oncogene

癌基因
  • 文章类型: Journal Article
    由于在多种癌症中发现的高RNA转录水平,骨髓瘤过表达基因(MYEOV)已被认为是原癌基因。包括骨髓瘤,乳房,肺,胰腺癌和食道癌。人类和其他灵长类动物中开放阅读框(ORF)的存在表明蛋白质编码潜力。然而,我们仍然缺乏功能性MYEOV蛋白的证据。尚未确定MYEOV过表达如何影响癌组织。在这项工作中,我们表明MYEOV可能已经起源,并且仍然可以作为增强剂,调节CCND1和LTO1。首先,使用公开的ATAC-STARR-seq数据证实了人类的MYEOV3增强子活性,在B细胞来源的GM12878细胞上进行。我们在多个健康人体组织中检测到增强子组蛋白标记H3K4me1和H3K27ac重叠MYEOV,其中包括B细胞,肝和肺组织。对3D基因组数据集的分析揭示了MYEOV-3推定增强子与原癌基因CCND1之间的染色质相互作用。BLAST搜索和多序列比对结果表明,这种人类增强子元件的DNA序列与两栖动物/羊膜生物的分歧是保守的,在所有哺乳动物中也发现了273bp的保守区域,甚至在鸡身上,它始终位于相应的CCND1直系同源物附近。此外,我们观察到四个非人灵长类动物的MYEOV直向同源物中的活性增强子状态的保守性,狗,老鼠,和老鼠。当研究小鼠的这个同源区域时,没有MYEOV的ORF,我们不仅观察到了增强子染色质状态,而且使用3D基因组相互作用数据发现了小鼠增强子同源物和Ccnd1之间的相互作用.这类似于在人类中观察到的相互作用,有趣的是,与两个物种的CTCF结合位点一致。一起来看,这表明MYEOV是一种灵长类动物特异性基因,具有起源于进化上较老的增强子区域的从头ORF。这种高度保守的推定增强子元件可以调节人和小鼠的CCND1,开启了使用非灵长类动物模型研究癌症中MYEOV调节功能的可能性。
    The myeloma overexpressed gene (MYEOV) has been proposed to be a proto-oncogene due to high RNA transcript levels found in multiple cancers, including myeloma, breast, lung, pancreas and esophageal cancer. The presence of an open reading frame (ORF) in humans and other primates suggests protein-coding potential. Yet, we still lack evidence of a functional MYEOV protein. It remains undetermined how MYEOV overexpression affects cancerous tissues. In this work, we show that MYEOV has likely originated and may still function as an enhancer, regulating CCND1 and LTO1. Firstly, MYEOV 3\' enhancer activity was confirmed in humans using publicly available ATAC-STARR-seq data, performed on B-cell-derived GM12878 cells. We detected enhancer histone marks H3K4me1 and H3K27ac overlapping MYEOV in multiple healthy human tissues, which include B cells, liver and lung tissue. The analysis of 3D genome datasets revealed chromatin interactions between a MYEOV-3\'-putative enhancer and the proto-oncogene CCND1. BLAST searches and multi-sequence alignment results showed that DNA sequence from this human enhancer element is conserved from the amphibians/amniotes divergence, with a 273 bp conserved region also found in all mammals, and even in chickens, where it is consistently located near the corresponding CCND1 orthologues. Furthermore, we observed conservation of an active enhancer state in the MYEOV orthologues of four non-human primates, dogs, rats, and mice. When studying this homologous region in mice, where the ORF of MYEOV is absent, we not only observed an enhancer chromatin state but also found interactions between the mouse enhancer homolog and Ccnd1 using 3D-genome interaction data. This is similar to the interaction observed in humans and, interestingly, coincides with CTCF binding sites in both species. Taken together, this suggests that MYEOV is a primate-specific gene with a de novo ORF that originated at an evolutionarily older enhancer region. This deeply conserved putative enhancer element could regulate CCND1 in both humans and mice, opening the possibility of studying MYEOV regulatory functions in cancer using non-primate animal models.
