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RUNX1/NPM1/H3K4me3 complex contributes to extracellular matrix remodeling via enhancing FOSL2 transcriptional activation in glioblastoma

Cell Death and Disease, ISSN: 2041-4889, Vol: 15, Issue: 1, Page: 98
2024
  • 5
    Citations
  • 0
    Usage
  • 7
    Captures
  • 1
    Mentions
  • 0
    Social Media
Metric Options:   Counts1 Year3 Year

Metrics Details

  • Citations
    5
  • Captures
    7
  • Mentions
    1
    • News Mentions
      1
      • 1

Most Recent News

Study Data from Tianjin Medical University General Hospital Provide New Insights into Glioblastomas (Runx1/npm1/h3k4me3 Complex Contributes To Extracellular Matrix Remodeling Via Enhancing Fosl2 Transcriptional Activation In Glioblastoma)

2024 FEB 26 (NewsRx) -- By a News Reporter-Staff News Editor at Genomics & Genetics Daily -- Research findings on Oncology - Glioblastomas are discussed

Article Description

Extracellular matrix (ECM) remodeling has been implicated in the tumor malignant progression and immune escape in glioblastoma (GBM). Runt-related transcription factor 1 (RUNX1) is a vital transcriptional factor for promoting tumorigenesis and invasion in mesenchymal subtype of GBM. But the correlation between RUNX1 and ECM genes expression and regulatory mechanism of RUNX1 on ECM genes expression remain poorly understood to date. In this study, by using integral analysis of chromatin immunoprecipitation-sequencing and RNA sequencing, we reported that RUNX1 positively regulated the expression of various ECM-related genes, including Fibronectin 1 (FN1), Collagen type IV alpha 1 chain (COL4A1), and Lumican (LUM), in GBM. Mechanistically, we demonstrated that RUNX1 interacted with Nucleophosmin 1 (NPM1) to maintain the chromatin accessibility and facilitate FOS Like 2, AP-1 Transcription Factor Subunit (FOSL2)-mediated transcriptional activation of ECM-related genes, which was independent of RUNX1’s transcriptional function. ECM remodeling driven by RUNX1 promoted immunosuppressive microenvironment in GBM. In conclusion, this study provides a novel mechanism of RUNX1 binding to NPM1 in driving the ECM remodeling and GBM progression. [Figure not available: see fulltext.]

Bibliographic Details

Cui, Xiaoteng; Huo, Dawei; Wang, Qixue; Wang, Yunfei; Liu, Xiaomin; Zhao, Kai; You, Yongping; Zhang, Junxia; Kang, Chunsheng

Springer Science and Business Media LLC

Immunology and Microbiology; Neuroscience; Biochemistry, Genetics and Molecular Biology

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