Two Distinct C-Type Lysozymes in Goldfish: Molecular Characterization, Antimicrobial Potential, and Transcriptional Regulation in Response to Opposing Effects of Bacteria/Lipopolysaccharide and Dexamethasone/Leptin

Int J Mol Sci. 2020 Jan 13;21(2):501. doi: 10.3390/ijms21020501.

Abstract

Lysozymes are key antimicrobial peptides in the host innate immune system that protect against pathogen infection. In this study, the full-length cDNAs of two c-type lysozymes (gfLyz-C1 and gfLyz-C2) were cloned from goldfish (Carassius auratus). The structural domains, three-dimensional structures, and amino acid sequences of gfLyz-C1 and gfLyz-C2 were highly comparable, as the two proteins shared 89.7% sequence identity. The gfLyz-C1 and gfLyz-C2 recombinant proteins were generated in the insoluble fractions of an Escherichia coli system. Based on the results of lysoplate and turbidimetric assays, gfLyz-C1 and gfLyz-C2 showed broad-spectrum antimicrobial properties with high levels of activity against Micrococcus lysodeikticus, Vibrio parahemolyticus, and Edwardsiella tarda, and relatively low activity against E. coli. Both gfLyz-C1 and gfLyz-C2 mRNAs were mainly expressed in the trunk kidney and head kidney, and gfLyz-C1 was expressed at much higher levels than gfLyz-C2 in the corresponding tissues. The expression of the gfLyz-C1 and gfLyz-C2 transcripts in the trunk kidney and head kidney was induced in these tissues by challenge with heat-inactivated E. coli and lipopolysaccharides (LPS), and the transcriptional responses of gfLyz-C1 were more intense. In goldfish primary trunk kidney cells, the levels of the gfLyz-C1 and gfLyz-C2 transcripts were upregulated by heat-inactivated E. coli, V. parahemolyticus, and E. tarda, as well as LPS, and downregulated by treatment with dexamethasone and leptins. Overall, this study may provide new insights that will improve our understanding of the roles of c-type lysozymes in the innate immunity of cyprinid fish, including the structural and phylogenetic characteristics, antimicrobial effects, and regulatory mechanism.

Keywords: antimicrobial activity; c-type lysozyme; dexamethasone; fish; innate immunity; leptin.

MeSH terms

  • Animals
  • Anti-Infective Agents* / chemistry
  • Anti-Infective Agents* / metabolism
  • Bacteria / metabolism*
  • Dexamethasone / pharmacology*
  • Fish Proteins* / biosynthesis
  • Fish Proteins* / chemistry
  • Fish Proteins* / genetics
  • Gene Expression Regulation, Enzymologic / drug effects*
  • Goldfish* / genetics
  • Goldfish* / metabolism
  • Leptin / pharmacology*
  • Lipopolysaccharides / toxicity*
  • Muramidase* / biosynthesis
  • Muramidase* / chemistry
  • Muramidase* / genetics
  • Transcription, Genetic / drug effects*

Substances

  • Anti-Infective Agents
  • Fish Proteins
  • Leptin
  • Lipopolysaccharides
  • Dexamethasone
  • Muramidase