super-enhancer

超级增强子
  • 文章类型: Journal Article
    我们先前的研究确定,在广泛的肿瘤细胞中升高SOX2会导致肿瘤生长停滞的可逆状态。了解肿瘤细胞生长如何被抑制的努力导致SOX2:MYC轴的发现,当SOX2升高时,该轴负责下调c-MYC(MYC)。虽然我们已经确定提高SOX2下调MYC转录,责任机制尚未确定。鉴于临床上针对MYC的挑战,我们着手确定如何提高SOX2下调MYC转录。在这项研究中,我们关注MYC启动子区和MYC基因座的上游区域,该区域含有包含5个MYC增强子的MYC超增强子,并且与几种癌症相关.在这里,我们报告了BRD4和p300与上游MYC超增强子以及MYC启动子区域中的每个MYC增强子相关联,并且升高SOX2会减少BRD4和p300对这些位点的募集。此外,我们确定,升高SOX2会导致MYC超增强子和MYC启动子区域中SOX2和H3K27me3的关联增加。重要的是,我们得出的结论是,MYC超级增强子中SOX2的增加会导致一系列事件,最终导致MYC转录的抑制。一起,我们的研究确定了一种新的分子机制,能够在两种截然不同的肿瘤类型中调节MYC转录,并为两种主要调节因子之间的分子相互关系提供了新的机制见解。SOX2和MYC,广泛参与多种癌症。
    Our previous studies determined that elevating SOX2 in a wide range of tumor cells leads to a reversible state of tumor growth arrest. Efforts to understand how tumor cell growth is inhibited led to the discovery of a SOX2:MYC axis that is responsible for downregulating c-MYC (MYC) when SOX2 is elevated. Although we had determined that elevating SOX2 downregulates MYC transcription, the mechanism responsible was not determined. Given the challenges of targeting MYC clinically, we set out to identify how elevating SOX2 downregulates MYC transcription. In this study, we focused on the MYC promoter region and an upstream region of the MYC locus that contains a MYC super-enhancer encompassing five MYC enhancers and which is associated with several cancers. Here we report that BRD4 and p300 associate with each of the MYC enhancers in the upstream MYC super-enhancer as well as the MYC promoter region and that elevating SOX2 decreases the recruitment of BRD4 and p300 to these sites. Additionally, we determined that elevating SOX2 leads to increases in the association of SOX2 and H3K27me3 within the MYC super-enhancer and the promoter region of MYC. Importantly, we conclude that the increases in SOX2 within the MYC super-enhancer precipitate a cascade of events that culminates in the repression of MYC transcription. Together, our studies identify a novel molecular mechanism able to regulate MYC transcription in two distinctly different tumor types and provide new mechanistic insights into the molecular interrelationships between two master regulators, SOX2 and MYC, widely involved in multiple cancers.
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  • 文章类型: Journal Article
    液-液相分离,一种新颖的生化现象,越来越多的研究其医疗应用。它是无膜细胞器形成的基础,并参与许多细胞和生物过程。在转录调控过程中,动态缩合物通过转录元件之间的相互作用形成,如转录因子,助活化剂,和调解员。癌症是一种以不受控制的细胞增殖为特征的疾病,但肿瘤发生的确切机制仍有待阐明。新的证据已经将异常的转录凝聚物与几种疾病联系起来,尤其是癌症,这意味着相分离在肿瘤发生中起着重要作用。相分离形成的缩合物可能对肿瘤中的基因转录有影响。在本次审查中,我们专注于相分离和转录调控之间的相关性,以及这种现象如何导致癌症的发展。
    Liquid-liquid phase separation, a novel biochemical phenomenon, has been increasingly studied for its medical applications. It underlies the formation of membrane-less organelles and is involved in many cellular and biological processes. During transcriptional regulation, dynamic condensates are formed through interactions between transcriptional elements, such as transcription factors, coactivators, and mediators. Cancer is a disease characterized by uncontrolled cell proliferation, but the precise mechanisms underlying tumorigenesis often remain to be elucidated. Emerging evidence has linked abnormal transcriptional condensates to several diseases, especially cancer, implying that phase separation plays an important role in tumorigenesis. Condensates formed by phase separation may have an effect on gene transcription in tumors. In the present review, we focus on the correlation between phase separation and transcriptional regulation, as well as how this phenomenon contributes to cancer development.
