首页> 外文期刊>Brain research >Divergent effects of the MEKK-1/JNK pathway on NB2a/d1 differentiation: some activity is required for outgrowth and stabilization of neurites but overactivation inhibits both phenomena.
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Divergent effects of the MEKK-1/JNK pathway on NB2a/d1 differentiation: some activity is required for outgrowth and stabilization of neurites but overactivation inhibits both phenomena.

机译:MEKK-1 / JNK途径对NB2a / d1分化的影响不同:神经突的长出和稳定需要一定的活性,但过度活化会抑制这两种现象。

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c-Jun N-terminal kinase (JNK), along with its upstream activator MEKK-1, is typically thought of as a stress-activated kinase that mediates apoptosis. However, additional studies indicate that the MEKK-1/JNK pathway mediates critical aspects of neuronal survival and differentiation. Herein, we demonstrate that transfection of differentiated NB2a/d1 cells with a construct expression constitutively activated (ca) MEKK-1 increases levels of phospho-dependent neurofilament (NF) immunoreactivity within perikarya, while expression of a dominant-negative (dn) form of MEKK-1 decreases it. Steady-state levels of perikaryal phospho-NF immunoreactivity are reduced and the increase resulting from expression of caMEKK-1 is prevented, by the JNK inhibitor SP600125, suggesting that JNK is a major downstream effector of MEKK-1 on NF phosphorylation. Unexpectedly, both caMEKK-1 and dnMEKK-1 inhibited neuritogenesis as well as translocation of NFs into newly elaborated neurites. The JNK inhibitor SP600125 also inhibitedNF transport in a dose-dependent manner. caMEKK-1 also prevented the increase in NF transport otherwise mediated by MAP kinase. Finally, both caMEKK-1 and dnMEKK-1 prevented initial neuritogenesis. These findings indicate that the MEKK-1/JNK pathway regulates critical aspects of initial outgrowth, and subsequent stabilization of axonal neurites.
机译:c-Jun N末端激酶(JNK)及其上游激活剂MEKK-1通常被认为是介导凋亡的应激激活激酶。但是,其他研究表明,MEKK-1 / JNK通路介导了神经元存活和分化的关键方面。在这里,我们证明转染分化的NB2a / d1细胞与构建体表达的组成性激活(ca)MEKK-1的表达增加了perikkarya内磷酸依赖性神经丝(NF)免疫反应性的水平,而表达了显性负(dn)形式的MEKK-1降低了它。 JNK抑制剂SP600125减少了稳态水平的周缘磷酸NF免疫反应性,并阻止了由caMEKK-1表达引起的增加,这表明JNK是MEKK-1对NF磷酸化的主要下游效应子。出乎意料的是,caMEKK-1和dnMEKK-1均抑制神经突的生成以及NFs易位至新形成的神经突。 JNK抑制剂SP600125还以剂量依赖性方式抑制NF转运。 caMEKK-1还阻止了由MAP激酶介导的NF转运的增加。最终,caMEKK-1和dnMEKK-1均阻止了最初的神经发生。这些发现表明,MEKK-1 / JNK通路调节着初期生长和轴突神经突稳定的关键方面。

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