利用转录因子靶向 EMT 和癌症干细胞进行肿瘤调节和治疗。

IF 12.1 1区 医学 Q1 ONCOLOGY Seminars in cancer biology Pub Date : 2024-03-19 DOI:10.1016/j.semcancer.2024.03.002
Abdul Q. Khan , Adria Hasan , Snober S. Mir , Khalid Rashid , Shahab Uddin , Martin Steinhoff
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引用次数: 0

摘要

转录因子(TFs)是控制基因调控网络的关键,而基因调控网络决定着胚胎发生和肿瘤发展过程中的细胞命运。转录因子通过调节癌症干细胞(CSCs)的功能,是促进癌症干性的主要角色。了解TF如何与其下游靶标相互作用,从而在胚胎发生和肿瘤发生过程中决定细胞命运,是一个至关重要的研究领域。癌症干细胞在肿瘤发生和患者预后方面的重要性日益得到认可,因为它们在癌症的发生、发展、转移和耐药性方面发挥着重要作用。然而,传统疗法在消除这一细胞亚群方面效果有限,使得癌细胞间充质干细胞得以持续存在,并有可能形成继发性肿瘤。最近的研究发现,具有类似 CSC 特征的癌细胞和肿瘤也表现出与上皮细胞向间质转化(EMT)相关的基因。EMT相关转录因子(EMT-TFs),如TWIST和Snail/Slug,可上调EMT相关基因,将癌细胞重编程为干细胞样表型。重要的是,EMT-TFs的调控,特别是通过翻译后修饰(PTMs)进行的调控,在癌症转移和获得干细胞样特征方面发挥着重要作用。包括磷酸化、泛素化和SUMOylation在内的PTM可改变EMT-TFs的稳定性、定位和活性,从而调节它们在癌细胞中驱动EMT和干细胞特性的能力。虽然靶向 EMT-TFs 有可能解决干细胞问题,但目前还没有直接解决这一问题的药理学方法。因此,本综述旨在探讨 EMT-TFs 和 CSC-TFs 的作用、它们在细胞发育和癌症中的联系和影响,强调 TF 网络作为治疗干预靶点的潜力。
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Exploiting transcription factors to target EMT and cancer stem cells for tumor modulation and therapy

Transcription factors (TFs) are essential in controlling gene regulatory networks that determine cellular fate during embryogenesis and tumor development. TFs are the major players in promoting cancer stemness by regulating the function of cancer stem cells (CSCs). Understanding how TFs interact with their downstream targets for determining cell fate during embryogenesis and tumor development is a critical area of research. CSCs are increasingly recognized for their significance in tumorigenesis and patient prognosis, as they play a significant role in cancer initiation, progression, metastasis, and treatment resistance. However, traditional therapies have limited effectiveness in eliminating this subset of cells, allowing CSCs to persist and potentially form secondary tumors. Recent studies have revealed that cancer cells and tumors with CSC-like features also exhibit genes related to the epithelial-to-mesenchymal transition (EMT). EMT-associated transcription factors (EMT-TFs) like TWIST and Snail/Slug can upregulate EMT-related genes and reprogram cancer cells into a stem-like phenotype. Importantly, the regulation of EMT-TFs, particularly through post-translational modifications (PTMs), plays a significant role in cancer metastasis and the acquisition of stem cell-like features. PTMs, including phosphorylation, ubiquitination, and SUMOylation, can alter the stability, localization, and activity of EMT-TFs, thereby modulating their ability to drive EMT and stemness properties in cancer cells. Although targeting EMT-TFs holds potential in tackling CSCs, current pharmacological approaches to do so directly are unavailable. Therefore, this review aims to explore the role of EMT- and CSC-TFs, their connection and impact in cellular development and cancer, emphasizing the potential of TF networks as targets for therapeutic intervention.

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来源期刊
Seminars in cancer biology
Seminars in cancer biology 医学-肿瘤学
CiteScore
26.80
自引率
4.10%
发文量
347
审稿时长
15.1 weeks
期刊介绍: Seminars in Cancer Biology (YSCBI) is a specialized review journal that focuses on the field of molecular oncology. Its primary objective is to keep scientists up-to-date with the latest developments in this field. The journal adopts a thematic approach, dedicating each issue to an important topic of interest to cancer biologists. These topics cover a range of research areas, including the underlying genetic and molecular causes of cellular transformation and cancer, as well as the molecular basis of potential therapies. To ensure the highest quality and expertise, every issue is supervised by a guest editor or editors who are internationally recognized experts in the respective field. Each issue features approximately eight to twelve authoritative invited reviews that cover various aspects of the chosen subject area. The ultimate goal of each issue of YSCBI is to offer a cohesive, easily comprehensible, and engaging overview of the selected topic. The journal strives to provide scientists with a coordinated and lively examination of the latest developments in the field of molecular oncology.
期刊最新文献
Extracellular vesicles and biomarker discovery cGAS/STING signalling pathway in senescence and oncogenesis Combined targeting of senescent cells and senescent macrophages: A new idea for integrated treatment of lung cancer Editorial Board Erratum to “RNA regulatory mechanisms controlling TGF-β signaling and EMT in cancer” [Semin. Cancer Biol. 102–103 (2024) 4–16]
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