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  • 文章类型: Journal Article
    卵巢癌,癌症相关死亡率的重要贡献者,对靶向雌激素受体(ERα)的激素疗法表现出有限的反应。这项研究旨在阐明ERα对治疗药物Fulvestrant(ICI182780或ICI)的耐药机制。值得注意的是,与细胞质版本相比,核ERα被ICI最低限度地降解,表明通过核子结构的保护范围产生抗药性的机制。在这些子结构中,我们鉴定了一个1.3MDaMegacomplex,包含转录因子ERα,FOXA1和PITX1在卵巢癌细胞系中使用尺寸排阻色谱(SEC),PEO4.ChIP-seq揭示了这些因子在6,775个基因组位置共同定位,代表Megacomplex形成位点。与细胞质和核ERα相比,MegacomplexERα对ICI降解的抗性增加。一种活性染色质和超级增强剂的小分子抑制剂,如SEC和ChIP-seq所揭示的,JQ1与ICI组合显著增强了来自Megacomplex的ERα降解。有趣的是,这种组合降解了细胞质和核ERa。通路富集分析显示雌二醇后RNA-seq基因集的平行结果,ICI或ICI加JQ1处理如通过ChIP-seq鉴定的Megacomplex结合所定义的那些。此外,在雌二醇或ICI调节后,在Megacomcomplex大分子级分的质谱分析中证实了相似的途径富集.这些发现暗示Megacomplex参与ERα驱动的卵巢癌染色质调节。这种组合的治疗策略表现出对细胞增殖和活力的优异抑制。因此,通过在Megacomplex中发现ERα的抗性,ICI+JQ1联合治疗阐明了一种新的药物治疗脆弱性.
    Ovarian cancer, a significant contributor to cancer-related mortality, exhibits limited responsiveness to hormonal therapies targeting the estrogen receptor (ERα). This study aimed to elucidate the mechanisms behind ERα resistance to the therapeutic drug Fulvestrant (ICI182780 or ICI). Notably, compared to the cytoplasmic version, nuclear ERα was minimally degraded by ICI, suggesting a mechanism for drug resistance via the protective confines of the nuclear substructures. Of these substructures, we identified a 1.3MDa Megacomplex comprising transcription factors ERα, FOXA1, and PITX1 using size exclusion chromatography (SEC) in the ovarian cancer cell line, PEO4. ChIP-seq revealed these factors colocalized at 6,775 genomic positions representing sites of Megacomplex formation. Megacomplex ERα exhibited increased resistance to degradation by ICI compared to cytoplasmic and nuclear ERα. A small molecule inhibitor of active chromatin and super-enhancers, JQ1, in combination with ICI significantly enhanced ERα degradation from Megacomplex as revealed by SEC and ChIP-seq. Interestingly, this combination degraded both the cytoplasmic as well as nuclear ERa. Pathway enrichment analysis showed parallel results for RNA-seq gene sets following Estradiol, ICI, or ICI plus JQ1 treatments as those defined by Megacomplex binding identified through ChIP-seq. Furthermore, similar pathway enrichments were confirmed in mass-spec analysis of the Megacomplex macromolecule fractions after modulation by Estradiol or ICI. These findings implicate Megacomplex in ERα-driven ovarian cancer chromatin regulation. This combined treatment strategy exhibited superior inhibition of cell proliferation and viability. Therefore, by uncovering ERα\'s resistance within the Megacomplex, the combined ICI plus JQ1 treatment elucidates a novel drug treatment vulnerability.
