Integrative multiomic approaches reveal ZMAT3 and p21 as conserved hubs in the p53 tumor suppression network

IF 13.7 1区 生物学 Q1 BIOCHEMISTRY & MOLECULAR BIOLOGY
Anthony M. Boutelle, Aicha R. Mabene, David Yao, Haiqing Xu, Mengxiong Wang, Yuning J. Tang, Steven S. Lopez, Sauradeep Sinha, Janos Demeter, Ran Cheng, Brooks A. Benard, Edel M. McCrea, Liz J. Valente, Alexandros P. Drainas, Martin Fischer, Ravindra Majeti, Dmitri A. Petrov, Peter K. Jackson, Fan Yang, Monte M. Winslow, Michael C. Bassik, Laura D. Attardi
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Abstract

TP53, the most frequently mutated gene in human cancer, encodes a transcriptional activator that induces myriad downstream target genes. Despite the importance of p53 in tumor suppression, the specific p53 target genes important for tumor suppression remain unclear. Recent studies have identified the p53-inducible gene Zmat3 as a critical effector of tumor suppression, but many questions remain regarding its p53-dependence, activity across contexts, and mechanism of tumor suppression alone and in cooperation with other p53-inducible genes. To address these questions, we used Tuba-seqUltra somatic genome editing and tumor barcoding in a mouse lung adenocarcinoma model, combinatorial in vivo CRISPR/Cas9 screens, meta-analyses of gene expression and Cancer Dependency Map data, and integrative RNA-sequencing and shotgun proteomic analyses. We established Zmat3 as a core component of p53-mediated tumor suppression and identified Cdkn1a as the most potent cooperating p53-induced gene in tumor suppression. We discovered that ZMAT3/CDKN1A serve as near-universal effectors of p53-mediated tumor suppression that regulate cell division, migration, and extracellular matrix organization. Accordingly, combined Zmat3-Cdkn1a inactivation dramatically enhanced cell proliferation and migration compared to controls, akin to p53 inactivation. Together, our findings place ZMAT3 and CDKN1A as hubs of a p53-induced gene program that opposes tumorigenesis across various cellular and genetic contexts.

Abstract Image

综合多组学方法显示ZMAT3和p21是p53肿瘤抑制网络中的保守枢纽
TP53是人类癌症中最常见的突变基因,它编码一种转录激活因子,诱导无数下游靶基因。尽管p53在肿瘤抑制中具有重要作用,但具体哪些p53靶基因在肿瘤抑制中起重要作用尚不清楚。最近的研究已经确定p53诱导基因Zmat3是肿瘤抑制的关键效应因子,但关于其p53依赖性,跨环境活性以及单独或与其他p53诱导基因合作抑制肿瘤的机制仍存在许多问题。为了解决这些问题,我们在小鼠肺腺癌模型中使用了Tuba-seqUltra体细胞基因组编辑和肿瘤条形码,结合体内CRISPR/Cas9筛选,基因表达和癌症依赖图谱数据的meta分析,以及综合rna测序和鸟枪蛋白质组学分析。我们确定Zmat3是p53介导的肿瘤抑制的核心成分,并确定Cdkn1a是p53诱导的肿瘤抑制中最有效的协同基因。我们发现ZMAT3/CDKN1A几乎是p53介导的肿瘤抑制的普遍效应物,可以调节细胞分裂、迁移和细胞外基质组织。因此,与对照组相比,Zmat3-Cdkn1a联合失活显著增强了细胞增殖和迁移,类似于p53失活。总之,我们的研究结果表明ZMAT3和CDKN1A是p53诱导的基因程序的中心,该程序可以在各种细胞和遗传背景下对抗肿瘤发生。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
Cell Death and Differentiation
Cell Death and Differentiation 生物-生化与分子生物学
CiteScore
24.70
自引率
1.60%
发文量
181
审稿时长
3 months
期刊介绍: Mission, vision and values of Cell Death & Differentiation: To devote itself to scientific excellence in the field of cell biology, molecular biology, and biochemistry of cell death and disease. To provide a unified forum for scientists and clinical researchers It is committed to the rapid publication of high quality original papers relating to these subjects, together with topical, usually solicited, reviews, meeting reports, editorial correspondence and occasional commentaries on controversial and scientifically informative issues.
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