A polyamide-chlorambucil conjugate (1R-Chl) arrests a wide range of human cancer cell lines at the G/M phase of the cell cycle and downregulates histone H4c gene expression. However, an siRNA against H4c mRNA causes G/S arrest. Here, we report that 1R-Chl downregulates H4c prior to G/M arrest. G/M arrest is the result of extensive DNA damage by 1R-Chl, which leads to phosphorylation of H2A.X at serine 139, recruitment of the Nbs1 repair protein, and a cascade of unknown events culminating with cdc2 phosphorylation at tyrosine 15 and abolishment of cdc2 kinase activity. A control polyamide-Chl conjugate, which neither binds to the H4c gene nor has an anti-proliferative effect by itself, causes G /M arrest when cells are treated with siRNAs specific for H3 or H4c. ©2006 Landes Bioscience.

A two-hit mechanism for pre-mitotic arrest of cancer cell proliferation by a polyamide-alkylator conjugate

Latella Lucia;
2006

Abstract

A polyamide-chlorambucil conjugate (1R-Chl) arrests a wide range of human cancer cell lines at the G/M phase of the cell cycle and downregulates histone H4c gene expression. However, an siRNA against H4c mRNA causes G/S arrest. Here, we report that 1R-Chl downregulates H4c prior to G/M arrest. G/M arrest is the result of extensive DNA damage by 1R-Chl, which leads to phosphorylation of H2A.X at serine 139, recruitment of the Nbs1 repair protein, and a cascade of unknown events culminating with cdc2 phosphorylation at tyrosine 15 and abolishment of cdc2 kinase activity. A control polyamide-Chl conjugate, which neither binds to the H4c gene nor has an anti-proliferative effect by itself, causes G /M arrest when cells are treated with siRNAs specific for H3 or H4c. ©2006 Landes Bioscience.
2006
FARMACOLOGIA TRASLAZIONALE - IFT
1R-Chl
Cancer arrest
Histone H4c
Polyamide-chlorambucil
Polyamides
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Descrizione: A two-hit mechanism for pre-mitotic arrest of cancer cell proliferation by a polyamide-alkylator conjugate
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/20.500.14243/407721
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