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Updated: Feb 4, 2026

In Ovo Xenografting of Patient-Derived Acute Lymphoblastic Leukemia (ALL) Cells (PDX-ALL)
Published on: August 1, 2025
Increasing G9a automethylation sensitizes B acute lymphoblastic leukemia cells to glucocorticoid-induced death
Coralie Poulard1, Estelle Baulu2, Brian H Lee2
1Department of Biochemistry and Molecular Medicine, Norris Comprehensive Cancer Center, University of Southern California, Los Angeles, CA, 90089, USA. coraliepoulard69@gmail.com.
Abstract:
Synthetic glucocorticoids (GCs) are used to treat lymphoid cancers, but many patients develop resistance to treatment, especially to GC. By identifying genes that influence sensitivity to GC-induced cell death, we found that histone methyltransferases G9a and G9a-like protein (GLP), two glucocorticoid receptor (GR) coactivators, are required for GC-induced cell death in acute lymphoblastic leukemia (B-ALL) cell line Nalm6. We previously established in a few selected genes that automethylated G9a and GLP recruit heterochromatin protein 1γ (HP1γ) as another required coactivator. Here, we used a genome-wide analysis to show that HP1γ is selectively required for GC-regulated expression of the great majority of GR target genes that require G9a and GLP. To further address the importance of G9a and GLP methylation in this process and in cell physiology, we found that JIB-04, a selective JmjC family lysine demethylase inhibitor, increased G9a methylation and thereby increased G9a binding to HP1γ. This led to increased expression of GR target genes regulated by G9a, GLP and HP1γ and enhanced Nalm6 cell death. Finally, the KDM4 lysine demethylase subfamily demethylates G9a in vitro, in contrast to other KDM enzymes tested. Thus, inhibiting G9a/GLP demethylation potentially represents a novel method to restore sensitivity of treatment-resistant B-ALL tumors to GC-induced cell death.
Insights
Histone methyltransferases G9a and GLP are crucial for glucocorticoid (GC) sensitivity in B-ALL. Inhibiting their demethylation enhances GC-induced cell death, offering a new strategy against treatment-resistant leukemia.
Area of Science:
- Oncology
- Molecular Biology
- Epigenetics
Background:
- Glucocorticoids (GCs) are vital for lymphoid cancer treatment.
- Treatment resistance, particularly to GCs, is a significant clinical challenge.
- Understanding GC resistance mechanisms is crucial for improving patient outcomes.
Purpose of the Study:
- To identify genes influencing sensitivity to GC-induced cell death in B-ALL.
- To investigate the role of G9a, GLP, and HP1γ in GC response.
- To explore therapeutic strategies targeting G9a/GLP demethylation.
Main Methods:
- Genome-wide analysis to identify key coactivators.
- Assessing the requirement of HP1γ for GC-regulated gene expression.
- Utilizing JIB-04, a JmjC family lysine demethylase inhibitor.
- In vitro demethylation assays using KDM4 subfamily enzymes.
Main Results:
- G9a and GLP are essential for GC-induced cell death in Nalm6 B-ALL cells.
- HP1γ is selectively required for the expression of most G9a/GLP-dependent GR target genes.
- JIB-04 treatment increased G9a methylation, HP1γ binding, and GC-regulated gene expression.
- Inhibition of G9a/GLP demethylation enhanced Nalm6 cell death.
Conclusions:
- G9a, GLP, and HP1γ play a critical role in GC sensitivity.
- Inhibiting G9a/GLP demethylation can restore GC sensitivity in B-ALL.
- Targeting G9a/GLP demethylation presents a promising therapeutic avenue for resistant B-ALL.
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