ATF4
神经保护
神经科学
轴突
神经退行性变
细胞生物学
条件基因敲除
生物
基因剔除小鼠
综合应力响应
转录因子
PTEN公司
逆行信号
未折叠蛋白反应
再生(生物学)
信号转导
癌症研究
PI3K/AKT/mTOR通路
医学
遗传学
基因
病理
翻译(生物学)
内质网
疾病
表型
信使核糖核酸
作者
Preethi Somasundaram,Madeline M. Farley,Melissa A. Rudy,Katya Sigal,Andoni I. Asencor,David G. Stefanoff,Malay Shah,Puneetha Goli,Jenny Heo,Shufang Wang,Nicholas M. Tran,Trent A. Watkins
标识
DOI:10.1101/2023.03.29.534798
摘要
Abstract Stress signaling is important for determining the fates of neurons following axonal insults. Previously we showed that the stress-responsive kinase PERK contributes to injury-induced neurodegeneration (Larhammar et al., 2017). Here we show that PERK acts primarily through Activating Transcription Factor-4 (ATF4) to stimulate not only pro-apoptotic but also pro-regenerative responses following optic nerve damage. Using conditional knockout mice, we find an extensive PERK/ATF4-dependent transcriptional response that includes canonical ATF4 target genes and modest contributions by C/EBP Homologous Protein (CHOP). Overlap with c-Jun-dependent transcription suggests interplay with a parallel stress pathway that orchestrates regenerative and apoptotic responses. Accordingly, neuronal knockout of ATF4 recapitulates the neuroprotection afforded by PERK deficiency, and PERK or ATF4 knockout impairs optic axon regeneration enabled by disrupting the tumor suppressor PTEN. These findings reveal an integral role for PERK/ATF4 in coordinating neurodegenerative and regenerative responses to CNS axon injury.
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