PUBLICATION

Cloning and functional characterisation of natural killer enhancing factor-B (NKEF-B) gene of Labeo rohita: Anti-oxidant and antimicrobial activities of its recombinant protein

Authors
Parida, S., Mohapatra, A., Sahoo, P.K.
ID
ZDB-PUB-200811-2
Date
2020
Source
Molecular immunology   126: 73-86 (Journal)
Registered Authors
Keywords
Anti-oxidant activity, Antimicrobial activity, ELISA, Labeo rohita, NKEF (natural killer enhancing factor)
MeSH Terms
  • Aeromonas hydrophila/immunology
  • Animals
  • Arguloida/immunology
  • Carps/genetics
  • Carps/immunology*
  • Carps/microbiology
  • Carps/parasitology
  • Cloning, Molecular
  • Fish Diseases/blood
  • Fish Diseases/immunology*
  • Fish Diseases/microbiology
  • Fish Diseases/parasitology
  • Fish Proteins/genetics
  • Fish Proteins/immunology*
  • Fish Proteins/metabolism
  • Gene Expression Profiling
  • Head Kidney/enzymology
  • Head Kidney/immunology
  • Immunity, Innate*
  • Liver/enzymology
  • Liver/immunology
  • Oxidative Stress/immunology
  • Peroxiredoxins/genetics
  • Peroxiredoxins/immunology*
  • Phylogeny
  • Poly I-C/immunology
  • Reactive Oxygen Species/immunology
  • Reactive Oxygen Species/metabolism
  • Recombinant Proteins/genetics
  • Recombinant Proteins/immunology
  • Recombinant Proteins/metabolism
  • Staphylococcus aureus/immunology
PubMed
32771671 Full text @ Mol. Immunol.
Abstract
Natural killer enhancing factor (NKEF) of peroxiredoxin family is an important innate immune molecule with having anti-oxidant activity. Although this gene has already been studied in a few fish species, it is yet to be identified and functionally characterised in Indian major carps. In the present study, the complete NKEF-B cDNA of rohu, Labeo rohita was cloned that encoded a putative protein of 197 amino acids. The phylogenetic study showed that L. rohita NKEF-B (LrNKEF-B) is closely related to NKEF-B of Cyprinus carpio and Danio rerio species. Tissue-specific expression of LrNKEF-B gene revealed the highest transcript level in the liver tissue. In the ontogeny study, the highest level of the expression was observed in milt and at 18 h post-development. The expression pattern of this gene was also studied in various pathogen models viz., Gram-negative bacteria (Aeromonas hydrophila), ectoparasite (Argulus siamensis) and a dsRNA viral analogue (poly I:C) in the liver and anterior kidney tissues of L. rohita juveniles. During A. hydrophila infection, the increase in expression of transcripts was observed at 3 h post-infection in both liver (15-fold) and anterior kidney (8-fold). In A. siamensis infection, the expression gradually increased up to 3 d post-infection in the anterior kidney, whereas in liver 3-fold up-regulation was noticed at 12 h post-infection. Similarly, during poly I:C stimulation, up-regulation of NKEF-B transcript was observed in anterior kidney from 1 h to 24 h post-stimulation and down-regulated afterwards whereas, the transcript level increased gradually from 6 h to 15 d post-stimulation in liver tissue. In vitro exposure to concanavalin, A and formalin-killed A. hydrophila upregulated NKEF-B gene expression in anterior kidney and peripheral blood leukocytes of L. rohita, however, down-regulated the same in the splenic leukocytes. A recombinant protein of LrNKEF-B (rLrNKEF-B) of 22 kDa was produced and it showed anti-oxidant activity by protecting supercoiled DNA and reducing insulin disulfide bonds. The minimum bactericidal concentration of this recombinant protein was found to be 4.54 μM against A. hydrophila and Staphylococcus aureus. Interestingly, rLrNKEF-B showed relative percent survival of 72.6 % in A. hydrophila challenged L. rohita, and the survival was found to be associated with a high level of expression of different cytokines, anti-oxidant genes and perforin in the rLrNKEF-B treated L. rohita. An indirect ELISA assay for estimation of NKEF was developed in L. rohita, and the concentrations of NKEF-B increased with time periods post A. hydrophila challenge viz., 0 h (42.56 ng/mL), 12 h (174 ng/mL) and 48 h (370 ng/mL) in rohu serum. Our results suggest a crucial role of LrNKEF-B in innate immunity against biotic stress and oxidative damage and also having antibacterial activity.
Genes / Markers
Figures
Expression
Phenotype
Mutations / Transgenics
Human Disease / Model
Sequence Targeting Reagents
Fish
Antibodies
Orthology
Engineered Foreign Genes
Mapping