7zva
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Crystal Structure of the native zymogen form of the glutamic-class prolyl-endopeptidase neprosin at 1.80 A resolution.
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Structural highlights
FunctionPublication Abstract from PubMedThe digestion of gluten generates toxic peptides, among which a highly immunogenic proline-rich 33-mer from wheat alpha-gliadin, that trigger coeliac disease. Neprosin from the pitcher plant is a reported prolyl endopeptidase. Here, we produce recombinant neprosin and its mutants, and find that full-length neprosin is a zymogen, which is self-activated at gastric pH by the release of an all-beta pro-domain via a pH-switch mechanism featuring a lysine plug. The catalytic domain is an atypical 7+8-stranded beta-sandwich with an extended active-site cleft containing an unprecedented pair of catalytic glutamates. Neprosin efficiently degrades both gliadin and the 33-mer in vitro under gastric conditions and is reversibly inactivated at pH > 5. Moreover, co-administration of gliadin and the neprosin zymogen at the ratio 500:1 reduces the abundance of the 33-mer in the small intestine of mice by up to 90%. Neprosin therefore founds a family of eukaryotic glutamate endopeptidases that fulfils requisites for a therapeutic glutenase. Molecular and in vivo studies of a glutamate-class prolyl-endopeptidase for coeliac disease therapy.,Del Amo-Maestro L, Mendes SR, Rodriguez-Banqueri A, Garzon-Flores L, Girbal M, Rodriguez-Lagunas MJ, Guevara T, Franch A, Perez-Cano FJ, Eckhard U, Gomis-Ruth FX Nat Commun. 2022 Aug 1;13(1):4446. doi: 10.1038/s41467-022-32215-1. PMID:35915115[1] From MEDLINE®/PubMed®, a database of the U.S. National Library of Medicine. References
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This page was last modified 13:34, 1 February 2024.