O'Neill L A, Kaltschmidt C
Dept of Biochemistry, Trinity College Dublin, Ireland.
Trends Neurosci. 1997 Jun;20(6):252-8. doi: 10.1016/s0166-2236(96)01035-1.
Transcription factors provide the link between early membrane-proximal signalling events and changes in gene expression. NF-kappa B is one of the best-characterized transcription factors. It is expressed ubiquitously and regulates the expression of many genes, most of which encode proteins that play an important and often determining role in the processes of immunity and inflammation. Apart from its role in these events, evidence has begun to accumulate that NF-kappa B is involved in brain function, particularly following injury and in neurodegenerative conditions such as Alzheimer's disease. NF-kappa B might also be important for viral replication in the CNS. An involvement of NF-kappa B in neuronal development is suggested from studies that demonstrate its activation in neurones in certain regions of the brain during neurogenesis. Brain-specific activators of NF-kappa B include glutamate (via both AMPA/KA and NMDA receptors) and neurotrophins, pointing to an involvement in synaptic plasticity. NF-kappa B can therefore be considered as one of the most important transcription factors characterized in brain to date and it might be as crucial for neuronal and glial cell function as it is for immune cells.
转录因子在早期膜近端信号事件与基因表达变化之间起到了桥梁作用。核因子-κB(NF-κB)是特征最为明确的转录因子之一。它在全身广泛表达,调控众多基因的表达,其中大多数基因编码的蛋白质在免疫和炎症过程中发挥着重要且往往起决定性作用。除了在这些事件中的作用外,越来越多的证据表明NF-κB参与脑功能,特别是在脑损伤后以及在诸如阿尔茨海默病等神经退行性疾病中。NF-κB可能对中枢神经系统中的病毒复制也很重要。有研究表明在神经发生过程中,NF-κB在大脑某些区域的神经元中被激活,这提示其参与神经元发育。NF-κB的脑特异性激活剂包括谷氨酸(通过AMPA/KA和NMDA受体)和神经营养因子,表明其参与突触可塑性。因此,NF-κB可被视为迄今为止在脑中已明确的最重要的转录因子之一,它对神经元和神经胶质细胞功能的重要性可能与对免疫细胞的重要性相当。