但仍保留了正常的受体酪氨酸磷酸化模式,这与TrkC(Ki14)一样,通过磷酸肽图研究确定。表达TrkAKi受体的nnr5细胞克隆与表达TrkC(Ki14)的神经克隆相比,神经生长因子(NGF)介导的SHC酪氨酸磷酸化水平降低,高亲和力TrkA-SHC相互作用降低。此外,表达TrkAKi受体的nnr5细胞无法证明信号分子磷脂酶Cgamma-1,MAP激酶/ ERK-1和SNT的NGF依赖性酪氨酸磷酸化。与野生型TrkA相比,TrkAKi受体可使NGF内在化,但不会刺激神经突生长。有趣的是,与TrkC(Ki14)不同,TrkAKi受体保留了磷脂酰肌醇3激酶活性,稳定表达TrkAKi受体的nnr5细胞在无血清条件下保留了NGF依赖性细胞存活。最后,TrkAKi受体不能刺激三个立即早期基因(NGF1A,NGF1B和c-fos),表明这些基因产物不是NGF依赖性细胞存活反应所必需的。

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