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  • 文章类型: Journal Article
    超级增强子(SE)是基因组DNA的扩展区域,可调节与细胞身份和细胞命运有关的基因的表达。我们最近在鼠Vsx2SE中确定了发育阶段和细胞类型特异性模块。这里,我们表明,在报告基因测定中,人VSX2SE模块具有相似的发育阶段和细胞类型特异性活性。通过将一个VSX2SE模块的人类序列插入患有小眼症的小鼠中,眼睛大小获救。为了了解这些SE模块在人类视网膜发育过程中的功能,我们删除了人类胚胎干细胞中的单个模块,并生成了视网膜类器官.删除一个模块会导致小的类器官,概述小眼症小鼠的小眼表型,而另一个模块的删除导致双极神经元发育中断。这种典型的SE用作理解具有复杂表达模式的神经源性转录因子的发育阶段和细胞类型特异性效应的模型。此外,通过阐明基因调控机制,我们可以开始研究这些机制的失调是如何导致表型多样性和疾病的。
    Super-enhancers (SEs) are expansive regions of genomic DNA that regulate the expression of genes involved in cell identity and cell fate. We recently identified developmental stage- and cell type-specific modules within the murine Vsx2 SE. Here, we show that the human VSX2 SE modules have similar developmental stage- and cell type-specific activity in reporter gene assays. By inserting the human sequence of one VSX2 SE module into a mouse with microphthalmia, eye size was rescued. To understand the function of these SE modules during human retinal development, we deleted individual modules in human embryonic stem cells and generated retinal organoids. Deleting one module results in small organoids, recapitulating the small-eyed phenotype of mice with microphthalmia, while deletion of the other module led to disruptions in bipolar neuron development. This prototypical SE serves as a model for understanding developmental stage- and cell type-specific effects of neurogenic transcription factors with complex expression patterns. Moreover, by elucidating the gene regulatory mechanisms, we can begin to examine how dysregulation of these mechanisms contributes to phenotypic diversity and disease.
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  • 文章类型: Journal Article
    肺腺癌(LUAD)是全球癌症相关死亡的主要原因,但潜在的分子机制仍不清楚。转录因子(TF)特异性蛋白1(SP1)在各种癌症的发生发展中起着至关重要的作用,包括LUAD.最近的研究表明,主TF可以形成相分离的大分子缩合物,以促进超增强子(SE)组装和癌基因表达。在这项研究中,我们证明了SP1经历相分离,其DNA结合域中的锌指3对于该过程至关重要。通过使用针对SP1和H3K27ac的抗体,使用核酸酶(CUT和RUN)在靶标下裂解和释放,我们发现SP1富集和SE元素之间存在显著的相关性,确定G蛋白信号传导20(RGS20)基因的调节因子是SP1通过SE机制调节的最可能的靶标,并使用不同的方法验证了这一发现。SP1的致癌活性依赖于其相分离能力和RGS20基因激活,糖原合成酶激酶J4(GSK-J4)可以消除,去甲基酶抑制剂.一起,我们的发现提供了证据,表明SP1通过相分离和SE机制调节其靶癌基因表达,从而促进LUAD细胞进展。这项研究还揭示了通过干预SP1介导的SE形成来进行LUAD治疗的创新靶标。
    Lung adenocarcinoma (LUAD) is the leading cause of cancer-related death worldwide, but the underlying molecular mechanisms remain largely unclear. The transcription factor (TF) specificity protein 1 (SP1) plays a crucial role in the development of various cancers, including LUAD. Recent studies have indicated that master TFs may form phase-separated macromolecular condensates to promote super-enhancer (SE) assembly and oncogene expression. In this study, we demonstrated that SP1 undergoes phase separation and that its zinc finger 3 in the DNA-binding domain is essential for this process. Through Cleavage Under Targets & Release Using Nuclease (CUT&RUN) using antibodies against SP1 and H3K27ac, we found a significant correlation between SP1 enrichment and SE elements, identified the regulator of the G protein signaling 20 (RGS20) gene as the most likely target regulated by SP1 through SE mechanisms, and verified this finding using different approaches. The oncogenic activity of SP1 relies on its phase separation ability and RGS20 gene activation, which can be abolished by glycogen synthase kinase J4 (GSK-J4), a demethylase inhibitor. Together, our findings provide evidence that SP1 regulates its target oncogene expression through phase separation and SE mechanisms, thereby promoting LUAD cell progression. This study also revealed an innovative target for LUAD therapies through intervening in SP1-mediated SE formation.
