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Bitte verwenden Sie diesen Link, wenn Sie dieses Dokument zitieren oder verlinken wollen: https://nbn-resolving.org/urn:nbn:de:gbv:9-opus-64543

Structural and Biophysical Insights into SPINK1 Bound to Human Cationic Trypsin

  • (1) The serine protease inhibitor Kazal type 1 (SPINK1) inhibits trypsin activity in zymogen granules of pancreatic acinar cells. Several mutations in the SPINK1 gene are associated with acute recurrent pancreatitis (ARP) and chronic pancreatitis (CP). The most common variant is SPINK1 p.N34S. Although this mutation was identified two decades ago, the mechanism of action has remained elusive. (2) SPINK1 and human cationic trypsin (TRY1) were expressed in E. coli, and inhibitory activities were determined. Crystals of SPINK1–TRY1 complexes were grown by using the hanging-drop method, and phases were solved by molecular replacement. (3) Both SPINK1 variants show similar inhibitory behavior toward TRY1. The crystal structures are almost identical, with minor differences in the mutated loop. Both complexes show an unexpected rotamer conformation of the His63 residue in TRY1, which is a member of the catalytic triad. (4) The SPINK1 p.N34S mutation does not affect the inhibitory behavior or the overall structure of the protein. Therefore, the pathophysiological mechanism of action of the p.N34S variant cannot be explained mechanistically or structurally at the protein level. The observed histidine conformation is part of a mechanism for SPINK1 that can explain the exceptional proteolytic stability of this inhibitor.

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Metadaten
Author: Felix Nagel, Gottfried J. Palm, Norman Geist, Thomas C. R. McDonnell, Anne Susemihl, Britta Girbardt, Julia Mayerle, Markus M. Lerch, Michael Lammers, Mihaela Delcea
URN:urn:nbn:de:gbv:9-opus-64543
DOI:https://doi.org/10.3390/ijms23073468
ISSN:1422-0067
Parent Title (English):International Journal of Molecular Sciences
Publisher:MDPI
Place of publication:Basel
Document Type:Article
Language:English
Date of first Publication:2022/03/23
Release Date:2022/11/15
Tag:Kazal inhibitor; N34S; catalytic triad; crystal structure; isothermal titration calorimetry (ITC); molecular dynamics simulations (MDS); pancreas; pancreatitis; protein–protein interaction; serine protease; standard mechanism; surface plasmon resonance (SPR)
Volume:23
Issue:7
Faculties:Mathematisch-Naturwissenschaftliche Fakultät / Institut für Biochemie
Collections:weitere DFG-förderfähige Artikel
Licence (German):License LogoCreative Commons - Namensnennung