AI Article Synopsis

  • The human GID (hGID) complex is an E3 ubiquitin ligase that plays a crucial role in processes like glucose metabolism and cell cycle regulation, but its functions and substrate interactions are not fully understood.
  • Research using various methods, including cryo-electron microscopy and biochemical assays, reveals that hGID utilizes two different modules, WDR26 and GID4, for recruiting substrates like HBP1 and ZMYND19.
  • The study also finds that the adaptor GID4's substrate binding and ligase activity are influenced by a protein called ARMC8α, and that the structural organization of hGID complexes is characterized by distinct binding sites depending on the specific module engaged.

Article Abstract

The human GID (hGID) complex is a conserved E3 ubiquitin ligase regulating diverse biological processes, including glucose metabolism and cell cycle progression. However, the biochemical function and substrate recognition of the multi-subunit complex remain poorly understood. Using biochemical assays, cross-linking mass spectrometry, and cryo-electron microscopy, we show that hGID engages two distinct modules for substrate recruitment, dependent on either WDR26 or GID4. WDR26 and RanBP9 cooperate to ubiquitinate HBP1 in vitro, while GID4 is dispensable for this reaction. In contrast, GID4 functions as an adaptor for the substrate ZMYND19, which surprisingly lacks a Pro/N-end degron. GID4 substrate binding and ligase activity is regulated by ARMC8α, while the shorter ARMC8β isoform assembles into a stable hGID complex that is unable to recruit GID4. Cryo-EM reconstructions of these hGID complexes reveal the localization of WDR26 within a ring-like, tetrameric architecture and suggest that GID4 and WDR26/Gid7 utilize different, non-overlapping binding sites. Together, these data advance our mechanistic understanding of how the hGID complex recruits cognate substrates and provides insights into the regulation of its E3 ligase activity.

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Source
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC8567238PMC
http://dx.doi.org/10.15252/embr.202152981DOI Listing

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