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  • 文章类型: Journal Article
    目的:本研究的目的是检测肾横纹肌样瘤(RTK)的候选癌基因,并评估其在体外RTK中的作用。
    方法:进行信使RNA(mRNA)和微小RNA(miRNA)测序的整合分析以确定外泌体衍生的miRNA和mRNA在人RTK衍生的细胞系和人胚肾细胞系中的表达谱。进行基因本体富集分析以分析RTK细胞中差异表达的mRNA的功能特征。进行基质胶侵袭和伤口愈合测定以评估细胞侵袭和迁移能力。
    结果:40种mRNA在RTK细胞中高表达,其在RTK细胞中的表达低于对照。这些mRNA主要与细胞粘附有关。在这些mRNA中,我们选择神经纤毛蛋白1(NRP1)作为候选癌基因,因为它的上调表达与几种肿瘤的不良预后相关.敲低NRP1的RTK细胞表现出降低的侵袭和迁移能力。
    结论:我们的研究表明,NRP1通过促进RTK细胞的侵袭和迁移而充当癌基因,并且它可以作为治疗靶标。
    OBJECTIVE: The aim of this study was to detect candidate oncogenes of rhabdoid tumor of the kidney (RTK) and evaluate their roles in RTK in vitro.
    METHODS: An integrated analysis of messenger RNA (mRNA) and microRNA (miRNA) sequencing was performed to determine the expression profile of exosome-derived miRNAs and mRNAs in human RTK-derived cell lines and a human embryonic renal cell line. A Gene Ontology enrichment analysis was performed to analyze the functional characteristics of differentially expressed mRNAs in RTK cells. Matrigel invasion and wound-healing assays were performed to evaluate the cell invasion and migration abilities.
    RESULTS: Forty mRNAs were highly expressed in RTK cells targeted by exosomal miRNAs, the expression of which was lower in RTK cells than in the controls. These mRNAs were primarily related to cell adhesion. Of these mRNAs, we selected neuropilin 1 (NRP1) as a candidate oncogene because its upregulated expression is associated with a poor prognosis of several types of tumors. RTK cells in which NRP1 had been knocked down exhibited decreased invasive and migratory abilities.
    CONCLUSIONS: Our study indicates that NRP1 acts as an oncogene by promoting the invasion and migration of RTK cells and that it could serve as a therapeutic target.
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  • 文章类型: Journal Article
    乳腺癌(BC)是女性最常见的恶性肿瘤,2023年有290万病例,全球第五高的癌症死亡率。针对BC的靶向治疗选择的最新发展已经证明了基于小干扰RNA(siRNA)的癌症治疗方法的有希望的潜力。随着不列颠哥伦比亚省继续成为全球负担,siRNA治疗成为调节其他类型癌症疾病相关基因的潜在治疗策略。包括BC。siRNA是微小的RNA分子,通过阻止他们的表达,可以专门沉默与癌症发展有关的基因。为了增加siRNA递送到BC细胞的稳定性和有效性,最小化脱靶效应,提高治疗效果,已经创建了先进的递送技术,如脂质纳米颗粒和纳米载体。此外,联合疗法,例如靶向多种途径的siRNA与常规化疗药物联合使用,在各种临床前研究中显示出协同作用,为乳腺癌开辟了个性化和精准医疗的新治疗方案。靶向与BC生长相关的重要基因,转移,并且在BC研究中已经报道了使用基于siRNA的疗法的化学抗性。本研究回顾了近年来关于siRNA治疗晚期BC的报道。此外,这篇综述评估了siRNA在BC中的作用和机制,并证明了利用siRNA作为BC治疗新靶点的潜力。
    Breast cancer (BC) is the most common and malignant tumor diagnosed in women, with 2.9 million cases in 2023 and the fifth highest cancer-causing mortality worldwide. Recent developments in targeted therapy options for BC have demonstrated the promising potential of small interfering RNA (siRNA)-based cancer therapeutic approaches. As BC continues to be a global burden, siRNA therapy emerges as a potential treatment strategy to regulate disease-related genes in other types of cancers, including BC. siRNAs are tiny RNA molecules that, by preventing their expression, can specifically silence genes linked to the development of cancer. In order to increase the stability and effectiveness of siRNA delivery to BC cells, minimize off-target effects, and improve treatment efficacy, advanced delivery technologies such as lipid nanoparticles and nanocarriers have been created. Additionally, combination therapies, such as siRNAs that target multiple pathways are used in conjunction with conventional chemotherapy agents, have shown synergistic effects in various preclinical studies, opening up new treatment options for breast cancer that are personalized and precision medicine-oriented. Targeting important genes linked to BC growth, metastasis, and chemo-resistance has been reported in BC research using siRNA-based therapies. This study reviews recent reports on therapeutic approaches to siRNA for advanced treatment of BC. Furthermore, this review evaluates the role and mechanisms of siRNA in BC and demonstrates the potential of exploiting siRNA as a novel target for BC therapy.
