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Characterization of the Effects of Migrastatic Inhibitors on 3D Tumor Spheroid Invasion by High-resolution Confocal Microscopy
Published on: September 16, 2019
Characterization of novel MPS1 inhibitors with preclinical anticancer activity
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.
Abstract:
Monopolar spindle 1 (MPS1), a mitotic kinase that is overexpressed in several human cancers, contributes to the alignment of chromosomes to the metaphase plate as well as to the execution of the spindle assembly checkpoint (SAC). Here, we report the identification and functional characterization of three novel inhibitors of MPS1 of two independent structural classes, N-(4-{2-[(2-cyanophenyl)amino][1,2,4]triazolo[1,5-a]pyridin-6-yl}phenyl)-2-phenylacetamide (Mps-BAY1) (a triazolopyridine), N-cyclopropyl-4-{8-[(2-methylpropyl)amino]-6-(quinolin-5-yl)imidazo[1,2-a]pyrazin-3-yl}benzamide (Mps-BAY2a) and N-cyclopropyl-4-{8-(isobutylamino)imidazo[1,2-a]pyrazin-3-yl}benzamide (Mps-BAY2b) (two imidazopyrazines). By selectively inactivating MPS1, these small inhibitors can arrest the proliferation of cancer cells, causing their polyploidization and/or their demise. Cancer cells treated with Mps-BAY1 or Mps-BAY2a manifested multiple signs of mitotic perturbation including inefficient chromosomal congression during metaphase, unscheduled SAC inactivation and severe anaphase defects. Videomicroscopic cell fate profiling of histone 2B-green fluorescent protein-expressing cells revealed the capacity of MPS1 inhibitors to subvert the correct timing of mitosis as they induce a premature anaphase entry in the context of misaligned metaphase plates. Hence, in the presence of MPS1 inhibitors, cells either divided in a bipolar (but often asymmetric) manner or entered one or more rounds of abortive mitoses, generating gross aneuploidy and polyploidy, respectively. In both cases, cells ultimately succumbed to the mitotic catastrophe-induced activation of the mitochondrial pathway of apoptosis. Of note, low doses of MPS1 inhibitors and paclitaxel (a microtubular poison) synergized at increasing the frequency of chromosome misalignments and missegregations in the context of SAC inactivation. This resulted in massive polyploidization followed by the activation of mitotic catastrophe. A synergistic interaction between paclitaxel and MPS1 inhibitors could also be demonstrated in vivo, as the combination of these agents efficiently reduced the growth of tumor xenografts and exerted superior antineoplastic effects compared with either compound employed alone. Altogether, these results suggest that MPS1 inhibitors may exert robust anticancer activity, either as standalone therapeutic interventions or combined with microtubule-targeting chemicals.
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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