Proteolytic activation of human cathepsin A

  • J Biol Chem. 2014 Apr 25;289(17):11592-11600. doi: 10.1074/jbc.M113.524280.
Nilima Kolli  1 Scott C Garman  2
Affiliations
  • 1. Department of Biochemistry and Molecular Biology, University of Massachusetts, Amherst, Massachusetts 01003; Program in Molecular and Cellular Biology, University of Massachusetts, Amherst, Massachusetts 01003.
  • 2. Department of Biochemistry and Molecular Biology, University of Massachusetts, Amherst, Massachusetts 01003; Program in Molecular and Cellular Biology, University of Massachusetts, Amherst, Massachusetts 01003. Electronic address: [email protected].
Abstract

Galactosialidosis is a human lysosomal storage disease caused by deficiency in the multifunctional lysosomal protease Cathepsin A (also known as protective protein/Cathepsin A, PPCA, catA, HPP, and CTSA; EC 3.4.16.5). Previous structural work on the inactive precursor human Cathepsin A (zymogen) led to a two-stage model for activation, where proteolysis of a 1.6-kDa excision peptide is followed by a conformational change in a blocking peptide occluding the active site. Here we present evidence for an alternate model of activation of human Cathepsin A, needing only cleavage of a 3.3-kDa excision peptide to yield full enzymatic activity, with no conformational change required. We present x-ray crystallographic, mass spectrometric, amino acid Sequencing, enzymatic, and cellular data to support the cleavage-only activation model. The results clarify a longstanding question about the mechanism of Cathepsin A activation and point to new avenues for the design of mechanism-based inhibitors of the enzyme.

Keywords
Glycoprotein Structure; Lysosomal Glycoproteins; Protease; Proteolytic Enzymes; X-ray Crystallography.
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