Title of article
PML/RARA Oxidation and Arsenic Binding Initiate the Antileukemia Response of As2O3
Author/Authors
Jeanne ، نويسنده , , Marion and Lallemand-Breitenbach، نويسنده , , Valérie and Ferhi، نويسنده , , Omar and Koken، نويسنده , , Marcel and Le Bras، نويسنده , , Morgane and Duffort، نويسنده , , Stéphanie and Peres، نويسنده , , Laurent and Berthier، نويسنده , , Caroline and Soilihi، نويسنده , , Hassane and Raught، نويسنده , , Brian and de Thé، نويسنده , , Hugues، نويسنده ,
Issue Information
روزنامه با شماره پیاپی سال 2010
Pages
11
From page
88
To page
98
Abstract
Summary
cures acute promyelocytic leukemia (APL) by initiating PML/RARA oncoprotein degradation, through sumoylation of its PML moiety. However, how As2O3 initiates PML sumoylation has remained largely unexplained. As2O3 binds vicinal cysteines and increases reactive oxygen species (ROS) production. We demonstrate that upon As2O3 exposure, PML undergoes ROS-initiated intermolecular disulfide formation and binds arsenic directly. Disulfide-linked PML or PML/RARA multimers form nuclear matrix-associated nuclear bodies (NBs), become sumoylated and are degraded. Hematopoietic progenitors transformed by an As2O3-binding PML/RARA mutant exhibit defective As2O3 response. Conversely, nonarsenical oxidants elicit PML/RARA multimerization, NB-association, degradation, and leukemia response in vivo, but do not affect PLZF/RARA-driven APLs. Thus, PML oxidation regulates NB-biogenesis, while oxidation-enforced PML/RARA multimerization and direct arsenic-binding cooperate to enforce APLʹs exquisite As2O3 sensitivity.
Keywords
HUMDISEASE , Proteins , CELLCYCLE
Journal title
Cancer Cell
Serial Year
2010
Journal title
Cancer Cell
Record number
1337197
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