category
bioRxiv
date
Mar 3, 2026
slug
status
Published
summary
首次发现KBTBD4突变通过CRL3KBTBD4介导的孤儿质量控制机制靶向PP2A-A降解,揭示了KBTBD4突变导致双重表型(转录抑制因子异常降解+PP2A质量控制丧失)的分子机制,阐明了PP2A-A在肿瘤相关信号通路中的关键调控作用。
tags
蛋白质组学
type
Post

📄 原文题目

Medulloblastoma-Associated KBTBD4 Mutations Disrupt PP2A-A Orphan Quality Control

🔗 原文链接

💡 AI 核心解读

首次发现KBTBD4突变通过CRL3KBTBD4介导的孤儿质量控制机制靶向PP2A-A降解,揭示了KBTBD4突变导致双重表型(转录抑制因子异常降解+PP2A质量控制丧失)的分子机制,阐明了PP2A-A在肿瘤相关信号通路中的关键调控作用。

📝 英文原版摘要

Medulloblastoma, the most common malignant pediatric brain tumor, arises from developmental aberrations of cerebellar precursor cells. The CUL3-RING ubiquitin ligase adaptor KBTBD4 is recurrently mutated in medulloblastoma subgroups 3 and 4. While KBTBD4 mutations confer a gain-of-function phenotype leading to aberrant degradation of transcriptional repressors, endogenous targets of this E3 ligase remain unknown. Here, we identify the PP2A-A scaffolding subunit of the PP2A phosphatase as a CRL3KBTBD4 substrate. Using a combination of proteomics, cell biology, biochemical reconstitution, and cryo-EM structural analyses, we show that CRL3KBTBD4 mediates orphan quality control by targeting free PP2A-A for degradation to safeguard phosphatase activity. Loss of KBTBD4 or its mutation in medulloblastoma cause PP2A-A accumulation, hence affecting phospho-dependent signaling pathways in cancer development. Disease mutations in KBTBD4 thus elicit a dual phenotype: gain-of-function degradation of transcriptional repressors combined with loss of PP2A quality control, which dysregulates multiple signaling events implicated in cancer, including telomere length regulation.
跨学科协作推动基于废水的抗微生物药物耐药性监测:碳青霉烯酶产生肺炎克雷伯菌的频率、局部动态及基因组特征尼替丁布和吡非尼酮影响人类肺泡II型细胞的生长和分化
Loading...