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  • 文章类型: Journal Article
    背景:长老会,也称为年龄相关听力损失(ARHL),是衰老对个体听觉能力的累积影响导致的一种状况。鉴于对ARHL表观遗传机制的理解有限,我们的研究重点是染色质可接近区域的改变.
    方法:我们采用了转座酶可接近染色质的高通量测序(ATAC-seq)和独特标识符(UID)mRNA-seq结合年轻和衰老耳蜗,并进行了整合分析以及基序/TF基因预测。此外,通过与以往研究的比较分析,确定了超增强剂(SEs)在ARHL发展中的重要作用.同时,建立了ARHL小鼠模型和衰老模拟毛细胞(HC)模型,并对衰老表型进行了全面鉴定,以了解SEs在ARHL进展中的作用。
    结果:对照耳蜗组织表现出比ARHL影响的耳蜗组织更大的染色质可及性。此外,组蛋白3赖氨酸27乙酰化水平在老化的耳蜗和老化模拟HEI-OC1细胞中均显著降低,强调SEs在ARHL发展中的重要作用。鉴定出ARHL潜在的衰老相关超级增强子(SASEs),其中大多数表现出染色质可及性降低。与SASE相关的大多数基因在老化的HC中显示出mRNA表达水平的明显下降,并且在用JQ1(一种常用的SE抑制剂)处理后显著改变。
    结论:受ARHL影响的对照组耳蜗组织的染色质可及性高于耳蜗组织。确定了参与ARHL的潜在SE,这可能为未来针对ARHL相关SASEs的治疗提供基础。
    BACKGROUND: Presbycusis, also referred to as age-related hearing loss (ARHL), is a condition that results from the cumulative effects of aging on an individual\'s auditory capabilities. Given the limited understanding of epigenetic mechanisms in ARHL, our research focuses on alterations in chromatin-accessible regions.
    METHODS: We employed assay for transposase-accessible chromatin with high-throughput sequencing (ATAC-seq) in conjunction with unique identifier (UID) mRNA-seq between young and aging cochleae, and conducted integrated analysis as well as motif/TF-gene prediction. Additionally, the essential role of super-enhancers (SEs) in the development of ARHL was identified by comparative analysis to previous research. Meanwhile, an ARHL mouse model and an aging mimic hair cell (HC) model were established with a comprehensive identification of senescence phenotypes to access the role of SEs in ARHL progression.
    RESULTS: The control cochlear tissue exhibited greater chromatin accessibility than cochlear tissue affected by ARHL. Furthermore, the levels of histone 3 lysine 27 acetylation were significantly depressed in both aging cochlea and aging mimic HEI-OC1 cells, highlighting the essential role of SEs in the development of ARHL. The potential senescence-associated super-enhancers (SASEs) of ARHL were identified, most of which exhibited decreased chromatin accessibility. The majority of genes related to the SASEs showed obvious decreases in mRNA expression level in aging HCs and was noticeably altered following treatment with JQ1 (a commonly used SE inhibitor).
    CONCLUSIONS: The chromatin accessibility in control cochlear tissue was higher than that in cochlear tissue affected by ARHL. Potential SEs involved in ARHL were identified, which might provide a basis for future therapeutics targeting SASEs related to ARHL.
