UBE3A 基因在脑生理学和神经发育障碍中的多尺度时空动态。

IF 5.1 2区 医学 Q1 NEUROSCIENCES
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引用次数: 0

摘要

UBE3A 基因位于 15q11-13 染色体区域,受神经元特异性基因组印记的影响,在大脑发育过程中起着至关重要的作用。UBE3A 基因缺陷会导致严重的神经发育障碍,即安杰尔曼综合征(AS)和 15q11.2-q13.3 重复综合征(Dup15q)。在过去的二十年里,AS 和 Dup15q 的体外和体内模型的开发为加深对 UBE3A 在大脑中功能的了解奠定了基础。然而,这些疾病的致病机制仍然难以捉摸,也缺乏有效的治疗方法。最近的证据表明,UBE3A 的功能在空间和时间上都具有特异性,在亚细胞区、脑区和神经元回路中各不相同。在本综述中,我们从时空角度总结了目前有关 UBE3A 在神经元病理生理学中作用的知识。此外,我们还提出了一些关键的研究问题,这些问题将有助于更好地理解强直性脊柱炎和 Dup15q 疾病的致病机制,并为开发新型疗法提供依据。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Multiscale spatio-temporal dynamics of UBE3A gene in brain physiology and neurodevelopmental disorders

The UBE3A gene, located in the chromosomal region 15q11-13, is subject to neuron-specific genomic imprinting and it plays a critical role in brain development. Genetic defects of UBE3A cause severe neurodevelopmental disorders, namely the Angelman syndrome (AS) and the 15q11.2-q13.3 duplication syndrome (Dup15q). In the last two decades, the development of in vitro and in vivo models of AS and Dup15q were fundamental to improve the understanding of UBE3A function in the brain. However, the pathogenic mechanisms of these diseases remain elusive and effective treatments are lacking. Recent evidence suggests that UBE3A functions are both spatially and temporally specific, varying across subcellular compartments, brain regions, and neuronal circuits. In the present review, we summarize current knowledge on the role of UBE3A in neuronal pathophysiology under this spatio-temporal perspective. Additionally, we propose key research questions that will be instrumental to better understand the pathogenic mechanisms underpinning AS and Dup15q disorders and provide the rationale to develop novel therapies.

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来源期刊
Neurobiology of Disease
Neurobiology of Disease 医学-神经科学
CiteScore
11.20
自引率
3.30%
发文量
270
审稿时长
76 days
期刊介绍: Neurobiology of Disease is a major international journal at the interface between basic and clinical neuroscience. The journal provides a forum for the publication of top quality research papers on: molecular and cellular definitions of disease mechanisms, the neural systems and underpinning behavioral disorders, the genetics of inherited neurological and psychiatric diseases, nervous system aging, and findings relevant to the development of new therapies.
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