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致癌 EZH2 突变体的综合多组学分析:从表观遗传重编程到分子特征。

Integrative Multi-Omics Analysis of Oncogenic EZH2 Mutants: From Epigenetic Reprogramming to Molecular Signatures.

机构信息

Ohio State Biochemistry Program, Department of Chemistry and Biochemistry, The Ohio State University, Columbus, OH 43210, USA.

Department of Cancer Biology and Genetics, Wexner Medical Center, The Ohio State University, Columbus, OH 43210, USA.

出版信息

Int J Mol Sci. 2023 Jul 12;24(14):11378. doi: 10.3390/ijms241411378.

Abstract

Somatic heterozygous mutations in the active site of the enhancer of zeste homolog 2 (EZH2) are prevalent in diffuse large B-cell lymphoma (DLBCL) and acute myeloid leukemia (AML). The methyltransferase activity of EZH2 towards lysine 27 on histone H3 (H3K27) and non-histone proteins is dysregulated by the presence of gain-of-function (GOF) and loss-of-function (LOF) mutations altering chromatin compaction, protein complex recruitment, and transcriptional regulation. In this study, a comprehensive multi-omics approach was carried out to characterize the effects of differential H3K27me3 deposition driven by EZH2 mutations. Three stable isogenic mutants (EZH2, EZH2, and EZH2H) were examined using EpiProfile, H3K27me3 CUT&Tag, ATAC-Seq, transcriptomics, label-free proteomics, and untargeted metabolomics. A discrete set of genes and downstream targets were identified for the EZH2 GOF and LOF mutants that impacted pathways involved in cellular proliferation, differentiation, and migration. Disruption of protein networks and metabolic signatures able to sustain aberrant cell behavior was observed in response to EZH2 mutations. This systems biology-based analysis sheds light on EZH2-mediated cell transformative processes, from the epigenetic to the phenotypic level. These studies provide novel insights into aberrant EZH2 function along with targets that can be explored for improved diagnostics/treatment in hematologic malignancies with mutated EZH2.

摘要

增强子结合蛋白 EZH2 (EZH2)活性部位的体细胞杂合突变在弥漫性大 B 细胞淋巴瘤(DLBCL)和急性髓细胞白血病(AML)中很常见。EZH2 对组蛋白 H3 (H3K27)和非组蛋白上赖氨酸 27 的甲基转移酶活性被功能获得性(GOF)和功能丧失性(LOF)突变所改变,这些突变改变了染色质的紧凑性、蛋白复合物的募集和转录调控。在这项研究中,采用了一种全面的多组学方法来描述由 EZH2 突变驱动的 H3K27me3 沉积差异的影响。使用 EpiProfile、H3K27me3 CUT&Tag、ATAC-Seq、转录组学、无标记蛋白质组学和非靶向代谢组学,对三种稳定的同基因突变体(EZH2、EZH2 和 EZH2H)进行了研究。确定了 EZH2 GOF 和 LOF 突变体的一组离散基因和下游靶标,这些基因和下游靶标影响了涉及细胞增殖、分化和迁移的途径。观察到 EZH2 突变会破坏能够维持异常细胞行为的蛋白质网络和代谢特征。基于系统生物学的分析揭示了 EZH2 介导的细胞转化过程,从表观遗传学到表型水平。这些研究为异常 EZH2 功能提供了新的见解,并为具有突变 EZH2 的血液恶性肿瘤的改进诊断/治疗提供了潜在的靶点。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/c490/10380343/7bdaf2da51bf/ijms-24-11378-g001.jpg

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