DNA损伤
神经退行性变
神经炎症
神经科学
生物
神经元
同源盒
脑损伤
海马结构
转录因子
细胞生物学
兴奋性突触后电位
DNA修复
多发性硬化
兴奋毒性
DNA
氧化应激
发病机制
程序性细胞死亡
细胞因子
变性(医学)
疾病
海马硬化
神经发生
人脑
活性氧
炎症
大脑皮层
中枢神经系统
髓鞘
作者
Laura Morcom,Wenlong Xia,Zhaoyang Xu,Yashika Awasthi,Celine Geywitz,Matthew O. Ellis,Tomas Noli,Amel Zulji,Daniel Yamamoto,Gemma C. Girdler,Li Kai,Keying Zhu,Mingming Wei,Xiao-Yan Tang,Kimberly K. Hoi,Julio Gonzalez-Maya,Greg J. Duncan,Adrien Vaquié,Diana Gold Diaz,Riki Kawaguchi
出处
期刊:Nature
[Nature Portfolio]
日期:2026-04-01
被引量:1
标识
DOI:10.1038/s41586-026-10310-3
摘要
Abstract Neurodegeneration shows regional and cell-type-specific patterns in ageing and disease 1 , but the underlying mechanisms for cell-type-specific neuronal losses remain poorly understood. Previous studies have shown that upper cortical layer thinning occurs in progressive human multiple sclerosis (MS) and that cortical layer 2 and layer 3 (L2/3) excitatory neurons (L2/3ENs) that express CUT-like homeobox 2 ( CUX2 ) are selectively vulnerable to degeneration 2 . Here we report that L2/3ENs within MS cortical lesions have an elevated DNA damage burden. DNA damage and selective loss of L2/3ENs were recapitulated in diverse mouse models of demyelination and pan-cortical inflammation, confirming their intrinsic vulnerability. Functions of Cux2 and activating transcription factor 4 ( Atf4 ) were essential for resilience of L2/3ENs during postnatal neuroinflammation, acting in neurons to enhance DNA double-strand break repair. Interferon-γ, a cytokine implicated in MS pathogenesis 3,4 , was sufficient to elevate levels of reactive oxygen species, leading to DNA damage-mediated neuronal death in vitro, and caused selective depletion of L2/3 neurons in mice. These findings indicate that DNA damage burden and inadequate repair in CUX2 + L2/3ENs contributes to selective vulnerability in neuroinflammatory injury.
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