| Literature DB >> 35344090 |
P P Athira1, V V Anooja1, M V Anju1, S Neelima1, K Archana1, S Muhammed Musthafa1, Swapna P Antony1, I S Bright Singh2, Rosamma Philip3.
Abstract
BACKGROUND: Increase of antibiotic resistance in pathogenic microbes necessitated novel molecules for curing infection. Antimicrobial peptides (AMPs) are the gene-encoded evolutionarily conserved small molecules with therapeutic value. AMPs are considered as an alternative drug for conventional antibiotics. Hepcidin, the cysteine-rich antimicrobial peptide, is an important component in innate immune response. In this study, we identified and characterized hepcidin gene from the fish, Catla catla (Indian major carp) and termed it as Cc-Hep.Entities:
Keywords: Antimicrobial peptides; Carp; Catla catla; Hepcidin
Year: 2022 PMID: 35344090 PMCID: PMC8960508 DOI: 10.1186/s43141-022-00330-7
Source DB: PubMed Journal: J Genet Eng Biotechnol ISSN: 1687-157X
Fig. 1a Nucleic acid and deduced amino acid sequences of Catla catla hepcidin, Cc-Hep (GenBank ID: MW854006). The single letter amino acid code is shown below the corresponding nucleotide sequences. Yellow color specifies signal peptide region, green color propeptide, and blue color mature peptide region. b mRNA structure of Cc-Hep showing stem loop structure. The mRNA structure colored by base-pairing probabilities. High base-pairing probability is indicated by red color and low base-pair probability indicated by blue color
Fig. 2a Kyte-Doolittle plot showing hydrophobicity of Cc-Hep. The peaks above the score (0.0) indicate the hydrophobicity. The X axis is represented by amino acid sequence positions and Y axis by hydrophobicity score. b Secondary structure of Cc-Hep peptide predicted using PSIPRED server. Alpha helical structure represented by pink color, beta strand by yellow color and coils by grey color respectively
Fig. 3a Three dimensional structure of Cc-Hep constructed using homology modelling by SWISSMODEL server. Cyan color indicating disulphide bonds. b Ramachandran plot for the predicted three dimensional structure of Cc-Hep using PROCHECK server
Fig. 4Multiple sequence alignment of Cc-Hep using MEGA 6 software. Signal peptide, propeptide and mature peptide of all the sequences are highlighted
Fig. 5Maximum likelihood tree obtained using MEGA 6 showing the phylogenetic relationship of Cc-Hep with other vertebrate hepcidins