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  • 文章类型: Journal Article
    长链非编码RNA(lncRNA)因其在癌症发展中的致癌或抗肿瘤作用而众所周知。AGAP2-AS1,一种新的lncRNA,已被广泛证明是各种癌症中的致癌lncRNA。大量的实验结果证明AGAP2-AS1在大量恶性肿瘤中异常高水平,比如神经胶质瘤,结直肠,肺,卵巢,前列腺,乳房,胆管癌,膀胱,结肠癌和胰腺癌。重要的是,AGAP2-AS1的生物学功能已被广泛证明。它可以促进扩散,癌细胞的迁移和侵袭。同时,还说明了AGAP2-AS1的临床意义。AGAP2-AS1在各种癌组织中异常过度表达。临床研究表明,AGAP2-AS1的异常过表达与总生存期(OS)密切相关。淋巴结转移(LNM),临床分期,肿瘤浸润,高组织学分级(HG),浆液亚型和PFI时间。然而,到目前为止,AGAP2-AS1在人类癌症中的生物学作用和临床意义尚未得到系统评价。在本次审查中,作者概述了生物学行为,根据先前的研究,AGAP2-AS1的潜在机制和临床特征。总之,AGAP2-AS1,作为一个重要的致癌基因,是一个有前途的生物标志物和癌症预后和治疗的潜在靶点。
    Long non-coding RNAs (lncRNAs) are well known for their oncogenic or anti-oncogenic roles in cancer development. AGAP2-AS1, a new lncRNA, has been extensively demonstrated as an oncogenic lncRNA in various cancers. Abundant experimental results have proved the aberrantly high level of AGAP2-AS1 in a great number of malignancies, such as glioma, colorectal, lung, ovarian, prostate, breast, cholangiocarcinoma, bladder, colon and pancreatic cancers. Importantly, the biological functions of AGAP2-AS1 have been extensively demonstrated. It could promote the proliferation, migration and invasion of cancer cells. Simultaneously, the clinical significances of AGAP2-AS1 were also illustrated. AGAP2-AS1 was exceptionally overexpressed in various cancer tissues. Clinical studies disclosed that the abnormal overexpression of AGAP2-AS1 was tightly connected with overall survival (OS), lymph nodes metastasis (LNM), clinical stage, tumor infiltration, high histological grade (HG), serous subtype and PFI times. However, to date, the biological actions and clinical significances of AGAP2-AS1 have not been systematically reviewed in human cancers. In the present review, the authors overviewed the biological actions, potential mechanisms and clinical features of AGAP2-AS1 according to the previous studies. In summary, AGAP2-AS1, as a vital oncogenic gene, is a promising biomarker and potential target for carcinoma prognosis and therapy.
