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Updated: May 26, 2026

Investigation of the Transcriptional Role of a RUNX1 Intronic Silencer by CRISPR/Cas9 Ribonucleoprotein in Acute Myeloid Leukemia Cells
Published on: September 1, 2019
Runx1 is a tumor suppressor gene in the mouse gastrointestinal tract
Remond J A Fijneman1, Rebecca A Anderson, Ethan Richards
1Department of Pathology, VU University Medical Center, Amsterdam, Netherlands.
Abstract:
The Runx1 transcription factor plays an important role in tissue homeostasis through its effects on stem/progenitor cell populations and differentiation. The effect of Runx1 on epithelial differentiation of the secretory cell lineage of the colon was recently demonstrated. This study aimed to examine the role of Runx1 in tumor development in epithelial cells of the gastrointestinal tract. Conditional knockout mice that lacked Runx1 expression in epithelial cells of the GI tract were generated. These mice were crossed onto the Apc(Min) background, killed and their intestinal tumor phenotypes were compared with Apc(Min) Runx1 wild-type control mice. Apc-wild-type Runx1-mutant mice were also examined for tumor development. Colons from Runx1 knockout and wild-type mice were used for genome-wide mRNA expression analyses followed by gene-specific quantitative RT-PCR of whole colon and colon epithelium to identify Runx1 target genes. Runx1 deficiency in intestinal epithelial cells significantly enhanced tumorigenesis in Apc(Min) mice. Notably, epithelial Runx1 deficiency in Apc-wild-type mice was sufficient to cause tumor development. Absence of Runx1 was associated with global changes in the expression of genes involved in inflammation and intestinal metabolism, and with gene sets indicative of a metastatic phenotype and poor prognosis. Gene-specific analysis of Runx1-deficient colon epithelium revealed increased expression of genes linked to an expansion of the stem/progenitor cell population. These results identify Runx1 as a novel tumor suppressor gene for gastrointestinal tumors and support a role for Runx1 in maintaining the balance between the intestinal stem/progenitor cell population and epithelial differentiation of the GI tract.
Insights
Runx1 acts as a tumor suppressor in the gastrointestinal tract. Its absence in epithelial cells promotes tumor development and expansion of stem cells, indicating its crucial role in preventing gastrointestinal tumors.
Area of Science:
- Molecular Biology
- Oncology
- Gastroenterology
Background:
- Runx1 transcription factor is vital for tissue homeostasis, influencing stem/progenitor cells and differentiation.
- Previous studies highlighted Runx1's role in colon secretory cell lineage differentiation.
- The role of Runx1 in gastrointestinal (GI) tract epithelial tumor development remained to be elucidated.
Purpose of the Study:
- To investigate the function of Runx1 in GI epithelial tumor development.
- To determine if Runx1 acts as a tumor suppressor or promoter in the GI tract.
Main Methods:
- Generated conditional knockout mice lacking Runx1 in GI epithelial cells.
- Crossed these mice with Apc(Min) mice to assess tumor phenotypes.
- Performed genome-wide mRNA expression analysis and qRT-PCR on colon tissues.
Main Results:
- Runx1 deficiency in intestinal epithelial cells significantly enhanced tumorigenesis in Apc(Min) mice.
- Epithelial Runx1 deficiency alone was sufficient to induce tumor development in Apc-wild-type mice.
- Runx1 absence correlated with altered gene expression in inflammation, metabolism, metastasis, and stem cell expansion.
Conclusions:
- Runx1 functions as a novel tumor suppressor gene in GI tumors.
- Runx1 is critical for maintaining the balance between stem/progenitor cell populations and epithelial differentiation in the GI tract.
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