4.6 Article

Dysregulated FOXM1 signaling in the regulation of cancer stem cells

期刊

SEMINARS IN CANCER BIOLOGY
卷 86, 期 -, 页码 107-121

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ACADEMIC PRESS LTD- ELSEVIER SCIENCE LTD
DOI: 10.1016/j.semcancer.2022.07.009

关键词

Malignancies; Signaling pathways; FOXM1; Cancer stem cells; Self-renewal; Carcinogenesis

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资金

  1. Medical Research Center [IRGC-05-SI-18-307]
  2. Hamad Medical Corporation, Doha, Qatar

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Since the introduction of the cancer stem cell paradigm, significant progress has been made in understanding the role of cancer stem cells (CSCs) in tumor biology, including metastasis and drug resistance. The transcription factor FOXM1 has emerged as a key regulator of CSCs, involved in their formation, maintenance, and functionality. This review summarizes the evidence for the mechanisms by which FOXM1 promotes stemness in different types of cancers and highlights its prognostic importance.
Since the introduction of the cancer stem cell (CSC) paradigm, significant advances have been made in understanding the functional and biological plasticity of these elusive components in malignancies. Endowed with self-renewing abilities and multilineage differentiation potential, CSCs have emerged as cellular drivers of virtually all facets of tumor biology, including metastasis, tumor recurrence/relapse, and drug resistance. The functional and biological characteristics of CSCs, such as self-renewal, cell fate decisions, survival, proliferation, and differentiation are regulated by an array of extracellular factors, signaling pathways, and pluripotent transcriptional factors. Besides the well-characterized regulatory role of transcription factors OCT4, SOX2, NANOG, KLF4, and MYC in CSCs, evidence for the central role of Forkhead box transcription factor FOXM1 in the establishment, maintenance, and functions of CSCs is accumulating. Conventionally identified as a master regulator of the cell cycle, a comprehensive understanding of this molecule has revealed its multifarious oncogenic potential and uncovered its role in angiogenesis, invasion, migration, self-renewal, and drug resistance. This review compiles the large body of literature that has accumulated in recent years that provides evidence for the mechanisms by which FOXM1 expression promotes stemness in glioblastoma, breast, colon, ovarian, lung, hepatic, and pancreatic carcinomas. We have also compiled the data showing the association of stem cell mediators with FOXM1 using TCGA mRNA expression data. Further, the prognostic importance of FOXM1 and other stem cell markers is presented. The delineation of FOXM1-mediated regulation of CSCs can aid in the development of molecularly targeted pharmacological approaches directed at the selective eradication of CSCs in several human malignancies.

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