category
PNAS
date
Mar 18, 2026
slug
status
Published
summary
构建了覆盖近2000个转录因子的全基因组图谱,首次发现TOX3作为Atoh1共激活因子在小脑发育与肿瘤发生中的双重调控机制,为神经发育疾病和肿瘤治疗提供新靶点。
tags
测序技术
蛋白质组学
type
Post

📄 原文题目

A transcription regulator atlas identifies TOX3 as an Atoh1 coactivator in cerebellar development and tumorigenesis

🔗 原文链接

💡 AI 核心解读

构建了覆盖近2000个转录因子的全基因组图谱,首次发现TOX3作为Atoh1共激活因子在小脑发育与肿瘤发生中的双重调控机制,为神经发育疾病和肿瘤治疗提供新靶点。

📝 英文原版摘要

Proceedings of the National Academy of Sciences, Volume 123, Issue 12, March 2026. <br />SignificanceThe formation and function of organs depend on tightly controlled gene networks, yet we lack a comprehensive understanding of the transcription factors that drive organ development and disease. Here, we profile nearly 2,000 transcriptional ...
通过位点定向双硝基氧自由基标记实现RNA的靶向核磁共振信号增强猴痘病毒蛋白OPG188拮抗cGAS–STING抗病毒信号通路以介导免疫逃逸
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