Identification of a Glutamic Acid and an Aspartic Acid Residue Essential for Catalytic Activity of Aspergillopepsin II, a Non-pepsin Type Acid Proteinase
Aspergillopepsin II from Aspergillus niger var. macrosporus is a non-pepsin type or pepstatin-insensitive acid proteinase. To identify the catalytic residues of the enzyme, all acidic residues that are conserved in the homologous proteinases of family A4 were replaced with Asn, Gln, or Ala using sit...
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Veröffentlicht in: | The Journal of biological chemistry 2000-08, Vol.275 (34), p.26607-26614 |
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Sprache: | eng |
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Zusammenfassung: | Aspergillopepsin II from Aspergillus niger var. macrosporus is a non-pepsin type or pepstatin-insensitive acid proteinase. To identify the catalytic residues of the enzyme, all acidic
residues that are conserved in the homologous proteinases of family A4 were replaced with Asn, Gln, or Ala using site-directed
mutagenesis. The wild-type and mutant pro-enzymes were heterologously expressed in Escherichia coli and refolded in vitro . The wild-type pro-enzyme was shown to be processed into a two-chain active enzyme under acidic conditions. Most of the recombinant
mutant pro-enzymes showed significant activity under acidic conditions because of autocatalytic activation except for the
D123N, D123A, E219Q, and E219A mutants. The D123A, E219Q, and E219A mutants showed neither enzymatic activity nor autoprocessing
activity under acidic conditions. The circular dichroism spectra of the mutant pro- and mature enzymes were essentially the
same as those of the wild-type pro- and mature enzyme, respectively, indicating that the mutant pro-enzymes were correctly
folded. In addition, two single and one double mutant pro-enzyme, D123E, E219D, and D123E/E219D, did not show enzymatic activity
under acidic conditions. Taken together, Glu-219 and Asp-123 are deduced to be the catalytic residues of aspergillopepsin
II. |
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ISSN: | 0021-9258 1083-351X |
DOI: | 10.1074/jbc.M910243199 |