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  • 文章类型: Journal Article
    鼻咽癌(NPC),主要发现于中国南部地区,是一种以高度转移特性而闻名的恶性肿瘤。由远处转移和疾病复发引起的高死亡率仍然是临床上尚未解决的问题。在临床上,黄连素(BBR)化合物已广泛用于鼻咽癌治疗,以减少转移和疾病复发,并且BBR被记录为具有多种抗NPC作用的主要成分。然而,BBR抑制鼻咽癌生长和转移的机制尚不清楚。在这里,我们表明,BBR有效地抑制了生长,转移,并通过诱导特异性超级增强子(SE)入侵NPC。从机械的角度来看,RNA测序(RNA-seq)结果表明RAS-RAF1-MEK1/2-ERK1/2信号通路,由表皮生长因子受体(EGFR)激活,在BBR诱导的NPC自噬中起重要作用。自噬的阻断显著减弱了BBR介导的NPC细胞生长和转移抑制的作用。值得注意的是,BBR通过转录增加EGFR的表达,和敲除EGFR显著抑制BBR诱导的微管相关蛋白1轻链3(LC3)-II的增加和p62抑制,提示EGFR在BBR诱导的NPC自噬中起关键作用。染色质免疫沉淀测序(ChIP-seq)结果发现,仅在BBR处理的NPC细胞中存在特异性SE。这种SE敲除明显抑制了EGFR和磷酸化EGFR(EGFR-p)的表达,并逆转了BBR对NPC增殖的抑制作用。转移,和入侵。此外,BBR特异性SE可能通过增强EGFR基因转录触发自噬,从而上调RAS-RAF1-MEK1/2-ERK1/2信号通路。此外,体内BBR有效抑制NPC细胞生长和转移,随着LC3和EGFR的增加和p62的减少。总的来说,这项研究确定了一种新的BBR-特殊SE,并建立了一种新的表观遗传范式,BBR调节自噬,抑制增殖,转移,和入侵。它为BBR作为未来NPC治疗中的治疗方案的应用提供了理论基础。
    Nasopharyngeal carcinoma (NPC), primarily found in the southern region of China, is a malignant tumor known for its highly metastatic characteristics. The high mortality rates caused by the distant metastasis and disease recurrence remain unsolved clinical problems. In clinic, the berberine (BBR) compound has widely been in NPC therapy to decrease metastasis and disease recurrence, and BBR was documented as a main component with multiple anti-NPC effects. However, the mechanism by which BBR inhibits the growth and metastasis of nasopharyngeal carcinoma remains elusive. Herein, we show that BBR effectively inhibits the growth, metastasis, and invasion of NPC via inducing a specific super enhancer (SE). From a mechanistic perspective, the RNA sequencing (RNA-seq) results suggest that the RAS-RAF1-MEK1/2-ERK1/2 signaling pathway, activated by the epidermal growth factor receptor (EGFR), plays a significant role in BBR-induced autophagy in NPC. Blockading of autophagy markedly attenuated the effect of BBR-mediated NPC cell growth and metastasis inhibition. Notably, BBR increased the expression of EGFR by transcription, and knockout of EGFR significantly inhibited BBR-induced microtubule associated protein 1 light chain 3 (LC3)-II increase and p62 inhibition, proposing that EGFR plays a pivotal role in BBR-induced autophagy in NPC. Chromatin immunoprecipitation sequencing (ChIP-seq) results found that a specific SE existed only in NPC cells treated with BBR. This SE knockdown markedly repressed the expression of EGFR and phosphorylated EGFR (EGFR-p) and reversed the inhibition of BBR on NPC proliferation, metastasis, and invasion. Furthermore, BBR-specific SE may trigger autophagy by enhancing EGFR gene transcription, thereby upregulating the RAS-RAF1-MEK1/2-ERK1/2 signaling pathway. In addition, in vivo BBR effectively inhibited NPC cells growth and metastasis, following an increase LC3 and EGFR and a decrease p62. Collectively, this study identifies a novel BBR-special SE and established a new epigenetic paradigm, by which BBR regulates autophagy, inhibits proliferation, metastasis, and invasion. It provides a rationale for BBR application as the treatment regime in NPC therapy in future.
