The pseudosubstrate inhibitor Acm1 inhibits the anaphase-promoting complex/cyclosome by combining high-affinity

Liang Qin1, Arda Mizrak2,3, Dimitrius Santiago P S F Guimarães1

  • 1Department of Biochemistry and Center for Cancer Research, Purdue University, West Lafayette, Indiana 47907.

Insights

The anaphase-promoting complex/cyclosome (APC/C) inhibitor Acm1 uses its destruction box (D-box) to block cell division. A conserved D-box extension disrupts APC/C activity by interfering with Doc1/Apc10 binding, revealing a novel pseudosubstrate inhibition mechanism.

Area of Science:

  • Cell Biology
  • Molecular Biology
  • Biochemistry

Background:

  • The anaphase-promoting complex/cyclosome (APC/C) is a crucial ubiquitin ligase regulating cell division.
  • APC/C substrate recognition depends on degron motifs binding to activators like Cdc20 and Cdh1.
  • The destruction box (D-box) is a common degron essential for substrate degradation and APC/C holoenzyme stability.

Purpose of the Study:

  • To investigate the mechanism by which the pseudosubstrate inhibitor Acm1 suppresses APC/C activity.
  • To identify the specific motifs within Acm1 responsible for APC/C inhibition.
  • To elucidate how Acm1's D-box interaction affects APC/C function and processivity.

Main Methods:

  • Site-directed mutagenesis of the Acm1 D-box in budding yeast (Saccharomyces cerevisiae).
  • In vivo analysis of Acm1 as an APC/CCdh1 substrate.
  • Biochemical assays to assess APC/C activity and interaction with Doc1/Apc10.

Main Results:

  • Mutation of Acm1's D-box converted it into an ABBA motif-dependent substrate, indicating the D-box's inhibitory role.
  • A conserved C-terminal sequence within the Acm1 D-box was identified as essential and sufficient for APC/C inhibition.
  • The D-box extension was found to inhibit APC/C reaction processivity by disrupting the Doc1/Apc10 interaction.

Conclusions:

  • Acm1 employs a D-box extension to inhibit APC/C activity through pseudosubstrate binding.
  • This mechanism involves high-affinity activator binding coupled with disruption of Doc1/Apc10 function.
  • The study redefines the D-box as a 12-amino acid motif important for substrate degradation and APC/C regulation.

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