Specificity and kinetic studies on the cleavage of various prohormone mono- and paired-basic residue sites by yeast aspartic protease 3.

N X Cawley, H C Chen, M C Beinfeld, Y P Loh
Author Information
  1. N X Cawley: Laboratory of Developmental Neurobiology and the Endocrinology and Reproduction Research Branch, NICHD, National Institutes of Health, Bethesda, Maryland 20892, USA.

Abstract

The specificity and relative efficiency of cleavage of mono- and paired-basic residue processing sites by YAP3p was determined in vitro for a number of prohormone substrates: human ACTH1 39, bovine proinsulin, porcine cholecystokinin 33, cholecystokinin (CCK) 13-33, dynorphin A(1-11), dynorphin B(1-13), and amidorphin. YAP3p generated ACTH1-15 from ACTH1-39. It cleaved proinsulin at the paired-basic residue sites of the B-C junction as well as the C-A junction. Leu-enkephalin-Arg and Leu-enkephalin-Arg-Arg were generated from dynorphin A and dynorphin B, respectively. YAP3p generated Met-enkephalin-Lys-Lys from amidorphin showing that cleavage by this enzyme can occur at a lone pair of Lys residues. CCK33 was cleaved at Lys23 and Arg9, each containing an upstream Arg residue at the P6 and P5 position, respectively. Km values were between 10(-4) and 10(-5) M for the various substrates, with the highest affinity exhibited for the tetrabasic site of ACTH1-39 (1.8 x 10(-5) M). The tetrabasic residue site of ACTH1-39 was cleaved with the highest relative efficiency (kcat/Km = 3.1 x 10(6) m-1 s-1), while that of the monobasic site of CCK13-33 and the paired-basic site of proinsulin B-C junction, were cleaved less efficiently at 4.2 x 10(4) m-1 s-1 and 1.6 x 10(4) m-1 s-1, respectively.

Grants

  1. NS18667/NINDS NIH HHS
  2. NS31602/NINDS NIH HHS

MeSH Term

Adrenocorticotropic Hormone
Amino Acid Sequence
Animals
Aspartic Acid Endopeptidases
Cattle
Cholecystokinin
Dynorphins
Fungal Proteins
Humans
Kinetics
Molecular Sequence Data
Peptide Fragments
Proinsulin
Protein Denaturation
Protein Processing, Post-Translational
Saccharomyces cerevisiae
Saccharomyces cerevisiae Proteins
Substrate Specificity

Chemicals

Fungal Proteins
Peptide Fragments
Saccharomyces cerevisiae Proteins
Dynorphins
Adrenocorticotropic Hormone
Cholecystokinin
Proinsulin
aspartic proteinase A
Aspartic Acid Endopeptidases
YPS1 protein, S cerevisiae

Word Cloud

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