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神经元中突触-核信使CRTC1的细胞质和核蛋白相互作用网络揭示了CREB1与CRTC1、MEF2C和RFX3之间的协同染色质结合。

Cytoplasmic and nuclear protein interaction networks of the synapto-nuclear messenger CRTC1 in neurons reveal cooperative chromatin binding between CREB1 and CRTC1, MEF2C and RFX3.

作者信息

Neumann Sylvia, Achiro Jennifer M, Watanabe Marika, Bonnano Shivan L, Deng Weixian, Wohlschlegel James A, Martin Kelsey C

出版信息

bioRxiv. 2025 Jul 3:2025.07.02.662820. doi: 10.1101/2025.07.02.662820.

Abstract

Glutamatergic stimulation of excitatory neurons triggers the synapto-nuclear translocation of the cAMP response element (CRE) binding protein (CREB) regulated transcription coactivator 1 (CRTC1), resulting in the transcription of CREB1 target genes. Whether and how CRTC1 and CREB1 interact with other transcription factors to regulate activity-dependent transcription, and what the role of CRTC1 is in neurons beyond the activation of CREB1 regulated transcription, remains unknown. To address these questions in an unbiased manner, we used proximity labeling to identify CRTC1-proximal proteins in cytoplasmic and nuclear compartments of rodent forebrain neurons. The cytoplasmic CRTC1 proxisome included a variety of signaling pathways and downstream cellular processes involved in synaptic plasticity. In contrast, the nuclear CRTC1 proxisome included transcription factors that mediate activity-dependent transcription, chromatin factors, and splicing factors. Our data revealed that CRTC1 and CREB1 interact with MEF2C and RFX3 transcription factors in an activity-dependent manner. Thus, in chromatin immunoprecipitation-sequencing experiments, CREB1 was prebound to chromatin regions containing bZIP motifs in a manner that was unchanged by neuronal activity, while glutamatergic stimulation triggered the recruitment of CRTC1 and CREB1 to activity-dependent enhancers enriched in motifs for MEF2C and RFX3. Collectively, these results not only enhance our understanding of the role of cytoplasmic and nuclear CRTC1 in neurons, but also reveal a role for CRTC1 in promoting cooperativity of CREB1 with other transcription factors in response to synaptic activity.

摘要

对兴奋性神经元的谷氨酸能刺激会触发环磷酸腺苷反应元件(CRE)结合蛋白(CREB)调节转录共激活因子1(CRTC1)的突触-核转位,从而导致CREB1靶基因的转录。CRTC1和CREB1是否以及如何与其他转录因子相互作用以调节活性依赖的转录,以及CRTC1在神经元中除了激活CREB1调节的转录之外的作用是什么,仍然未知。为了以无偏见的方式解决这些问题,我们使用邻近标记来鉴定啮齿动物前脑神经元细胞质和细胞核区室中与CRTC1邻近的蛋白质。细胞质CRTC1近端体包含多种参与突触可塑性的信号通路和下游细胞过程。相比之下,细胞核CRTC1近端体包含介导活性依赖转录的转录因子、染色质因子和剪接因子。我们的数据表明,CRTC1和CREB1以活性依赖的方式与MEF2C和RFX3转录因子相互作用。因此,在染色质免疫沉淀测序实验中,CREB1以一种不受神经元活性影响的方式预先结合到含有bZIP基序的染色质区域,而谷氨酸能刺激则触发CRTC1和CREB1募集到富含MEF2C和RFX3基序的活性依赖增强子上。总的来说,这些结果不仅增强了我们对细胞质和细胞核CRTC1在神经元中作用的理解,还揭示了CRTC1在促进CREB1与其他转录因子协同响应突触活动方面的作用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/ad3c/12236590/054b69e72a5a/nihpp-2025.07.02.662820v1-f0001.jpg

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