Kiss-Szeman_2022_Chem.Sci_13_7132

Reference

Title : Cryo-EM structure of acylpeptide hydrolase reveals substrate selection by multimerization and a multi-state serine-protease triad - Kiss-Szeman_2022_Chem.Sci_13_7132
Author(s) : Kiss-Szeman AJ , Straner P , Jakli I , Hosogi N , Harmat V , Menyhard DK , Perczel A
Ref : Chem Sci , 13 :7132 , 2022
Abstract :

The first structure of tetrameric mammalian acylaminoacyl peptidase, an enzyme that functions as an upstream regulator of the proteasome through the removal of terminal N-acetylated residues from its protein substrates, was determined by cryo-EM and further elucidated by MD simulations. Self-association results in a toroid-shaped quaternary structure, guided by an amyloidogenic beta-edge and unique inserts. With a Pro introduced into its central beta-sheet, sufficient conformational freedom is awarded to the segment containing the catalytic Ser587 that the serine protease catalytic triad alternates between active and latent states. Active site flexibility suggests that the dual function of catalysis and substrate selection are fulfilled by a novel mechanism: substrate entrance is regulated by flexible loops creating a double-gated channel system, while binding of the substrate to the active site is required for stabilization of the catalytic apparatus as a second filter before hydrolysis. The structure not only underlines that within the family of S9 proteases homo-multimerization acts as a crucial tool for substrate selection, but it will also allow drug design targeting of the ubiquitin-proteasome system.

PubMedSearch : Kiss-Szeman_2022_Chem.Sci_13_7132
PubMedID: 35799812
Gene_locus related to this paper: pig-acph

Related information

Gene_locus pig-acph
Structure 7PX8

Citations formats

Kiss-Szeman AJ, Straner P, Jakli I, Hosogi N, Harmat V, Menyhard DK, Perczel A (2022)
Cryo-EM structure of acylpeptide hydrolase reveals substrate selection by multimerization and a multi-state serine-protease triad
Chem Sci 13 :7132

Kiss-Szeman AJ, Straner P, Jakli I, Hosogi N, Harmat V, Menyhard DK, Perczel A (2022)
Chem Sci 13 :7132