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Notch二聚化的丧失通过一种涉及组蛋白去乙酰化酶(HDAC)活性的机制扰乱肠道稳态。

Loss of Notch dimerization perturbs intestinal homeostasis by a mechanism involving HDAC activity.

作者信息

Dai Quanhui, Preusse Kristina, Yu Danni, Kovall Rhett A, Thorner Konrad, Lin Xinhua, Kopan Raphael

机构信息

State Key Laboratory of Genetic Engineering, School of Life Sciences, Greater Bay Area Institute of Precision Medicine (Guangzhou), Zhongshan Hospital, Fudan University, Shanghai, China.

Division of Developmental Biology, Department of Pediatrics, University of Cincinnati College of Medicine and Cincinnati Children's Hospital Medical Center, Cincinnati, Ohio, United States of America.

出版信息

PLoS Genet. 2024 Dec 12;20(12):e1011486. doi: 10.1371/journal.pgen.1011486. eCollection 2024 Dec.

Abstract

A tri-protein complex containing NICD, RBPj and MAML1 binds DNA as monomer or as cooperative dimers to regulate transcription. Mice expressing Notch dimerization-deficient alleles (NDD) of Notch1 and Notch2 are sensitized to environmental insults but otherwise develop and age normally. Transcriptomic analysis of colonic spheroids uncovered no evidence of dimer-dependent target gene miss-regulation, confirmed impaired stem cell maintenance in-vitro, and discovered an elevated signature of epithelial innate immune response to symbionts, a likely underlying cause for heightened sensitivity in NDD mice. TurboID followed by quantitative nano-spray MS/MS mass-spectrometry analyses in a human colon carcinoma cell line expressing either NOTCH2DD or NOTCH2 revealed an unbalanced interactome, with reduced interaction of NOTCH2DD with the transcription machinery but relatively preserved interaction with the HDAC2 interactome suggesting modulation via cooperativity. To ask if HDAC2 activity contributes to Notch loss-of-function phenotypes, we used the HDAC2 inhibitor Valproic acid (VPA) and discovered it could prevent the intestinal consequences of NDD and gamma secretase inhibitors (DBZ or DAPT) treatment in mice and spheroids, suggesting synergy between HDAC activity and pro-differentiation program in intestinal stem cells.

摘要

一种包含NICD、RBPj和MAML1的三聚体复合物以单体或协同二聚体形式结合DNA来调节转录。表达Notch1和Notch2的Notch二聚化缺陷等位基因(NDD)的小鼠对环境损伤敏感,但在其他方面发育和衰老正常。对结肠球体的转录组分析未发现二聚体依赖性靶基因失调的证据,证实体外干细胞维持受损,并发现上皮对共生体的固有免疫反应特征升高,这可能是NDD小鼠敏感性增加的潜在原因。在表达NOTCH2DD或NOTCH2的人结肠癌细胞系中,采用TurboID随后进行定量纳米喷雾MS/MS质谱分析,结果显示相互作用组失衡,NOTCH2DD与转录机制的相互作用减少,但与HDAC2相互作用组的相互作用相对保留,提示通过协同作用进行调节。为了探究HDAC2活性是否导致Notch功能丧失表型,我们使用了HDAC2抑制剂丙戊酸(VPA),发现它可以预防NDD和γ-分泌酶抑制剂(DBZ或DAPT)处理对小鼠和球体造成的肠道后果,提示HDAC活性与肠道干细胞中的促分化程序之间存在协同作用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/9626/11670933/9d8f5c925706/pgen.1011486.g001.jpg

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