Disulfide bonds and glycosylation in fungal peroxidases.

Autor: Limongi, Paola, Kjalke, Marianne, Vind, Jesper, Tams, Jeppe W., Johansson, Tomas, Welinder, Karen G.
Předmět:
Zdroj: European Journal of Biochemistry; 1/15/95, Vol. 227 Issue 1/2, p270-276, 7p
Abstrakt: Four conserved disulfide bonds and N-linked and O-linked glycans of extracellular fungal peroxidases have been identified from studies of a lignin and a manganese peroxidase from Trametes versicolor, and from Coprinus cinereus peroxidase (CIP) and recombinant C. cinereus peroxidase (rCIP) expressed in Aspergillus oryzae, The eight cysteine residues are linked 1–3, 2–7, 4–5 and 6–8, and are located differently from the four conserved disulfide bridges present in the homologous plant peroxidases. CIP and rCIP were identical in their glycosylation pattern, although the extent of glycan chain heterogeneity depended on the fermentation batch. CIP and rCIP have one N-linked glycan composed only of GlcNAc and Man at residue ASn142. and two O-linked glycans near the C-terminus. The major glycoform consists of single Man residues m Thr331 and at Ser338, T. versicolor lignin isoperoxidase TvLP10 contains a single N-linked glycan composed of (GlcNAc)2Man5 bound to Asn103, whereas (GlcNAc)2Man3 was found in T. versicolor manganese isoperoxidase TvMP2 at the same position. In addition, mass spectrometry of the C-terminal peptide of TvMP2 indicated the presence of five Man residues in O-linked glycans. No phosphate was found in these fungal peroxidases. [ABSTRACT FROM AUTHOR]
Databáze: Complementary Index