Centre National de la Recherche Scientifique, Unité Mixte de Recherche 8195, F-91405 Orsay, France.
Proc Natl Acad Sci U S A. 2013 Apr 23;110(17):7062-7. doi: 10.1073/pnas.1220558110. Epub 2013 Apr 8.
New neurons are continuously added to the dentate gyrus of the adult mammalian brain. During the critical period of a few weeks after birth when newborn neurons progressively mature, a restricted fraction is competitively selected to survive in an experience-dependent manner, a condition for their contribution to memory processes. The mechanisms that control critical stages of experience-dependent functional incorporation of adult newborn neurons remain largely unknown. Here, we identify a unique transcriptional regulator of the functional integration of newborn neurons, the inducible immediate early gene zif268/egr1. We show that newborn neurons in zif268-KO mice undergo accelerated death during the critical period of 2-3 wk around their birth and exhibit deficient neurochemical and morphological maturation, including reduced GluR1 expression, increased NKCC1/KCC2b chloride cotransporter ratio, altered dendritic development, and marked spine growth defect. Investigating responsiveness of newborn neurons to activity-dependent expression of zif268 in learning, we demonstrate that in the absence of zif268, training in a spatial learning task during this critical period fails to recruit newborn neurons and promote their survival, leading to impaired long-term memory. This study reveals a previously unknown mechanism for the control of the selection, functional maturation, and experience-dependent recruitment of dentate gyrus newborn neurons that depends on the inducible immediate early gene zif268, processes that are critical for their contribution to hippocampal-dependent long-term memory.
成年哺乳动物大脑的齿状回中会不断产生新的神经元。在出生后数周的关键时期,新生神经元逐渐成熟,其中一部分受到限制,以竞争的方式存活下来,这是它们参与记忆过程的条件。控制成年新生神经元经历依赖性功能整合的关键阶段的机制在很大程度上仍然未知。在这里,我们确定了一个新的转录调节因子,即诱导型早期基因 zif268/egr1,它可以调节新生神经元的功能整合。我们发现,zif268-KO 小鼠的新生神经元在出生后 2-3 周的关键时期会加速死亡,并且表现出神经化学和形态成熟缺陷,包括 GluR1 表达减少、NKCC1/KCC2b 氯离子共转运体比例增加、树突发育改变以及明显的棘突生长缺陷。在研究新生神经元对学习过程中 zif268 活性依赖性表达的反应时,我们证明在这个关键时期,在空间学习任务中进行训练时,如果没有 zif268,就无法招募新生神经元并促进其存活,从而导致长期记忆受损。这项研究揭示了一种以前未知的机制,用于控制齿状回新生神经元的选择、功能成熟和经历依赖性招募,这种机制依赖于诱导型早期基因 zif268,这是它们参与海马体依赖的长期记忆的关键过程。