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Activity-Dependent Dynamics of the Transcription Factor of cAMP-Response Element Binding Protein in Cortical Neurons Revealed by Single-Molecule Imaging

机译:单分子显像揭示皮质神经元中cAMP反应元件结合蛋白转录因子的活性依赖动力学。

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摘要

Transcriptional regulation is crucial for neuronal activity-dependent processes that govern neuronal circuit formation and synaptic plasticity. An intriguing question is how neuronal activity influences the spatiotemporal interactions between transcription factors and their target sites. Here, using a single-molecule imaging technique, we investigated the activity dependence of DNA binding and dissociation events of cAMP-response element binding protein (CREB), a principal factor in activity-dependent transcription, in mouse cortical neurons. To visualize CREB at the single-molecule level, fluorescent-tagged CREB in living dissociated cortical neurons was observed by highly inclined and laminated optical sheet microscopy. We found that a significant fraction of CREB spots resided in the restricted locations in the nucleus for several seconds (dissociation rate constant: 0.42 s−1). In contrast, two mutant CREBs, which cannot bind to the cAMP-response element, scarcely exhibited long-term residence. To test the possibility that CREB dynamics depends on neuronal activity, pharmacological treatments and an optogenetic method involving channelrhodopsin-2 were applied to cultured cortical neurons. Increased neuronal activity did not appear to influence the residence time of CREB spots, but markedly increased the number of restricted locations (hot spots) where CREB spots frequently resided with long residence times (>1 s). These results suggest that neuronal activity promotes CREB-dependent transcription by increasing the frequency of CREB binding to highly localized genome locations.>SIGNIFICANCE STATEMENT The transcription factor, cAMP response element-binding protein (CREB) is known to regulate gene expression in neuronal activity-dependent processes. However, its spatiotemporal interactions with the genome remain unknown. Single-molecule imaging in cortical neurons revealed that fluorescent-tagged CREB spots frequently reside at fixed nuclear locations in the time range of several seconds. Neuronal activity had little effect on the CREB residence time, but increased the rapid and frequent reappearance of long-residence CREB spots at the same nuclear locations. Thus, activity-dependent transcription is attributable to frequent binding of CREB to specific genome loci.
机译:转录调节对于控制神经元回路形成和突触可塑性的神经元活动依赖性过程至关重要。一个有趣的问题是神经元活动如何影响转录因子与其靶位之间的时空相互作用。在这里,我们使用单分子成像技术,研究了小鼠皮质神经元中DNA结合的活性依赖性和cAMP反应元件结合蛋白(CREB)的解离事件,这是活性依赖性转录的主要因素。为了在单分子水平上可视化CREB,通过高度倾斜和层压的光学片显微镜观察活离体的皮质神经元中荧光标记的CREB。我们发现,很大一部分CREB斑点在细胞核的受限位置停留了几秒钟(解离速率常数:0.42 s -1 )。相反,不能结合cAMP反应元件的两个突变CREB几乎没有长期居住。为了测试CREB动态取决于神经元活动的可能性,将药理学方法和涉及Channelrhodopsin-2的光遗传学方法应用于培养的皮质神经元。增加的神经元活动似乎并未影响CREB斑点的停留时间,但显着增加了CREB斑点经常以长停留时间(> 1 s)驻留的限制性位置(热点)的数量。这些结果表明神经元活性通过增加CREB结合到高度定位的基因组位置的频率来促进CREB依赖的转录。>意义声明已知转录因子cAMP反应元件结合蛋白(CREB)可以调节CREB的转录。基因表达在神经元活动依赖过程中。然而,其与基因组的时空相互作用仍然未知。皮质神经元中的单分子成像显示,荧光标记的CREB点经常在几秒钟的时间范围内位于固定的核位置。神经元活动对CREB停留时间影响不大,但增加了在相同核位置长久出现的CREB斑点的快速和频繁再现。因此,活性依赖性转录可归因于CREB与特定基因组基因座的频繁结合。

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