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Heterogeneous Response of Tumor Cell Lines to Inhibition of Aspartate β-hydroxylase

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Autor
Kanwal, MadihaORCiD Profile - 0000-0003-2316-0368WoS Profile - S-2017-2019Scopus Profile - 57192684455
Poláková, IngridORCiD Profile - 0000-0003-1315-0924WoS Profile - I-9355-2014Scopus Profile - 24766742200
Olsen, Mark
Kasi, Murtaza KhanWoS Profile - KTA-2105-2024Scopus Profile - 59126775600
Tachezy, RuthORCiD Profile - 0000-0001-7689-9727WoS Profile - H-3785-2017Scopus Profile - 6701593451
Šmahel, MichalORCiD Profile - 0000-0002-0366-4932WoS Profile - H-4317-2017Scopus Profile - 6701604039

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Datum vydání
2024
Publikováno v
Journal of Cancer
Ročník / Číslo vydání
15 (11)
ISBN / ISSN
ISSN: 1837-9664
ISBN / ISSN
eISSN: 1837-9664
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Kolekce
  • Přírodovědecká fakulta

Tato publikace má vydavatelskou verzi s DOI 10.7150/jca.94452

Abstrakt
Background: Cancer development involves alterations in key cellular pathways, with aspartate β-hydroxylase (ASPH) emerging as an important player in tumorigenesis. ASPH is upregulated in various cancer types, where it promotes cancer progression mainly by regulating the Notch1 and SRC pathways.Methods: This study explored the responses of various human cervical, pharyngeal, and breast tumor cell lines to second- and third-generation ASPH inhibitors (MO-I-1151 and MO-I-1182) using proliferation, migration, and invasion assays; western blotting; and cell cycle analysis.Results: ASPH inhibition significantly reduced cell proliferation, migration, and invasion and disrupted both the canonical and noncanonical Notch1 pathways. The noncanonical pathway was particularly mediated by AKT signaling. Cell cycle analysis revealed a marked reduction in cyclin D1 expression, further confirming the inhibitory effect of ASPH inhibitors on cell proliferation. Additional analysis revealed G0/G1 arrest and restricted progression into S phase, highlighting the regulatory impact of ASPH inhibitors on the cell cycle. Furthermore, ASPH inhibition induced distinctive alterations in nuclear morphology. The high heterogeneity in the responses of individual tumor cell lines to ASPH inhibitors, both quantitatively and qualitatively, underscores the complex network of mechanisms that are regulated by ASPH and influence the efficacy of ASPH inhibition. The effects of ASPH inhibitors on Notch1 pathway activity, cyclin D1 expression, and nuclear morphology contribute to the understanding of the multifaceted effects of these inhibitors on cancer cell behavior.Conclusion: This study not only suggests that ASPH inhibitors are effective against tumor cell progression, in part through the induction of cell cycle arrest, but also highlights the diverse and heterogeneous effects of these inhibitors on the behavior of tumor cells of different origins.
Klíčová slova
ASPH inhibitors, tumorigenesis, Notch pathway, AKT signaling, heterogeneity, cell cycle
Trvalý odkaz
https://hdl.handle.net/20.500.14178/2439
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WOS:001246598800019
SCOPUS:2-s2.0-85193079932
PUBMED:38817852
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