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超级增强子驱动的 TOX2 介导自然杀伤/T 细胞淋巴瘤的肿瘤发生

英文原题:Super-enhancer-driven TOX2 mediates oncogenesis in Natural Killer/T Cell Lymphoma.

查看英文原题

Super-enhancer-driven TOX2 mediates oncogenesis in Natural Killer/T Cell Lymphoma.

PubMed 2023/04/10(内容时间) Mol Cancer Q1 · IF 42.2(JCR 2025)

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研究概要

我们的整合性 SE 分析策略揭示了 NKTL 中 SE 的图谱、新靶点以及对分子发病机制的见解。RUNX3-TOX2-SE-TOX2-PRL-3 调控通路可能代表 NKTL 生物学的一个标志。靶向 TOX2 可能为 NKTL 患者提供有价值的治疗干预,并值得在临床上进一步研究。

研究思路结论见上方概要

结外自然杀伤/T细胞淋巴瘤(NKTL)是一种侵袭性非霍奇金淋巴瘤,预后极差。更好地理解疾病生物学和关键致癌过程对于靶向治疗的开发是必要的。超级增强子(SEs)已被证明在多种恶性肿瘤中驱动关键致癌基因。然而,NKTL中SEs的图谱及SE相关致癌基因仍不清楚。

我们使用活性增强子标志物组蛋白H3赖氨酸27乙酰化(H3K27ac)的Nano-ChIP-seq,对NKTL原发肿瘤样本中独特的SEs进行了分析。RNA-seq与生存数据的整合分析进一步锁定了高价值的新型SE癌基因。我们利用shRNA敲低、CRISPR-dCas9、荧光素酶报告基因实验、ChIP-PCR来研究转录因子(TF)对SE癌基因的调控。对独立临床样本队列进行了多色免疫荧光(mIF)染色。进行了多种功能实验以评估TOX2对NKTL在体外和体内恶性程度的影响。

与正常扁桃体相比,NKTL样本中的SE景观存在显著差异。研究鉴定了多个位于关键转录因子(TF)基因上的SE,包括TOX2、TBX21(T-bet)、EOMES、RUNX2和ID2。我们证实,相对于正常NK细胞,TOX2在NKTL中异常过表达,且TOX2高表达与更差的生存相关。通过shRNA、CRISPR-dCas9干扰SE功能来调控TOX2表达,可影响NKTL细胞的增殖、存活和集落形成能力。在机制上,我们发现RUNX3通过结合TOX2 SE的活性元件来调控TOX2转录。沉默TOX2同样损害了NKTL细胞在体内的肿瘤形成能力。转移相关磷酸酶PRL-3已被鉴定并验证为TOX2介导的肿瘤发生的关键下游效应分子。

展开英文摘要原文

Extranodal natural killer/T-cell lymphoma (NKTL) is an aggressive type of non-Hodgkin lymphoma with dismal outcome. A better understanding of disease biology and key oncogenic process is necessary for the development of targeted therapy. Super-enhancers (SEs) have been shown to drive pivotal oncogenes in various malignancies. However, the landscape of SEs and SE-associated oncogenes remain elusive in NKTL.

We used Nano-ChIP-seq of the active enhancer marker histone H3 lysine 27 acetylation (H3K27ac) to profile unique SEs NKTL primary tumor samples. Integrative analysis of RNA-seq and survival data further pinned down high value, novel SE oncogenes. We utilized shRNA knockdown, CRISPR-dCas9, luciferase reporter assay, ChIP-PCR to investigate the regulation of transcription factor (TF) on SE oncogenes. Multi-color immunofluorescence (mIF) staining was performed on an independent cohort of clinical samples. Various function experiments were performed to evaluate the effects of TOX2 on the malignancy of NKTL in vitro and in vivo.

SE landscape was substantially different in NKTL samples in comparison with normal tonsils. Several SEs at key transcriptional factor (TF) genes, including TOX2, TBX21(T-bet), EOMES, RUNX2, and ID2, were identified. We confirmed that TOX2 was aberrantly overexpressed in NKTL relative to normal NK cells and high expression of TOX2 was associated with worse survival. Modulation of TOX2 expression by shRNA, CRISPR-dCas9 interference of SE function impacted on cell proliferation, survival and colony formation ability of NKTL cells. Mechanistically, we found that RUNX3 regulates TOX2 transcription by binding to the active elements of its SE. Silencing TOX2 also impaired tumor formation of NKTL cells in vivo. Metastasis-associated phosphatase PRL-3 has been identified and validated as a key downstream effector of TOX2-mediated oncogenesis.

Our integrative SE profiling strategy revealed the landscape of SEs, novel targets and insights into molecular pathogenesis of NKTL. The RUNX3-TOX2-SE-TOX2-PRL-3 regulatory pathway may represent a hallmark of NKTL biology. Targeting TOX2 could be a valuable therapeutic intervene for NKTL patients and warrants further study in clinic.

论文信息

作者
Zhou J、Toh SH、Tan TK、Balan K、Lim JQ、Tan TZ、Xiong S、Jia Y
第一作者单位
Cancer Science Institute of Singapore, National University of Singapore, 14 Medical Drive, Centre for Translational Medicine, Singapore, 117599, Singapore.Singapore
通讯作者单位
Cancer Science Institute of Singapore, National University of Singapore, 14 Medical Drive, Centre for Translational Medicine, Singapore, 117599, Singapore. mdccwj@nus.edu.sg.Singapore
文献类型
非美国政府资助研究
期刊
Molecular cancer2023 Apr 10
原文标识
PubMed 37032358 · DOI 10.1186/s12943-023-01767-1