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The Role of CREB SRF and MEF2 in Activity-Dependent Neuronal Plasticity in the Visual Cortex

机译:CREBSRF和MEF2在视皮层活动依赖神经元可塑性中的作用。

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摘要

The transcription factors CREB (cAMP response element binding factor), SRF (serum response factor), and MEF2 (myocyte enhancer factor 2) play critical roles in the mechanisms underlying neuronal plasticity. However, the role of the activation of these transcription factors in the different components of plasticity in vivo is not well known. In this study, we tested the role of CREB, SRF, and MEF2 in ocular dominance plasticity (ODP), a paradigm of activity-dependent neuronal plasticity in the visual cortex. These three proteins bind to the synaptic activity response element (SARE), an enhancer sequence found upstream of many plasticity-related genes (; ), and can act cooperatively to express Arc, a gene required for ODP (). We used viral-mediated gene transfer to block the transcription function of CREB, SRF, and MEF2 in the visual cortex, and measured visually evoked potentials in awake male and female mice before and after a 7 d monocular deprivation, which allowed us to examine both the depression component (Dc-ODP) and potentiation component (Pc-ODP) of plasticity independently. We found that CREB, SRF, and MEF2 are all required for ODP, but have differential effects on Dc-ODP and Pc-ODP. CREB is necessary for both Dc-ODP and Pc-ODP, whereas SRF and MEF2 are only needed for Dc-ODP. This finding supports previous reports implicating SRF and MEF2 in long-term depression (required for Dc-ODP), and CREB in long-term potentiation (required for Pc-ODP).>SIGNIFICANCE STATEMENT Activity-dependent neuronal plasticity is the cellular basis for learning and memory, and it is crucial for the refinement of neuronal circuits during development. Identifying the mechanisms of activity-dependent neuronal plasticity is crucial to finding therapeutic interventions in the myriad of disorders where it is disrupted, such as Fragile X syndrome, Rett syndrome, epilepsy, major depressive disorder, and autism spectrum disorder. Transcription factors are essential nuclear proteins that trigger the expression of gene programs required for long-term functional and structural plasticity changes. Our results elucidate the specific role of the transcription factors CREB, SRF, and MEF2 in the depression and potentiation components of ODP in vivo, therefore better informing future attempts to find therapeutic targets for diseases where activity-dependent plasticity is disrupted.
机译:转录因子CREB(cAMP反应元件结合因子),SRF(血清反应因子)和MEF2(肌细胞增强因子2)在潜在的神经元可塑性机制中起关键作用。然而,这些转录因子的激活在体内可塑性的不同组分中的作用尚不为人所知。在这项研究中,我们测试了CREB,SRF和MEF2在眼优势可塑性(ODP)中的作用,ODP是视皮质中活动依赖型神经元可塑性的范例。这三种蛋白质与突触活性反应元件(SARE)结合,SARE是在许多可塑性相关基因(;)上游发现的增强子序列,并且可以协同作用来表达Arc(ODP所需的基因)。我们使用病毒介导的基因转移来阻断CREB,SRF和MEF2在视觉皮层中的转录功能,并测量了单眼剥夺7天前后清醒的雄性和雌性小鼠的视觉诱发电位,这使我们能够研究可塑性的凹陷成分(Dc-ODP)和增强成分(Pc-ODP)独立。我们发现,ODB都需要CREB,SRF和MEF2,但它们对Dc-ODP和Pc-ODP的影响不同。 CREB对Dc-ODP和Pc-ODP都是必需的,而SRF和MEF2仅对Dc-ODP是必需的。这一发现支持了以前的报道,即SRF和MEF2涉及长期抑郁(Dc-ODP必需),而CREB涉及长期增强(Pc-ODP必需)。>重要意义声明可塑性是学习和记忆的细胞基础,对于发育过程中神经回路的细化至关重要。识别依赖于活动的神经元可塑性的机制,对于在众多被破坏的疾病中找到治疗性干预至关重要,这些疾病包括脆性X综合征,Rett综合征,癫痫,重度抑郁症和自闭症谱系障碍。转录因子是触发长期功能和结构可塑性改变所需的基因程序表达的必需核蛋白。我们的研究结果阐明了转录因子CREB,SRF和MEF2在体内ODP的抑制和增强成分中的特殊作用,因此更好地为将来寻找活动依赖性可塑性被破坏的疾病的治疗靶标提供了信息。

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