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Details on Person Dimerization of substrate adaptors can facilitate cullin-mediated ubiquitylation of proteins by a "tethering" mechanism: a two-site interaction model for the Nrf2-Keap1 complex

Class:IdLiteratureReference:9766088
_displayNameDimerization of substrate adaptors can facilitate cullin-mediated ubiquitylation of proteins by a "tethering" mechanism: a two-site interaction model for the Nrf2-Keap1 complex
_timestamp2022-02-17 21:08:03
author[Person:8932349] McMahon, Michael
[Person:9766087] Thomas, Nerys
[Person:9708541] Itoh, Ken
[Person:421451] Yamamoto, M
[Person:5432693] Hayes, John D
created[InstanceEdit:9766089] Rothfels, Karen, 2022-02-17
journalJ Biol Chem
pages24756-68
pubMedIdentifier16790436
titleDimerization of substrate adaptors can facilitate cullin-mediated ubiquitylation of proteins by a "tethering" mechanism: a two-site interaction model for the Nrf2-Keap1 complex
volume281
year2006
(literatureReference)[RegulationReference:9766578] Negative regulation by 'NFE2L2 inducers:KEAP1:CUL3:RBX1:NFE2L2 [cytosol]' Dimerization of substrate adaptors can facilitate cullin-mediated ubiquitylation of proteins by a "tethering" mechanism: a two-site interaction model for the Nrf2-Keap1 complex
[Reaction:8932327] NFE2L2 binds KEAP1:NEDD8-CUL3:RBX1 [Homo sapiens]
[Reaction:9796036] New-NFE2L2 binds KEAP1:NEDD8-CUL3:RBX1 [Homo sapiens]
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