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Updated: Jun 27, 2025

Mouse Bladder Wall Injection
Published on: July 12, 2011
Lysine Methyltransferase 9 (KMT9) Is an Actionable Target in Muscle-Invasive Bladder Cancer
Sainab Totonji1, Anna Ramos-Triguero1, Dominica Willmann1
1Klinik für Urologie und Zentrale Klinische Forschung, Klinikum der Albert-Ludwigs-Universität Freiburg, 79106 Freiburg, Germany.
Abstract:
Novel treatment modalities are imperative for the challenging management of muscle-invasive and metastatic BC to improve patient survival rates. The recently identified KMT9, an obligate heterodimer composed of KMT9α and KMT9β, regulates the growth of various types of tumors such as prostate, lung, and colon cancer. While the overexpression of KMT9α was previously observed to be associated with aggressive basal-like MIBC in an analysis of patients' tissue samples, a potential functional role of KMT9 in this type of cancer has not been investigated to date. In this study, we show that KMT9 regulates proliferation, migration, and invasion of various MIBC cell lines with different genetic mutations. KMT9α depletion results in the differential expression of genes regulating the cell cycle, cell adhesion, and migration. Differentially expressed genes include oncogenes such as EGFR and AKT1 as well as mediators of cell adhesion or migration such as DAG1 and ITGA6. Reduced cell proliferation upon KMT9α depletion is also observed in Pten/Trp53 knockout bladder tumor organoids, which cannot be rescued with an enzymatically inactive KMT9α mutant. In accordance with the idea that the catalytic activity of KMT9 is required for the control of cellular processes in MIBC, a recently developed small-molecule inhibitor of KMT9 (KMI169) also impairs cancer cell proliferation. Since KMT9α depletion also restricts the growth of xenografts in mice, our data suggest that KMT9 is an actionable novel therapeutic target for the treatment of MIBC.
Insights
KMT9 regulates key cancer processes in muscle-invasive bladder cancer (MIBC). Inhibiting KMT9 shows promise as a novel therapeutic strategy to treat MIBC and improve patient outcomes.
Area of Science:
- Oncology
- Molecular Biology
- Cancer Genetics
Background:
- Muscle-invasive bladder cancer (MIBC) requires novel treatments to improve survival.
- KMT9, a heterodimer of KMT9α and KMT9β, is implicated in various cancers.
- KMT9α overexpression correlates with aggressive basal-like MIBC, but its functional role is unknown.
Purpose of the Study:
- To investigate the functional role of KMT9 in muscle-invasive bladder cancer.
- To determine if KMT9 is a potential therapeutic target for MIBC.
Main Methods:
- Depletion of KMT9α in MIBC cell lines.
- Analysis of gene expression changes related to cell cycle, adhesion, and migration.
- Assessment of KMT9 inhibition using a small-molecule inhibitor (KMI169).
- Evaluation of KMT9α depletion in Pten/Trp53 knockout bladder tumor organoids and mouse xenografts.
Main Results:
- KMT9 regulates proliferation, migration, and invasion in MIBC cell lines.
- KMT9α depletion alters expression of oncogenes (e.g., EGFR, AKT1) and adhesion molecules (e.g., DAG1, ITGA6).
- Enzymatically inactive KMT9α mutant and KMT9 inhibitor KMI169 impair cancer cell proliferation.
- KMT9α depletion restricts tumor growth in mouse xenografts.
Conclusions:
- KMT9 plays a critical role in regulating cellular processes essential for MIBC progression.
- The catalytic activity of KMT9 is necessary for its function in MIBC.
- KMT9 represents a promising and actionable therapeutic target for muscle-invasive bladder cancer.

