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A heterotypic assembly mechanism regulates CHIP E3 ligase activity
Authors:Aniruddha Das  Pankaj Thapa  Ulises Santiago  Nilesh Shanmugam  Katarzyna Banasiak  Katarzyna D&#x;browska  Hendrik Nolte  Natalia A Szulc  Rose M Gathungu  Dominik Cysewski  Marcus Krüger  Micha&#x; Dadlez  Marcin Nowotny  Carlos J Camacho  Thorsten Hoppe  Wojciech Pokrzywa
Abstract:CHIP (C‐terminus of Hsc70‐interacting protein) and its worm ortholog CHN‐1 are E3 ubiquitin ligases that link the chaperone system with the ubiquitin‐proteasome system (UPS). CHN‐1 can cooperate with UFD‐2, another E3 ligase, to accelerate ubiquitin chain formation; however, the basis for the high processivity of this E3s set has remained obscure. Here, we studied the molecular mechanism and function of the CHN‐1–UFD‐2 complex in Caenorhabditis elegans. Our data show that UFD‐2 binding promotes the cooperation between CHN‐1 and ubiquitin‐conjugating E2 enzymes by stabilizing the CHN‐1 U‐box dimer. However, HSP70/HSP‐1 chaperone outcompetes UFD‐2 for CHN‐1 binding, thereby promoting a shift to the autoinhibited CHN‐1 state by acting on a conserved residue in its U‐box domain. The interaction with UFD‐2 enables CHN‐1 to efficiently ubiquitylate and regulate S‐adenosylhomocysteinase (AHCY‐1), a key enzyme in the S‐adenosylmethionine (SAM) regeneration cycle, which is essential for SAM‐dependent methylation. Our results define the molecular mechanism underlying the synergistic cooperation of CHN‐1 and UFD‐2 in substrate ubiquitylation.
Keywords:C  elegans  CHIP/STUB1/CHN‐  1  metabolism  ubiquitin ligase  UFD‐  2
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