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将细胞内钙库作为针对与年龄相关神经毒性的治疗策略。

Targeting of intracellular Ca stores as a therapeutic strategy against age-related neurotoxicities.

作者信息

Goldberg Joshua, Currais Antonio, Ates Gamze, Huang Ling, Shokhirev Maxim, Maher Pamela, Schubert David

机构信息

The Salk Institute for Biological Studies, 10010 North Torrey Pines Road, La Jolla, CA 92037 USA.

出版信息

NPJ Aging Mech Dis. 2020 Aug 24;6:10. doi: 10.1038/s41514-020-00048-1. eCollection 2020.

Abstract

Calcium dysregulation often underlies pathologies associated with aging and age-associated neurodegenerative diseases. Cells express a unique pattern of Ca channels and pumps geared to fulfill specific physiological requirements and there is a decline in the fidelity of these processes with age and age-associated diseases. J147 is an Alzheimer's disease (AD) drug candidate that was identified using a phenotypic screening platform based upon age-related brain toxicities that are mediated by changes in calcium metabolism. The molecular target for J147 is the α-F1-ATP synthase (ATP5A). J147 has therapeutic efficacy in multiple mouse models of AD and accelerated aging and extends life span in flies. A bioinformatics analysis of gene expression in rapidly aging SAMP8 mice during the last quadrant of their life span shows that J147 has a significant effect on ion transport pathways that are changed with aging, making their expression look more like that of younger animals. The molecular basis of these changes was then investigated in cell culture neurotoxicity assays that were the primary screen in the development of J147. Here we show that J147 and its molecular target, ATP synthase, regulate the maintenance of store-operated calcium entry (SOCE) and cell death during acute neurotoxicity.

摘要

钙调节异常通常是与衰老及年龄相关神经退行性疾病相关的病理状况的基础。细胞表达一种独特模式的钙通道和泵,以满足特定的生理需求,而随着年龄增长和年龄相关疾病的发生,这些过程的保真度会下降。J147是一种阿尔茨海默病(AD)候选药物,它是通过基于由钙代谢变化介导的与年龄相关的脑毒性的表型筛选平台鉴定出来的。J147的分子靶点是α-F1-ATP合酶(ATP5A)。J147在多种AD小鼠模型及加速衰老模型中具有治疗效果,并能延长果蝇的寿命。对快速衰老的SAMP8小鼠在其寿命最后阶段的基因表达进行的生物信息学分析表明,J147对随衰老而改变的离子转运途径有显著影响,使其表达更类似于年轻动物。然后在细胞培养神经毒性试验中研究了这些变化的分子基础,该试验是J147研发过程中的主要筛选试验。在此我们表明,J147及其分子靶点ATP合酶在急性神经毒性期间调节储存-操作性钙内流(SOCE)的维持及细胞死亡。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/b64b/7445274/a9f23aba2215/41514_2020_48_Fig1_HTML.jpg

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