Literature DB >> 23534959

Site-specific N-glycosylation of caprine lysostaphin restricts its bacteriolytic activity toward Staphylococcus aureus.

Ching-Ying Huang1, Jih-Tay Hsu, Pei-Hsuan Chung, Winston Teng-Kuei Cheng, Yan-Nian Jiang, Yu-Ten Ju.   

Abstract

Lysostaphin (LYS) is an anti-staphylococcal prokaryotic polypeptide that has been used to avoid Staphylococcus aureus mastitis through transgenic or viral vector approaches exogenously expressed in dairy animals. However, glycosylation of lysostaphin expressed in mammalian cells results in a loss of bioactivity. Until now, the mechanism of site-specific glycosylation of lysostaphin causing this loss of bioactivity remains unknown. An immortalized caprine mammary epithelial cell line (CMEC-08-D) was used to study recombinant lysostaphin fused with goat β-casein, goat lactoferrin (LF) or prokaryotic signal peptides. These constructs were separately ectopically expressed in CMEC-08-D. Results of site-directed mutagenesis show that Asn(125) but not Asn(232) is the exact glycosylation site of lysostaphin expressed in CMEC-08-D. In addition, the effect of glycosylation of lysostaphin on its staphylolytic activity was identified through bacterial plate assay. The data indicated that wild type and mutated N232Q-lysostaphin (Asn(232) to Gln(232) substitution) lacked staphylolytic activity. In contrast, mutated N125Q (Asn(125) to Gln(125) substitution) and N125Q/N232Q-lysostaphin possessed staphylolytic activity. On the other hand, all mutated lysostaphin showed no change in binding ability to S. aureus. This reveals that N-glycosylation at Asn(125) of lysostaphin expressed in a eukaryotic system greatly decreases lysostaphin bacteriolytic activity but does not affect its binding ability to S. aureus.

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Year:  2013        PMID: 23534959     DOI: 10.1080/10495398.2012.760469

Source DB:  PubMed          Journal:  Anim Biotechnol        ISSN: 1049-5398            Impact factor:   2.282


  2 in total

1.  Gene and protein sequence optimization for high-level production of fully active and aglycosylated lysostaphin in Pichia pastoris.

Authors:  Hongliang Zhao; Kristina Blazanovic; Yoonjoo Choi; Chris Bailey-Kellogg; Karl E Griswold
Journal:  Appl Environ Microbiol       Date:  2014-02-21       Impact factor: 4.792

2.  Effect and Mechanisms of Antibacterial Peptide Fraction from Mucus of C. aspersum against Escherichia coli NBIMCC 8785.

Authors:  Yana Topalova; Mihaela Belouhova; Lyudmila Velkova; Aleksandar Dolashki; Nellie Zheleva; Elmira Daskalova; Dimitar Kaynarov; Wolfgang Voelter; Pavlina Dolashka
Journal:  Biomedicines       Date:  2022-03-14
  2 in total

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