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  • 文章类型: Journal Article
    最近,通过液-液相分离形成的生物分子缩合物已经被广泛报道为调节参与细胞生物学和发病机理的关键细胞内过程。BRD4是一种核蛋白,有助于建立相分离的超增强子(SEs),以指导重要基因的转录。我们以前观察到BRD4的蛋白质液滴随着其大小的增加而变得疏水,暗示SE通过辐照限制水分子电离的能力。这里,我们的目标是确定SE是否赋予癌细胞辐射抗性。我们建立了体外DNA损伤测定法,该测定法可测量Fenton反应引起的自由基对DNA完整性的影响。这表明,当BRD4经历与DNA的相分离时,DNA损伤显著减少。因此,共聚焦成像分析显示,SE灶和DNA损伤灶在辐照细胞中是相互排斥的。最后,我们观察到,当辐射与BRD4去稳定剂ARV-771联合使用时,癌细胞的辐射抗性显著降低.我们的数据揭示了由癌细胞相分离驱动的固有抗辐射基因组区域的存在。折叠基因组DNA的这些相分离成分的破坏可能代表了增强放射治疗效果的新策略。
    Recently, biomolecular condensates formed through liquid-liquid phase separation have been widely reported to regulate key intracellular processes involved in cell biology and pathogenesis. BRD4 is a nuclear protein instrumental to the establishment of phase-separated super-enhancers (SEs) to direct the transcription of important genes. We previously observed that protein droplets of BRD4 became hydrophobic as their size increase, implying an ability of SEs to limit the ionization of water molecules by irradiation. Here, we aim to establish if SEs confer radiation resistance in cancer cells. We established an in vitro DNA damage assay that measures the effect of radicals provoked by the Fenton reaction on DNA integrity. This revealed that DNA damage was markedly reduced when BRD4 underwent phase separation with DNA. Accordingly, co-focal imaging analyses revealed that SE foci and DNA damage foci are mutually exclusive in irradiated cells. Lastly, we observed that the radioresistance of cancer cells was significantly reduced when irradiation was combined with ARV-771, a BRD4 de-stabilizer. Our data revealed the existence of innately radioresistant genomic regions driven by phase separation in cancer cells. The disruption of these phase-separated components enfolding genomic DNA may represent a novel strategy to augment the effects of radiotherapy.
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  • 文章类型: Journal Article
    背景:超级增强子(SE)通常控制关键癌基因的表达,并在癌症的发生和发展中起重要作用。关注癌症中SE异常调控的基因可能是理解发病机制的新策略。在这次调查中,我们在神经母细胞瘤(NB)中发现了一个以前未报道的SE驱动基因IRF2BP2.
    方法:在公共数据库和临床样本中检测IRF2BP2的表达和预后价值。通过体内和体外功能丧失实验评价IRF2BP2对NB细胞生长和凋亡的影响。通过染色质调控区和转录组测序研究IRF2BP2的分子机制。
    结果:IRF2BP2的持续高表达是由NB主转录因子MYCN建立的新型SE的激活引起的,MEIS2和HAND2,它们形成了一个新的复合物,调节与NB细胞群增殖相关的基因网络。我们还观察到在IRF2BP2的结合位点处AP-1家族的显著富集。值得注意的是,在NB小区中,AP-1在塑造染色质可及性景观中起着关键作用,从而暴露IRF2BP2的结合位点。这种协调作用使AP-1和IRF2BP2能够协同刺激NB易感基因ALK的表达,从而保持NB的高度增殖表型特征。
    结论:我们的发现表明,SE驱动的IRF2BP2可以通过调节NB易感基因ALK的染色质可及性与AP-1结合来维持肿瘤细胞的存活。
    BACKGROUND: Super-enhancers (SEs) typically govern the expression of critical oncogenes and play a fundamental role in the initiation and progression of cancer. Focusing on genes that are abnormally regulated by SE in cancer may be a new strategy for understanding pathogenesis. In the context of this investigation, we have identified a previously unreported SE-driven gene IRF2BP2 in neuroblastoma (NB).
