Department of Biology, University of Fribourg, Fribourg, Switzerland.
Elife. 2018 Oct 22;7:e39196. doi: 10.7554/eLife.39196.
Lasting changes in gene expression are critical for the formation of long-term memories (LTMs), depending on the conserved CrebB transcriptional activator. While requirement of distinct neurons in defined circuits for different learning and memory phases have been studied in detail, only little is known regarding the gene regulatory changes that occur within these neurons. We here use the fruit fly as powerful model system to study the neural circuits of CrebB-dependent appetitive olfactory LTM. We edited the locus to create a GFP-tagged conditional knockout allele, allowing us to generate mutant, post-mitotic neurons with high spatial and temporal precision. Investigating CrebB-dependence within the mushroom body (MB) circuit we show that MB α/β and α'/β' neurons as well as MBON α3, but not in dopaminergic neurons require CrebB for LTM. Thus, transcriptional memory traces occur in different neurons within the same neural circuit.
持久的基因表达变化对于长时记忆(LTM)的形成至关重要,这取决于保守的CrebB 转录激活因子。虽然不同学习和记忆阶段所需的不同神经元在特定回路中的作用已经被详细研究,但对于这些神经元中发生的基因调控变化知之甚少。我们在这里使用果蝇作为强大的模型系统来研究依赖于CrebB 的食欲性嗅觉 LTM 的神经回路。我们编辑了 基因座以创建 GFP 标记的 条件性敲除等位基因,使我们能够以前馈和后馈神经元的高时空精度生成突变体。在蘑菇体(MB)回路中研究 CrebB 的依赖性,我们发现 MB α/β 和 α'/β' 神经元以及 MBON α3 神经元,但不是多巴胺能神经元,需要 CrebB 才能形成 LTM。因此,转录记忆痕迹发生在同一神经回路中的不同神经元中。