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  • 文章类型: Journal Article
    弥漫性中线神经胶质瘤(DMG)是中枢神经系统的侵袭性且致命的儿科肿瘤,对治疗具有高度抵抗力。组蛋白H3(H3-K27M)上残基27的赖氨酸替换为甲硫氨酸是DMG中的驱动突变,重塑这些细胞的表观遗传景观以促进肿瘤发生。H3-K27M胶质瘤的特征是组蛋白乙酰化和甲基化途径的失调,以及致癌MYC途径。为了寻找有效的治疗方法,我们研究了组蛋白脱乙酰酶(HDACs)和MYC双重靶向治疗这些肿瘤的潜力.用Sulfopin治疗H3-K27M患者来源的细胞,一种显示在体内阻断MYC驱动的肿瘤的抑制剂,与HDAC抑制剂伏立诺他联合使用,导致细胞活力大幅下降。此外,转录组和表观基因组谱分析揭示了这种药物组合在显著的致癌途径如mTOR的下调中的协同作用。最后,患者来源的原位异种移植模型的体内研究显示,在用该药物组合治疗的小鼠中,肿瘤生长显著减少.这些结果突出了PIN1和HDAC抑制剂的联合治疗作为这些侵袭性肿瘤的有希望的治疗方法。
    弥漫性中线神经胶质瘤(DMGs)是儿童中最具侵袭性和致命性的脑癌。它们通常与组蛋白的变化有关,控制基因活性并赋予染色体结构的蛋白质。大多数患有DMGs的儿童,例如,它们的组蛋白H3蛋白具有相同的异常(称为H3-K27M突变)。这种变化影响了称为甲基和乙酰基的小化学标签如何添加到组蛋白3上,这反过来改变了蛋白质打开和关闭基因的方式。因此,肿瘤开始发展。一种针对DMGs的潜在治疗策略是使用组蛋白去乙酰化酶抑制剂(HDACi),一种有前途的药物,可以抑制从组蛋白中去除乙酰基的酶。患者可以对HDACi产生耐药性,然而,强调需要探索其他方法。一种可能性是用几种药物治疗患者,每个通常针对一个独特的生物过程,有助于癌症的出现。这种联合方法可以有多种好处;药物可能会放大彼此的作用,例如,并且细胞在当时对一种以上的化合物产生抗性的可能性也较小。此外,联合用药中的每种药物都可以较低的剂量使用,以减少副作用并使患者受益。DMG肿瘤细胞通常具有较高的称为MYC的蛋白质活性水平,这可能有助于肿瘤的生长。Algranati,Oren等人。因此,开始测试将HDACi称为Vorinostat与阻断MYC活性的药物(Sulfopin)联合使用是否可以作为这种癌症的有效治疗方法。8名DMG患者的肿瘤样本接受了单独的Sulfopin治疗,或与伏立诺他联合使用的磺福平。暴露于两种药物的细胞不太可能存活,和额外的遗传实验表明,联合治疗导致促进肿瘤发展的途径被阻断。当将磺胺嘧啶和伏立诺他都施用于生长人类DMG肿瘤的小鼠时,动物表现出肿瘤生长的更大减少。DMG的治疗选择通常有限,化疗通常无效,手术不可能。Algranati的作品,Oren等人。提示将HDACi和靶向MYC途径的药物联合使用是一种策略,应进一步研究以确定是否可能临床应用.
    Diffuse midline gliomas (DMGs) are aggressive and fatal pediatric tumors of the central nervous system that are highly resistant to treatments. Lysine to methionine substitution of residue 27 on histone H3 (H3-K27M) is a driver mutation in DMGs, reshaping the epigenetic landscape of these cells to promote tumorigenesis. H3-K27M gliomas are characterized by deregulation of histone acetylation and methylation pathways, as well as the oncogenic MYC pathway. In search of effective treatment, we examined the therapeutic potential of dual targeting of histone deacetylases (HDACs) and MYC in these tumors. Treatment of H3-K27M patient-derived cells with Sulfopin, an inhibitor shown to block MYC-driven tumors in vivo, in combination with the HDAC inhibitor Vorinostat, resulted in substantial decrease in cell viability. Moreover, transcriptome and epigenome profiling revealed synergistic effect of this drug combination in downregulation of prominent oncogenic pathways such as mTOR. Finally, in vivo studies of patient-derived orthotopic xenograft models showed significant tumor growth reduction in mice treated with the drug combination. These results highlight the combined treatment with PIN1 and HDAC inhibitors as a promising therapeutic approach for these aggressive tumors.
