首页> 外文期刊>The Journal of Neuroscience: The Official Journal of the Society for Neuroscience >c-Jun N-terminal protein kinase (JNK) 2/3 is specifically activated by stress, mediating c-Jun activation, in the presence of constitutive JNK1 activity in cerebellar neurons.
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c-Jun N-terminal protein kinase (JNK) 2/3 is specifically activated by stress, mediating c-Jun activation, in the presence of constitutive JNK1 activity in cerebellar neurons.

机译:在小脑神经元中存在组成型JNK1活性的情况下,c-Jun N末端蛋白激酶(JNK)2/3被应激特异性激活,介导c-Jun激活。

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摘要

c-Jun is considered a major regulator of both neuronal death and regeneration. Stress in primary cultured CNS neurons induces phosphorylation of c-Jun serines 63 and 73 and increased c-Jun protein. However, total c-Jun N-terminal protein kinase (JNK) activity does not increase, and no satisfactory explanation for this paradox has been available. Here we demonstrate that neuronal stress induces strong activation of JNK2/3 in the presence of constitutively and highly active JNK1. Correspondingly, neurons from JNK1(-/-) mice show lower constitutive activity and considerably higher responsiveness to stress. p38 activity can be completely inhibited without effect on c-Jun phosphorylation, whereas 10 micrometer SB203580 strongly inhibits neuronal JNK2/3, stress-induced c-Jun phosphorylation, induced c-Jun activity, and neuronal death in response to trophic withdrawal stress. Neither constitutive JNK1 activity nor total neuronal JNK activity were significantly affected by this concentration of drug. Thus, neuronal stress selectively activates JNK2/3 in the presence of mechanisms maintaining constitutive JNK1 activity, and this JNK2/3 activity selectively targets c-Jun, which is isolated from constitutive JNK1 activity.
机译:c-Jun被认为是神经元死亡和再生的主要调节剂。在原代培养的CNS神经元中的应激诱导c-Jun丝氨酸63和73的磷酸化和c-Jun蛋白的增加。但是,总c-Jun N末端蛋白激酶(JNK)的活性不会增加,并且没有令人满意的解释此悖论。在这里,我们证明神经元压力在组成性和高度活跃的JNK1存在下诱导JNK2 / 3的强烈激活。相应地,来自JNK1(-/-)小鼠的神经元显示出较低的组成活性和相当高的应激反应性。 p38活性可被完全抑制,而对c-Jun磷酸化没有影响,而10微米SB203580强烈抑制神经元JNK2 / 3,应激诱导的c-Jun磷酸化,诱导的c-Jun活性以及对营养性撤离应激的神经元死亡。该药物浓度既不影响组成型JNK1活性,也不影响总神经元JNK活性。因此,在维持构成性JNK1活性的机制存在的情况下,神经元应激选择性激活JNK2 / 3,而该JNK2 / 3活性则选择性地靶向c-Jun,后者是从构成性JNK1活性中分离出来的。

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