    METHODS: The expression and prognostic value of IRF2BP2 were detected in public databases and clinical samples. The effect of IRF2BP2 on NB cell growth and apoptosis was evaluated through in vivo and in vitro functional loss experiments. The molecular mechanism of IRF2BP2 was investigated by the study of chromatin regulatory regions and transcriptome sequencing.
    RESULTS: The sustained high expression of IRF2BP2 results from the activation of a novel SE established by NB master transcription factors MYCN, MEIS2 and HAND2, and they form a new complex that regulates the gene network associated with the proliferation of NB cell populations. We also observed a significant enrichment of the AP-1 family at the binding sites of IRF2BP2. Remarkably, within NB cells, AP-1 plays a pivotal role in shaping the chromatin accessibility landscape, thereby exposing the binding site for IRF2BP2. This orchestrated action enables AP-1 and IRF2BP2 to collaboratively stimulate the expression of the NB susceptibility gene ALK, thereby upholding the highly proliferative phenotype characteristic of NB.
    CONCLUSIONS: Our findings indicate that SE-driven IRF2BP2 can bind to AP-1 to maintain the survival of tumor cells via regulating chromatin accessibility of NB susceptibility gene ALK.
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  • 文章类型: Journal Article
    背景:舌鳞状细胞癌(TSCC)表现出淋巴结和远处转移的侵袭性生物学行为,这导致预后较差,并导致舌功能丧失或死亡。除了已知的调节因子和TSCC中细胞迁移的途径,发现控制肿瘤转移的关键开关很重要。
    方法:在TSCC中分析了癌细胞迁移相关的转录和表观遗传特征,并鉴定了特定的超级增强子(SE)。通过分子功能和机制研究来研究TSCC转移中的关键开关。
    结果:在TSCC中富集了伴随转录和表观遗传活性的Ameboidd型细胞迁移相关基因。同时,排序较高的SE相关基因在来自TCGATSCC队列的43个配对肿瘤样本和正常样本之间显示出显著差异.此外,在SE地区检测到关键基序,转录因子相关表达水平与TSCC生存状态显著相关。值得注意的是,BATF和ATF3通过切换与SE区的相互作用来调节变形虫型细胞迁移相关MMP14的表达。
    结论:SE和相关关键基序转录调控肿瘤转移相关的MMP14,可能是TSCC的潜在治疗靶点。
    BACKGROUND: Tongue squamous cell carcinoma (TSCC) exhibits an aggressive biological behavior of lymph node and distant metastasis, which contributes to poorer prognosis and results in tongue function loss or death. In addition to known regulators and pathways of cell migration in TSCC, it is important to uncover pivotal switches governing tumor metastasis.
    METHODS: Cancer cell migration-associated transcriptional and epigenetic characteristics were profiled in TSCC, and the specific super-enhancers (SEs) were identified. Molecular function and mechanism studies were used to investigate the pivotal switches in TSCC metastasis.
    RESULTS: Ameboidal-type cell migration-related genes accompanied by transcriptional and epigenetic activity were enriched in TSCC. Meanwhile, the higher-ranked SE-related genes showed significant differences between 43 paired tumor and normal samples from the TCGA TSCC cohort. In addition, key motifs were detected in SE regions, and transcription factor-related expression levels were significantly associated with TSCC survival status. Notably, BATF and ATF3 regulated the expression of ameboidal-type cell migration-related MMP14 by switching the interaction with the SE region.
    CONCLUSIONS: SEs and related key motifs transcriptional regulate tumor metastasis-associated MMP14 and might be potential therapeutic targets for TSCC.
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