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Structural Insight into Ubiquitin-Like Protein Recognition and Oligomeric States of JAMM/MPN+ Proteases.


ABSTRACT: JAMM/MPN+ metalloproteases cleave (iso)peptide bonds C-terminal to ubiquitin (Ub) and ubiquitin-like protein (Ubl) domains and typically require association with protein partners for activity, which has limited a molecular understanding of enzyme function. To provide an insight, we solved the X-ray crystal structures of a catalytically active Pyrococcus furiosus JAMM/MPN+ metalloprotease (PfJAMM1) alone and in complex with a Ubl (PfSAMP2) to 1.7- to 1.9-Å resolution. PfJAMM1 was found to have a redox sensitive dimer interface. In the PfJAMM1-bound state of the SAMP2, a Ubl-to-Ub conformational change was detected. Surprisingly, distant homologs of PfJAMM1 were found to be closely related in 3D structure, including the interface for Ubl/Ub binding. From this work, we infer the molecular basis of how JAMM/MPN+ proteases recognize and cleave Ubl/Ub tags from diverse proteins and highlight an ?2-helix structural element that is conserved and crucial for binding and removing the Ubl SAMP2 tag.

SUBMITTER: Cao S 

PROVIDER: S-EPMC5831132 | biostudies-literature | 2017 Jun

REPOSITORIES: biostudies-literature

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Structural Insight into Ubiquitin-Like Protein Recognition and Oligomeric States of JAMM/MPN<sup>+</sup> Proteases.

Cao Shiyun S   Engilberge Sylvain S   Girard Eric E   Gabel Frank F   Franzetti Bruno B   Maupin-Furlow Julie A JA  

Structure (London, England : 1993) 20170504 6


JAMM/MPN<sup>+</sup> metalloproteases cleave (iso)peptide bonds C-terminal to ubiquitin (Ub) and ubiquitin-like protein (Ubl) domains and typically require association with protein partners for activity, which has limited a molecular understanding of enzyme function. To provide an insight, we solved the X-ray crystal structures of a catalytically active Pyrococcus furiosus JAMM/MPN<sup>+</sup> metalloprotease (PfJAMM1) alone and in complex with a Ubl (PfSAMP2) to 1.7- to 1.9-Å resolution. PfJAMM  ...[more]

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