Inhibition of Notch pathway prevents osteosarcoma growth by cell cycle regulation
The study shows constitutive activation of the Notch pathway in various types of malignancies. However, it remains unclear how the Notch pathway is involved in the pathogenesis of osteosarcoma. We investigated the expression of the Notch pathway molecules in osteosarcoma biopsy specimens and examine...
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Veröffentlicht in: | British journal of cancer 2009-06, Vol.100 (12), p.1957-1965 |
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Format: | Artikel |
Sprache: | eng |
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Zusammenfassung: | The study shows constitutive activation of the Notch pathway in various types of malignancies. However, it remains unclear how the Notch pathway is involved in the pathogenesis of osteosarcoma. We investigated the expression of the Notch pathway molecules in osteosarcoma biopsy specimens and examined the effect of
Notch
pathway inhibition. Real-time PCR revealed overexpression of
Notch2, Jagged1, HEY1
, and
HEY2
. On the other hand,
Notch1
and
DLL1
were downregulated in biopsy specimens. Notch pathway inhibition using
γ
-secretase inhibitor and
CBF1
siRNA slowed the growth of osteosarcomas
in vitro
. In addition,
γ
-secretase inhibitor-treated xenograft models exhibited significantly slower osteosarcoma growth. Cell cycle analysis revealed that
γ
-secretase inhibitor promoted G1 arrest. Real-time PCR and western blot revealed that
γ
-secretase inhibitor reduced the expression of accelerators of the cell cycle, including cyclin D1, cyclin E1, E2, and SKP2. On the other hand, p21
cip1
protein, a cell cycle suppressor, was upregulated by
γ
-secretase inhibitor treatment. These findings suggest that inhibition of Notch pathway suppresses osteosarcoma growth by regulation of cell cycle regulator expression and that the inactivation of the Notch pathway may be a useful approach to the treatment of patients with osteosarcoma. |
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ISSN: | 0007-0920 1532-1827 |
DOI: | 10.1038/sj.bjc.6605060 |