Characterization of novel MPS1 inhibitors with preclinical anticancer activity

M Jemaà1, L Galluzzi, O Kepp

  • 11] INSERM, U848, Villejuif, France [2] Institut Gustave Roussy, Villejuif, France [3] Université Paris Sud/Paris XI, Le Kremlin Bicêtre, France [4] CNRS, UMR 5237, Montpellier, France.

Insights

Novel Monopolar spindle 1 (MPS1) inhibitors halt cancer cell proliferation by disrupting mitosis and inducing cell death. Combining MPS1 inhibitors with paclitaxel shows synergistic anticancer effects in vitro and in vivo.

Area of Science:

  • Oncology
  • Cell Biology
  • Biochemistry

Background:

  • Monopolar spindle 1 (MPS1) is a mitotic kinase overexpressed in various human cancers.
  • MPS1 plays a crucial role in chromosome alignment and the spindle assembly checkpoint (SAC).

Purpose of the Study:

  • To identify and characterize novel small molecule inhibitors of MPS1.
  • To evaluate the anticancer potential of MPS1 inhibitors, both as single agents and in combination therapy.

Main Methods:

  • Identification and functional characterization of two classes of MPS1 inhibitors: triazolopyridines (Mps-BAY1) and imidazopyrazines (Mps-BAY2a, Mps-BAY2b).
  • Assessment of cellular proliferation, mitotic progression, chromosome alignment, SAC activity, and cell death pathways in cancer cells treated with MPS1 inhibitors.
  • Videomicroscopic cell fate profiling and analysis of synergistic effects with paclitaxel in vitro and in vivo tumor xenograft models.

Main Results:

  • MPS1 inhibitors (Mps-BAY1, Mps-BAY2a) effectively arrested cancer cell proliferation, leading to polyploidization and/or cell death.
  • Treatment induced mitotic perturbations, including inefficient chromosomal congression, premature anaphase entry, and severe anaphase defects.
  • Combination therapy with paclitaxel demonstrated synergistic anticancer activity, significantly reducing tumor growth in vivo.

Conclusions:

  • Novel MPS1 inhibitors exhibit potent anticancer activity by inducing mitotic catastrophe.
  • These inhibitors represent promising therapeutic agents for cancer treatment, either alone or in combination with microtubule-targeting agents like paclitaxel.

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