    Diffuse midline gliomas (DMGs) are among the most aggressive and fatal brain cancers in children. They are often associated with changes in histones, the proteins that control gene activity and give chromosomes their structure. Most children with DMGs, for example, share the same anomaly in their histone H3 protein (referred to as the H3-K27M mutation). This change affects how small chemical tags called methyl and acetyl groups can be added onto histone 3, which in turn alters the way the protein can switch genes on and off. As a result, tumours start to develop. One potential therapeutic strategy against DMGs is to use histone deacetylase inhibitors (HDACi), a promising type of drugs which inhibits the enzymes that remove acetyl groups from histones. Patients can develop resistance to HDACi, however, highlighting the need to explore other approaches. One possibility is to treat patients with several types of drugs, each usually targeting a distinct biological process that contributes to the emergence of cancer. This combined approach can have multiple benefits; the drugs potentially amplify each other’s effect, for example, and it is also less likely for cells to become resistant to more than one compound at the time. In addition, each drug in the combination can be used in a lower dose to reduce side effects and benefit patients. DMG tumour cells often feature higher activity levels of a protein known as MYC, which can contribute to the growth of the tumour. Algranati, Oren et al. therefore set out to test whether combining an HDACi known as Vorinostat with a drug that blocks MYC activity (Sulfopin) can act as an effective treatment for this cancer. Tumour samples from eight DMG patients were treated with either Sulfopin alone, or Sulfopin in association with Vorinostat. Cells exposed to both drugs were less likely to survive, and additional genetic experiments showed that the combined treatment had resulted in pathways that promote tumour development being blocked. When both Sulfopin and Vorinostat were administered to mice made to grow human DMG tumors, the animals showed a greater reduction in tumor growth. Treatment options for DMG are usually limited, with chemotherapy often being ineffective and surgery impossible. The work by Algranati, Oren et al. suggests that combining HDACi and drugs targeting the MYC pathway is a strategy that should be examined further to determine whether clinical applications are possible.
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  • 文章类型: Journal Article
    DNAG-四链体(G4)是富含鸟嘌呤的单链DNA序列,可在癌基因启动子序列和端粒中自发折叠成球形四链DNA二级结构。G4s与癌症的发生和发展高度相关,并已成为有希望的抗癌靶标。天然产物长期以来一直是抗癌药物开发的重要来源。近年来,在发现靶向DNAG4s的天然药物方面取得了重大进展,随着许多DNAG4s被证实是有希望的天然产物的靶标,包括MYC-G4、KRAS-G4、PDGFR-β-G4、BCL-2-G4、VEGF-G4和端粒G4。本文综述了发现靶向DNAG4s的天然小分子及其结合机制的研究进展。它还讨论了开发靶向DNAG4s的药物的机遇和挑战。该综述将为天然产物的研究提供有价值的参考,特别是在新型抗肿瘤药物的开发中。
    DNA G-quadruplex(G4) is a guanine-rich single-stranded DNA sequence that spontaneously folds into a spherical four-stranded DNA secondary structure in oncogene promoter sequences and telomeres. G4s are highly associated with the occurrence and development of cancer and have emerged as promising anticancer targets. Natural products have long been important sources of anticancer drug development. In recent years, significant progress has been made in the discovery of natural drugs targeting DNA G4s, with many DNA G4s have been confirmed as promising targets of natural products, including MYC-G4, KRAS-G4, PDGFR-β-G4, BCL-2-G4, VEGF-G4, and telomeric G4. This review summarizes the research progress in discovering natural small molecules that target DNA G4s and their binding mechanisms. It also discusses the opportunities of and challenges in developing drugs targeting DNA G4s. This review will serve as a valuable reference for the research on natural products, particularly in the development of novel antitumor medications.
