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首页> 外文期刊>Biological psychiatry >Synapse-to-Nucleus Signaling in Neurodegenerative and Neuropsychiatric Disorders
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Synapse-to-Nucleus Signaling in Neurodegenerative and Neuropsychiatric Disorders

机译:神经变性和神经精神疾病中的突触至核信号传导

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摘要

Synapse-to-nucleus signaling is critical for converting signals received at synapses into transcriptional programs essential for cognition, memory, and emotion. This neuronal mechanism usually involves activity-dependent translocation of synaptonuclear factors from synapses to the nucleus resulting in regulation of transcriptional programs underlying synaptic plasticity. Acting as synapse-to-nucleus messengers, amyloid precursor protein intracellular domain associated-1 protein, cAMP response element binding protein (CREB)-regulated transcription coactivator-1, Jacob, nuclear factor kappa-light-chain-enhancer of activated B cells, RING finger protein 10, and SH3 and multiple ankyrin repeat domains 3 play essential roles in synapse remodeling and plasticity, which are considered the cellular basis of memory. Other synaptic proteins, such as extracellular signal-regulated kinase, calcium/calmodulin-dependent protein kinase II gamma, and CREB2, translocate from dendrites or cytosol to the nucleus upon synaptic activity, suggesting that they could contribute to synapse-to-nucleus signaling. Notably, some synaptonuclear factors converge on the transcription factor CREB, indicating that CREB signaling is a key hubmediating integration of synaptic signals into transcriptional programs required for neuronal function and plasticity. Although major efforts have been focused on identification and regulatory mechanisms of synaptonuclear factors, the relevance of synapse-to-nucleus communication in brain physiology and pathology is still unclear. Recent evidence, however, indicates that synaptonuclear factors are implicated in neuropsychiatric, neurodevelopmental, and neurodegenerative disorders, suggesting that uncoupling synaptic activity from nuclear signaling may prompt synapse pathology, contributing to a broad spectrum of brain disorders. This review summarizes current knowledge of synapse-to-nucleus signaling in neuron survival, synaptic function and plasticity, and memory. Finally, we discuss how altered synapse-to-nucleus signaling may lead to memory and emotional disturbances, which is relevant for clinical and therapeutic strategies in neurodegenerative and neuropsychiatric diseases.
机译:Synapse到核信令对于将在突触的信号转换为对认知,记忆和情感至关重要的转录程序中的信号。这种神经元机制通常涉及从突触突出的突触核心因子的活动依赖性转位,从而导致突触可塑性下面的转录程序调节。作为Synapse-to-nucleus Messengers,淀粉样蛋白前体蛋白细胞内结构域相关-1蛋白质,营养响应元件结合蛋白(CREB) - 解释的转录同学-1,jacob,核因子Kappa轻链 - 增强剂的活化B细胞,无名指蛋白10和SH3和多个Ankyrin重复域3在突触重塑和可塑性中起主要作用,被认为是存储器的细胞基础。其他突触蛋白,例如细胞外信号调节激酶,钙/钙调蛋白依赖性蛋白激酶IIγ和CREB2,在突触活动时从树突或胞嘧啶转移到核心中,表明它们可以促进突触对核信号传导。值得注意的是,一些Synaptonulecle因子会聚在转录因子CREB上,表明CREB信号传导是突触信号的关键Hubmedizing集成在神经元功能和可塑性所需的转录程序中。虽然重大努力一直侧重于康复因子的鉴定和监管机制,但突触核通信在脑生理学和病理学中的相关性尚不清楚。然而,最近的证据表明,Synaptonuclectors涉及神经精神,神经发育和神经变性障碍,表明来自核信号传导的突触突触活性可能会提示突触病理,有助于广泛的脑疾病。本综述总结了神经元生存,突触功能和可塑性和记忆中突触对核信号传导的现有知识。最后,我们讨论改变的突触到核信令如何导致记忆和情绪障碍,这与神经变性和神经精神疾病中的临床和治疗策略相关。

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