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Developmental changes in plasticity synaptic glia and connectivity protein levels in rat basolateral amygdala

机译:大鼠基底间amygdala的可塑性突触胶质胶片和连接蛋白水平的发育变化

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摘要

The basolateral complex of amygdala (BLA) processes emotionally arousing aversive and rewarding experiences. The BLA is critical for acquisition and storage of threat-based memories and the modulation of the consolidation of arousing explicit memories, that is, the memories that are encoded and stored by the medial temporal lobe. In addition, in conjunction with the medial prefrontal cortex (mPFC), the BLA plays an important role in fear memory extinction. The BLA develops relatively early in life, but little is known about the molecular changes that accompany its development. Here, we quantified relative basal expression levels of sets of plasticity, synaptic, glia, and connectivity proteins in the rat BLA at various developmental ages: postnatal day 17 (PN17, infants), PN24 (juveniles), and PN80 (young adults). We found that the levels of activation markers of brain plasticity, including phosphorylation of CREB at Ser133, CamKIIα at Thr286, pERK1/pERK2 at Thr202/Tyr204, and GluA1 at Ser831 and Ser845, were significantly higher in infant and juvenile compared with adult brain. In contrast, age increase was accompanied by a significant augmentation in the levels of proteins that mark synaptogenesis and synapse maturation, such as synaptophysin, PSD95, SynCAM, GAD65, GAD67, and GluN2A/GluN2B ratio. Finally, we observed significant age-associated changes in structural markers, including MAP2, MBP, and MAG, suggesting that the structural connectivity of the BLA increases over time. The biological differences in the BLA between developmental ages compared with adulthood suggest the need for caution in extrapolating conclusions based on BLA-related brain plasticity and behavioral studies conducted at different developmental stages.
机译:Amygdala(BLA)的基底外侧复合体情绪激动地唤起厌恶和有益的经历。 BLA对于获取和存储基于威胁的存储器以及唤起显式存储器的整合的调制至关重要,即由内侧时间叶编码和存储的存储器。另外,与内侧前额落皮质(MPFC)结合,BLA在恐惧记忆灭绝中起着重要作用。 BLA在生命中相对较早地发展,但对伴随其发展的分子变化很少。在此,我们在各种发育年龄(PN17,婴儿),PN24(青少年)和PN80(年轻成人)和PN80(青少年)和PN80(年轻成人)中的相对基础表达蛋白质的相对基础表达蛋白我们发现,与成年大脑相比,Chr2 / tyr204的Serk1 / Perk1 / Perk1 / Perk1 / Perk1 / Perk1 / Perk2在Serk1 / Perk2的Ser133,CAMKIIα的CREB磷酸化的激活标记水平,包括SER831和SER845的GLUA1。相比之下,年龄增加伴随着标记突触和突触成熟的蛋白质水平的显着增强,例如突触蛋白,PSD95,同步,GAD65,GAD67和GLUN2A / GLUN2B比率。最后,我们观察到结构标记的显着年龄相关变化,包括MAP2,MBP和MAG,表明BLA的结构连接随着时间的推移而增加。与成年期相比,发育年龄之间的BLA的生物差异表明了基于在不同发育阶段进行的BLA相关脑可塑性和行为研究的外推结论中的需要小心。

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