神经科学
认知
突触可塑性
生物
战斗或逃跑反应
海马体
综合应力响应
神经可塑性
认知功能衰退
睡眠剥夺对认知功能的影响
长时程增强
等位基因
神经传递
心理学
智力残疾
压力(语言学)
动物模型
医学
磷酸酶
工作记忆
作者
Lucas C. Reineke,Ping Jun Zhu,Udit Dalwadi,Sean W. Dooling,Yuwei Liu,I-Ching Wang,Sara Young-Baird,James Okoh,Santosh Kumar Kuncha,Hongyi Zhou,Akshara Kannan,Hyekyung Park,Nicolas A. DeBeaubien,Tristan I. Croll,D. John Lee,Christopher P. Arthur,Thomas Dever,Peter Walter,Jin Chen,Adam Frost
出处
期刊:Science
[American Association for the Advancement of Science]
日期:2026-04-02
卷期号:392 (6793): eaea8782-eaea8782
被引量:1
标识
DOI:10.1126/science.aea8782
摘要
The integrated stress response (ISR) is essential for cellular homeostasis and cognitive function. We investigated how persistent ISR activation affects cognitive performance by studying the PPP1R15B R658C genetic variant associated with intellectual disability. To model this condition, we generated a mouse line with the pathogenic allele inserted. This variant destabilized the PPP1R15B•PP1 phosphatase complex, causing persistent ISR activation, impaired protein synthesis, and long-term memory deficits. We demonstrated that the cognitive and synaptic impairments in Ppp1r15b R658C mice arise directly from ISR activation. Furthermore, we characterized DP71L, a viral ortholog of PPP1R15B, which acted as a potent pan-ISR inhibitor. DP71L reversed the cognitive and synaptic deficits across mouse models of Down syndrome, Alzheimer’s disease, and aging, and enhanced synaptic plasticity and memory in healthy mice.
科研通智能强力驱动
Strongly Powered by AbleSci AI