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  • 文章类型: Journal Article
    膜相关环-CH(MARCH)E3泛素连接酶,一个环型E3泛素连接酶家族,它们在免疫调节中不可或缺的作用引起了越来越多的关注,炎症,线粒体动力学,和脂质代谢。MARCHE3连接酶家族由11个不同的成员组成,并且在几种人类恶性肿瘤中已经记录了许多这些成员的失调。在过去的二十年里,广泛的研究表明,MARCHE3连接酶通过使关键癌基因和肿瘤抑制因子泛素化并协调各种信号通路在癌症进展中发挥关键作用.一些MARCHE3作为致癌基因,而其他人则充当肿瘤抑制因子,并且大多数MARCHE3以环境依赖性方式同时发挥致癌和肿瘤抑制作用。值得注意的是,特别强调唯一的线粒体MARCHE3连接酶MARCH5,它调节癌细胞内的线粒体稳态。在这次审查中,我们深入研究了MARCHE3连接酶在不同癌症类型中的不同功能,揭示介导它们作用的潜在分子机制,它们对癌症的调节作用及其作为治疗靶点的潜力。
    Membrane-associated RING-CH (MARCH) E3 ubiquitin ligases, a family of RING-type E3 ubiquitin ligases, have garnered increased attention for their indispensable roles in immune regulation, inflammation, mitochondrial dynamics, and lipid metabolism. The MARCH E3 ligase family consists of eleven distinct members, and the dysregulation of many of these members has been documented in several human malignancies. Over the past two decades, extensive research has revealed that MARCH E3 ligases play pivotal roles in cancer progression by ubiquitinating key oncogenes and tumor suppressors and orchestrating various signaling pathways. Some MARCH E3s act as oncogenes, while others act as tumor suppressors, and the majority of MARCH E3s play both oncogenic and tumor suppressive roles in a context-dependent manner. Notably, there is special emphasis on the sole mitochondrial MARCH E3 ligase MARCH5, which regulates mitochondrial homeostasis within cancer cells. In this review, we delve into the diverse functions of MARCH E3 ligases across different cancer types, shedding light on the underlying molecular mechanisms mediating their effects, their regulatory effects on cancer and their potential as therapeutic targets.
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  • 文章类型: Journal Article
    microRNAs(miRNAs)是小的非编码RNA,在细胞增殖中起关键作用,迁移,通过调节基因表达进行侵袭和凋亡。在恶性肿瘤中,miRNA-122作为肿瘤抑制因子或癌基因,通过下游基因靶向影响肿瘤进展。然而,miRNA-122在癌症中的确切作用尚不清楚。miRNA-122是放疗和化疗的潜在生物标志物和调节剂。本综述旨在总结miRNA‑122在癌症中的作用,它作为诊断和预后的生物标志物的潜力及其在癌症治疗中的意义,包括放疗和化疗,以及系统交付的策略。
    MicroRNAs (miRNAs) are small non‑coding RNAs that serve key roles in cell proliferation, migration, invasion and apoptosis by regulating gene expression. In malignant tumors, miRNA‑122 serves either as a tumor suppressor or oncogene, influencing tumor progression via downstream gene targeting. However, the precise role of miRNA‑122 in cancer remains unclear. miRNA‑122 is a potential biomarker and modulator of radiotherapy and chemotherapy. The present review aimed to summarize the roles of miRNA‑122 in cancer, its potential as a biomarker for diagnosis and prognosis and its implications in cancer therapy, including radiotherapy and chemotherapy, alongside strategies for systemic delivery.
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  • 文章类型: Journal Article
    乳腺癌(BC)是影响全世界妇女的主要公共卫生问题。越来越多的证据强调了miRNA-206在BC发病机制中的作用。其表达的变化具有诊断和预后潜力,因为它们与临床病理参数相关,包括淋巴结转移,总生存率,肿瘤大小,转移阶段,化疗耐药,和复发。在本研究中,我们总结了,评估,并讨论了对miRNA-206在BC中的功能的最新理解。出乎意料的是,miRNA-206被发现控制致癌和肿瘤抑制途径。我们还考虑了相应的下游影响和上游监管机构。最后,我们讨论了miRNA-206的诊断和预后价值及其在开发新治疗策略方面的潜力.
