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行为经历可诱导成熟颗粒细胞中zif268的表达,但会抑制未成熟颗粒细胞中zif268的表达。

Behavioral experience induces zif268 expression in mature granule cells but suppresses its expression in immature granule cells.

作者信息

Huckleberry Kylie A, Kane Gary A, Mathis Rita J, Cook Sarah G, Clutton Jonathan E, Drew Michael R

机构信息

Department of Neuroscience, Center for Learning and Memory, University of Texas at Austin Austin, TX, USA.

出版信息

Front Syst Neurosci. 2015 Aug 21;9:118. doi: 10.3389/fnsys.2015.00118. eCollection 2015.

Abstract

Thousands of neurons are born each day in the dentate gyrus (DG), but many of these cells die before reaching maturity. Both death and survival of adult-born neurons are regulated by neuronal activity in the DG. The immediate-early gene (IEG) zif268 appears to be an important mediator of these effects, as its expression can be induced by neural activity and knockout of zif268 impairs survival of adult-born neurons (Richardson et al., 1992; Veyrac et al., 2013). Despite the apparent importance of zif268 for adult neurogenesis, its behavior-induced expression has not been fully characterized in adult-born neurons. Here we characterize behavior-evoked expression of zif268 in mature and newborn dentate granule cells (DGCs). We first quantified zif268 expression in doublecortin-positive (DCX+) immature neurons and in the general granule cell population after brief exposure to a novel environment (NE). In the general granule cell population, zif268 expression peaked 1 h after NE exposure and returned to baseline by 8 h post-exposure. However, in the DCX+ cells, zif268 expression was suppressed relative to home cage for at least 8 h post-exposure. We next asked whether suppression of zif268 in DCX+ immature cells occurs in other behavioral paradigms that recruit the hippocampus. Exposure to Morris water maze (MWM) training, an enriched environment, or a NE caused approximately equal suppression of zif268 expression in DCX+ cells and approximately equal activation of zif268 expression among the general granule cell population. The same behavioral procedures activated zif268 expression in 6-week-old BrdU-labeled adult-born neurons, indicating that zif268 suppression is specific to immature neurons. Finally, we asked whether zif268 suppression varied as a function of age within the DCX+ population, which ranges in age from 0 to approximately 4 weeks. NE exposure had no significant effect on zif268 expression in 2- or 4-week-old BrdU-labeled neurons, but it significantly suppressed zif268 expression in 3-week-old neurons. In summary, behavioral experience transiently activated expression of zif268 in mature granule cells but caused a more long-lasting suppression of zif268 expression in immature, adult-born granule cells. We hypothesize that zif268 suppression inhibits memory-related synaptic plasticity in immature neurons or mediates learning-induced apoptosis of immature adult-born neurons.

摘要

齿状回(DG)每天有成千上万的神经元生成,但其中许多细胞在成熟之前就死亡了。成年新生神经元的死亡和存活均受DG中神经元活动的调节。即刻早期基因(IEG)zif268似乎是这些效应的重要介导因子,因为其表达可由神经活动诱导,且zif268基因敲除会损害成年新生神经元的存活(Richardson等人,1992年;Veyrac等人,2013年)。尽管zif268对成体神经发生显然很重要,但其在行为诱导下在成年新生神经元中的表达尚未得到充分表征。在此,我们表征了zif268在成熟和新生齿状颗粒细胞(DGCs)中由行为诱发的表达。我们首先在短暂暴露于新环境(NE)后,对双皮质素阳性(DCX+)未成熟神经元和一般颗粒细胞群体中的zif268表达进行了定量。在一般颗粒细胞群体中,zif268表达在暴露于NE后1小时达到峰值,并在暴露后8小时恢复到基线水平。然而,在DCX+细胞中,暴露后至少8小时内,zif268表达相对于饲养笼环境受到抑制。接下来,我们询问在其他募集海马体的行为范式中,DCX+未成熟细胞中的zif268是否也受到抑制。暴露于莫里斯水迷宫(MWM)训练、丰富环境或新环境中,在DCX+细胞中对zif268表达的抑制程度大致相同,在一般颗粒细胞群体中对zif268表达的激活程度也大致相同。相同的行为程序激活了6周龄BrdU标记的成年新生神经元中zif268的表达,表明zif268的抑制作用对未成熟神经元具有特异性。最后,我们询问在年龄从0到约四周不等的DCX+群体中,zif268的抑制作用是否随年龄而变化。暴露于NE对2周龄或4周龄BrdU标记的神经元中zif268的表达没有显著影响,但显著抑制了3周龄神经元中zif268的表达。总之,行为经验短暂激活了成熟颗粒细胞中zif268的表达,但导致未成熟的成年新生颗粒细胞中zif268的表达受到更持久的抑制。我们推测,zif268的抑制作用会抑制未成熟神经元中与记忆相关的突触可塑性,或介导学习诱导的未成熟成年新生神经元的凋亡。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/cfa8/4543859/655081454f96/fnsys-09-00118-g0001.jpg

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