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A conformational switch regulates the ubiquitin ligase HUWE1. | LitMetric

A conformational switch regulates the ubiquitin ligase HUWE1.

Elife

Rudolf Virchow Center for Experimental Biomedicine, University of Würzburg, Würzburg, Germany.

Published: February 2017

AI Article Synopsis

  • - The study reveals the crystal structure of the ubiquitin ligase HUWE1, highlighting its asymmetric auto-inhibited dimer form and providing insights into how its activity is regulated in tumorigenesis.
  • - Researchers found that HUWE1 can dimerize in solution and cells, and that disrupting this dimer interface can activate its function, suggesting a potential switch for its regulatory mechanism.
  • - A conserved segment within HUWE1 is identified that prevents dimer formation, and the tumor suppressor p14ARF interacts with this segment, potentially maintaining HUWE1 in an inactive state, which could have implications for cancer therapy.

Article Abstract

The human ubiquitin ligase HUWE1 has key roles in tumorigenesis, yet it is unkown how its activity is regulated. We present the crystal structure of a C-terminal part of HUWE1, including the catalytic domain, and reveal an asymmetric auto-inhibited dimer. We show that HUWE1 dimerizes in solution and self-associates in cells, and that both occurs through the crystallographic dimer interface. We demonstrate that HUWE1 is inhibited in cells and that it can be activated by disruption of the dimer interface. We identify a conserved segment in HUWE1 that counteracts dimer formation by associating with the dimerization region intramolecularly. Our studies reveal, intriguingly, that the tumor suppressor p14ARF binds to this segment and may thus shift the conformational equilibrium of HUWE1 toward the inactive state. We propose a model, in which the activity of HUWE1 underlies conformational control in response to physiological cues-a mechanism that may be exploited for cancer therapy.

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Source
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC5308896PMC
http://dx.doi.org/10.7554/eLife.21036DOI Listing

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