Structure
Volume 22, Issue 9, 2 September 2014, Pages 1333-1340
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Short Article
Structures of Neutrophil Serine Protease 4 Reveal an Unusual Mechanism of Substrate Recognition by a Trypsin-Fold Protease

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Highlights

  • NSP4 is an evolutionarily conserved arginine-specific neutrophil protease

  • Structures show an occluded S1 pocket, a unique feature among trypsin-like proteases

  • P1-arginine is in a noncanonical “up” conformation stabilized by an H-bond network

  • This paradigm permits processing of substrates after modified arginine residues

Summary

Trypsin-fold proteases, the largest mammalian protease family, are classified by their primary substrate specificity into one of three categories, trypsin-like, chymotrypsin-like, and elastase-like, based on key structural features of their active site. However, the recently discovered neutrophil serine protease 4 (NSP4, also known as PRSS57) presents a paradox: NSP4 exhibits a trypsin-like specificity for cleaving substrates after arginine residues, but it bears elastase-like specificity determining residues in the active site. Here we show that NSP4 has a fully occluded S1 pocket and that the substrate P1-arginine adopts a noncanonical “up” conformation stabilized by a solvent-exposed H-bond network. This uncommon arrangement, conserved in all NSP4 orthologs, enables NSP4 to process substrates after both arginine as well as post-translationally modified arginine residues, such as methylarginine and citrulline. These findings establish a distinct paradigm for substrate recognition by a trypsin-fold protease and provide insights into the function of NSP4.

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