Neuroregeneration and Stem Cell Programs, Institute for Cell Engineering, Johns Hopkins University School of Medicine, Baltimore, Maryland 21205, USA.
J Clin Invest. 2010 Jul;120(7):2446-56. doi: 10.1172/JCI33144.
Identification of the signaling pathways that mediate neuronal survival signaling could lead to new therapeutic targets for neurologic disorders and stroke. Sublethal doses of NMDA can induce robust endogenous protective mechanisms in neurons. Through differential analysis of primary library expression and microarray analyses, here we have shown that nuclear factor I, subtype A (NFI-A), a member of the NFI/CAAT-box transcription factor family, is induced in mouse neurons by NMDA receptor activation in a NOS- and ERK-dependent manner. Knockdown of NFI-A induction using siRNA substantially reduced the neuroprotective effects of sublethal doses of NMDA. Further analysis indicated that NFI-A transcriptional activity was required for the neuroprotective effects of NMDA receptor activation. Additional evidence of the neuroprotective effects of NFI-A was provided by the observations that Nfia(-/-) neurons were highly sensitive to NMDA-induced excitotoxicity and were more susceptible to developmental cell death than wild-type neurons and that Nfia(+/-) mice were more sensitive to NMDA-induced intrastriatal lesions than were wild-type animals. These results identify NFI-A as what we believe to be a novel neuroprotective transcription factor with implications in neuroprotection and neuronal plasticity following NMDA receptor activation.
鉴定介导神经元存活信号的信号通路可能为神经紊乱和中风的新治疗靶点提供线索。亚致死剂量的 NMDA 可以诱导神经元中强大的内源性保护机制。通过对初级文库表达和微阵列分析的差异分析,我们在这里表明,核因子 I,亚型 A(NFI-A),是 NFI/CAAT 框转录因子家族的成员,通过 NMDA 受体激活以 NOS 和 ERK 依赖性方式在小鼠神经元中诱导。使用 siRNA 进行的 NFI-A 诱导敲低大大降低了亚致死剂量 NMDA 的神经保护作用。进一步的分析表明,NFI-A 的转录活性是 NMDA 受体激活的神经保护作用所必需的。NFI-A 的神经保护作用的其他证据是由以下观察结果提供的:Nfia(-/-)神经元对 NMDA 诱导的兴奋性毒性高度敏感,并且比野生型神经元更容易发生发育性细胞死亡,并且 Nfia(+/-)小鼠比野生型动物对 NMDA 诱导的纹状体损伤更敏感。这些结果表明 NFI-A 是一种新型的神经保护转录因子,它与 NMDA 受体激活后的神经保护和神经元可塑性有关。