Control of Synaptotagmin-1 Trafficking by SV2A—Mechanism and Consequences for Presynaptic Function and Dysfunction

IF 4 3区 医学 Q2 BIOCHEMISTRY & MOLECULAR BIOLOGY Journal of Neurochemistry Pub Date : 2025-01-24 DOI:10.1111/jnc.16308
James A. Hogg, Michael A. Cousin
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Abstract

Synaptic vesicle protein 2A (SV2A) is an abundant synaptic vesicle cargo with an as yet unconfirmed role in presynaptic function. It is also heavily implicated in epilepsy, firstly being the target of the leading anti-seizure medication levetiracetam and secondly with loss of function mutations culminating in human disease. A range of potential presynaptic functions have been proposed for SV2A; however its interaction with the calcium sensor for synchronous neurotransmitter release, synaptotagmin-1 (Syt1), has received particular attention over the past decade. In this review we will assess the evidence that the primary role of SV2A is to control the expression and localisation of Syt1 at the presynapse. This will integrate biochemical, cell biological and physiological studies where the interaction, trafficking and functional output of Syt1 is altered by SV2A. The potential for SV2A-dependent epilepsy to be a result of dysfunctional Syt1 expression and localisation is also discussed. Finally, a series of key open questions will be posed that require resolution before a definitive role for SV2A in Syt1 function in health and disease can be confirmed.

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sv2a对synaptotagin -1转运的控制-突触前功能和功能障碍的机制和后果。
突触囊泡蛋白2A (SV2A)是一种丰富的突触囊泡货物,在突触前功能中的作用尚未得到证实。它也与癫痫密切相关,首先是抗癫痫药物左乙拉西坦的主要靶点,其次是人类疾病中最终的功能突变丧失。SV2A有一系列潜在的突触前功能;然而,在过去的十年中,它与钙传感器同步释放神经递质突触肽-1 (Syt1)的相互作用受到了特别的关注。在这篇综述中,我们将评估SV2A的主要作用是控制突触前Syt1的表达和定位的证据。这将整合生化,细胞生物学和生理学的研究,其中Syt1的相互作用,运输和功能输出被SV2A改变。还讨论了sv2a依赖性癫痫是Syt1表达和定位功能失调的结果的可能性。最后,在确认SV2A在Syt1健康和疾病功能中的明确作用之前,将提出一系列关键的开放性问题,需要解决这些问题。
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来源期刊
Journal of Neurochemistry
Journal of Neurochemistry 医学-神经科学
CiteScore
9.30
自引率
2.10%
发文量
181
审稿时长
2.2 months
期刊介绍: Journal of Neurochemistry focuses on molecular, cellular and biochemical aspects of the nervous system, the pathogenesis of neurological disorders and the development of disease specific biomarkers. It is devoted to the prompt publication of original findings of the highest scientific priority and value that provide novel mechanistic insights, represent a clear advance over previous studies and have the potential to generate exciting future research.
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