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磷酸甘油酸激酶是帕金森病驱动的神经元代谢缺陷中的一个核心关键点。

Phosphoglycerate kinase is a central leverage point in Parkinson's Disease driven neuronal metabolic deficits.

作者信息

Kokotos Alexandros C, Antoniazzi Aldana M, Unda Santiago R, Ko Myung Soo, Park Daehun, Eliezer David, Kaplitt Michael G, Camilli Pietro De, Ryan Timothy A

机构信息

Department of Biochemistry, Weill Cornell Medicine, New York, NY 10065.

Aligning Science Across Parkinson's (ASAP) Collaborative Research Network, Chevy Chase, Maryland 20815, USA.

出版信息

bioRxiv. 2023 Oct 10:2023.10.10.561760. doi: 10.1101/2023.10.10.561760.

Abstract

Phosphoglycerate kinase 1 (PGK1), the first ATP producing glycolytic enzyme, has emerged as a therapeutic target for Parkinson's Disease (PD), since a potential enhancer of its activity was reported to significantly lower PD risk. We carried out a suppressor screen of hypometabolic synaptic deficits and demonstrated that PGK1 is a rate limiting enzyme in nerve terminal ATP production. Increasing PGK1 expression in mid-brain dopamine neurons protected against hydroxy-dopamine driven striatal dopamine nerve terminal dysfunction and modest changes in PGK1 activity dramatically suppressed hypometabolic synapse dysfunction . Furthermore, PGK1 is cross-regulated by PARK7 (DJ-1), a PD associated molecular chaperone, and synaptic deficits driven by PARK20 (Synaptojanin-1) can be reversed by increasing local synaptic PGK1 activity. These data indicate that nerve terminal bioenergetic deficits may underly a spectrum of PD susceptibilities and the identification of PGK1 as the limiting enzyme in axonal glycolysis provides a mechanistic underpinning for therapeutic protection.

摘要

磷酸甘油酸激酶1(PGK1)是糖酵解过程中首个产生ATP的酶,已成为帕金森病(PD)的治疗靶点,因为据报道其活性的一种潜在增强剂能显著降低PD风险。我们对代谢减退的突触缺陷进行了抑制因子筛选,并证明PGK1是神经末梢ATP生成中的限速酶。增加中脑多巴胺神经元中PGK1的表达可预防羟基多巴胺驱动的纹状体多巴胺神经末梢功能障碍,而PGK1活性的适度变化会显著抑制代谢减退的突触功能障碍。此外,PGK1受与PD相关的分子伴侣PARK7(DJ - 1)的交叉调节,增加局部突触PGK1活性可逆转由PARK20(突触素 - 1)驱动的突触缺陷。这些数据表明,神经末梢生物能量缺陷可能是一系列PD易感性的基础,而将PGK1鉴定为轴突糖酵解中的限速酶为治疗保护提供了机制基础。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/f0e3/10592794/de1af8fb3711/nihpp-2023.10.10.561760v1-f0001.jpg

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