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GartnerAnton

Gartner, Anton
DNA Damage Response and Genetic Toxicology
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The Balance between Mono- and NEDD8-Chains Controlled by NEDP1 upon DNA Damage Is a Regulatory Module of the HSP70 ATPase Activity

Author(s)
Bailly, Aymeric P.Perrin, AurelienSerrano-Macia, MarinaMaghames, ChantalLeidecker, OrsolyaTrauchessec, HeleneMartinez-Chantar, M.L.Gartner, AntonXirodimas, Dimitris P.
Issued Date
2019-10
DOI
10.1016/j.celrep.2019.08.070
URI
https://scholarworks.unist.ac.kr/handle/201301/65728
Citation
CELL REPORTS, v.29, no.1, pp.212 - 224.e8
Abstract
Ubiquitin and ubiquitin-like chains are finely balanced by conjugating and de-conjugating enzymes. Alterations in this balance trigger the response to stress conditions and are often observed in pathologies. How such changes are detected is not well understood. We identify the HSP70 chaperone as a sensor of changes in the balance between mono- and poly-NEDDylation. Upon DNA damage, the induction of the de-NEDDylating enzyme NEDP1 restricts the formation of NEDD8 chains, mainly through lysines K11/K48. This promotes APAF1 oligomerization and apoptosis induction, a step that requires the HSP70 ATPase activity. HSP70 binds to NEDD8, and, in vitro, the conversion of NEDD8 chains into mono-NEDD8 stimulates HSP70 ATPase activity. This effect is independent of NEDD8 conjugation onto substrates. The study indicates that the NEDD8 cycle is a regulatory module of HSP70 function. These findings may be important in tumorigenesis, as we find decreased NEDP1 levels in hepatocellular carcinoma with concomitant accumulation of NEDD8 conjugates.
Publisher
Cell Press
ISSN
2211-1247
Keyword (Author)
APAF1apoptosisC. elegansDNA damagehepatocellular carcinomaHSP70K11/K48 chainsNEDD8NEDP1/SENP8proteomics

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