PIASy mediates NEMO sumoylation and NF-κB activation in response to genotoxic stress

AM Mabb, SM Wuerzberger-Davis, S Miyamoto - Nature cell biology, 2006 - nature.com
AM Mabb, SM Wuerzberger-Davis, S Miyamoto
Nature cell biology, 2006nature.com
Protein modification by SUMO (small ubiquitin-like modifier) is an important regulatory
mechanism for multiple cellular processes,. SUMO-1 modification of NEMO (NF-κB essential
modulator), the IκB kinase (IKK) regulatory subunit, is critical for activation of NF-κB by
genotoxic agents. However, the SUMO ligase, and the mechanisms involved in NEMO
sumoylation, remain unknown. Here, we demonstrate that although small interfering RNAs
(siRNAs) against PIASy (protein inhibitor of activated STATy) inhibit NEMO sumoylation and …
Abstract
Protein modification by SUMO (small ubiquitin-like modifier) is an important regulatory mechanism for multiple cellular processes,. SUMO-1 modification of NEMO (NF-κB essential modulator), the IκB kinase (IKK) regulatory subunit, is critical for activation of NF-κB by genotoxic agents. However, the SUMO ligase, and the mechanisms involved in NEMO sumoylation, remain unknown. Here, we demonstrate that although small interfering RNAs (siRNAs) against PIASy (protein inhibitor of activated STATy) inhibit NEMO sumoylation and NF-κB activation in response to genotoxic agents, overexpression of PIASy enhances these events. PIASy preferentially stimulates site-selective modification of NEMO by SUMO-1, but not SUMO-2 and SUMO–3, in vitro. PIASy–NEMO interaction is increased by genotoxic stress and occurs in the nucleus in a manner mutually exclusive with IKK interaction. In addition, hydrogen peroxide (H2O2) also increases PIASy–NEMO interaction and NEMO sumoylation, whereas antioxidants prevent these events induced by DNA-damaging agents. Our findings demonstrate that PIASy is the first SUMO ligase for NEMO whose substrate specificity seems to be controlled by IKK interaction, subcellular targeting and oxidative stress conditions.
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