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Published on: July 12, 2011

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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.

Cancers
|April 27, 2024
PubMed

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.