    Breast cancer (BC) is a major public health problem that affects women worldwide. Growing evidence has highlighted the role of miRNA-206 in BC pathogenesis. Changes in its expression have diagnostic and prognostic potential as they are associated with clinicopathological parameters, including lymph node metastasis, overall survival, tumor size, metastatic stage, resistance to chemotherapy, and recurrence. In the present study, we summarized, assessed, and discussed the most recent understanding of the functions of miRNA-206 in BC. Unexpectedly, miRNA-206 was found to control both oncogenic and tumor-suppressive pathways. We also considered corresponding downstream effects and upstream regulators. Finally, we addressed the diagnostic and prognostic value of miRNA-206 and its potential for the development of new therapeutic strategies.
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  • 文章类型: Journal Article
    多项研究表明,铁螯合剂通过诱导NDRG1(一种已知的肿瘤和转移抑制因子)来增强其抗癌特性。然而,NDRG1的确切作用仍然存在争议,新的研究表明,NDRG1也可以作为癌基因。我们小组最近引入了线粒体靶向铁螯合剂去铁胺(mitoDFO)和地拉罗司(mitoDFX)作为有效的抗癌剂。在这项研究中,我们评估了这些修饰的螯合剂诱导NDRG1的能力以及NDRG1在乳腺癌中的作用.我们证明了两种化合物均特异性增加NDRG1而不诱导其他NDRG家族成员。我们已经证明,线粒体靶向螯合剂的作用至少部分由GSK3α/β介导,导致NDRG1在Thr346磷酸化,而在Ser330上则较小。NDRG1的缺失增加了mitoDFX诱导的细胞死亡。值得注意的是,缺乏NDRG1的MDA-MB-231细胞表现出降低的细胞外酸化速率,并且生长速度比亲本细胞慢。而ER+MCF7细胞则相反。此外,全长NDRG1和N末端截短的同种型(59112)的过表达显着降低了ER细胞对mitoDFX的敏感性。此外,过表达全长NDRG1的细胞表现出明显加速的肿瘤形成,而其N末端截短的同工型显示出显着受损的形成肿瘤的能力。因此,在高度侵袭性的三阴性乳腺癌中,全长NDRG1的过表达促进肿瘤生长.
    Multiple studies indicate that iron chelators enhance their anti-cancer properties by inducing NDRG1, a known tumor and metastasis suppressor. However, the exact role of NDRG1 remains controversial, as newer studies have shown that NDRG1 can also act as an oncogene. Our group recently introduced mitochondrially targeted iron chelators deferoxamine (mitoDFO) and deferasirox (mitoDFX) as effective anti-cancer agents. In this study, we evaluated the ability of these modified chelators to induce NDRG1 and the role of NDRG1 in breast cancer. We demonstrated that both compounds specifically increase NDRG1 without inducing other NDRG family members. We have documented that the effect of mitochondrially targeted chelators is at least partially mediated by GSK3α/β, leading to phosphorylation of NDRG1 at Thr346 and to a lesser extent on Ser330. Loss of NDRG1 increases cell death induced by mitoDFX. Notably, MDA-MB-231 cells lacking NDRG1 exhibit reduced extracellular acidification rate and grow slower than parental cells, while the opposite is true for ER+ MCF7 cells. Moreover, overexpression of full-length NDRG1 and the N-terminally truncated isoform (59112) significantly reduced sensitivity towards mitoDFX in ER+ cells. Furthermore, cells overexpressing full-length NDRG1 exhibited a significantly accelerated tumor formation, while its N-terminally truncated isoforms showed significantly impaired capacity to form tumors. Thus, overexpression of full-length NDRG1 promotes tumor growth in highly aggressive triple-negative breast cancer.
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