Banerjee Rajanya, Kanak Komal, Patel Bhakti, Samanta Mrinal, Das Surajit
1Laboratory of Environmental Microbiology and Ecology (LEnME), Department of Life Science, National Institute of Technology, Rourkela, Odisha 769008 India.
2Department of Life Sciences, Central University of South Bihar, Patna, India.
3 Biotech. 2019 Sep;9(9):341. doi: 10.1007/s13205-019-1874-6. Epub 2019 Aug 23.
Hepcidin, a cationic cysteine-rich antimicrobial peptide (AMP) acts in hormone regulation and iron homeostasis in the host body. However, the biological property of hepcidin in immune reaction remains unexplored. In aquatic milieu, environmental and pathogenic stressors cause detrimental infections, which are defended by various immunological cells and antimicrobial peptides. In this study, hepcidin gene has been cloned from freshwater carp, . The partially cloned hepcidin consists of 200 bp nucleotide sequence encoding 66 amino acids. Nucleotide sequence showed 97% and 91% similarity with and , respectively. Expression profile revealed significant up-regulation ( ≤ 0.0001) in liver as compared to other tissues in different conditions. In challenged , liver showed higher expression level of hepcidin at 72 h as compared to other tissues. In skin, hepcidin expression showed significant upraise during 24 h in infection. In sp. infected fishes, up-regulation of hepcidin expression was noted in liver, intestine and skin. The inactivated viral antigen-stimulated fishes, a substantial rise in liver was observed implying hepcidin as an important molecule in combating the pathogenic infections in freshwater carp, . Fishes stimulated with pathogen-associated molecular patterns (PAMPs) triggered the increased expression of hepcidin mRNA in liver, kidney and skin. This study indicates the presence of hepcidin as antimicrobial peptide in neutralizing the pathogenic infection in fishes.
铁调素是一种富含阳离子半胱氨酸的抗菌肽(AMP),在宿主体内发挥激素调节和铁稳态的作用。然而,铁调素在免疫反应中的生物学特性仍未被探索。在水生环境中,环境和致病应激源会导致有害感染,这些感染由各种免疫细胞和抗菌肽来抵御。在本研究中,从淡水鲤鱼中克隆了铁调素基因。部分克隆的铁调素由200个碱基对的核苷酸序列组成,编码66个氨基酸。核苷酸序列与[具体物种1]和[具体物种2]分别显示出97%和91%的相似性。表达谱显示,在不同条件下,与其他组织相比,肝脏中的表达显著上调(P≤0.0001)。在[病原体名称]感染的[鲤鱼名称]中,与其他组织相比,肝脏在72小时时铁调素的表达水平更高。在皮肤中,在[病原体名称]感染的24小时内,铁调素表达显著升高。在[病原体名称]感染的鱼类中,肝脏、肠道和皮肤中铁调素表达上调。在用灭活病毒抗原刺激的鱼类中,观察到肝脏中有显著升高,这意味着铁调素是淡水鲤鱼[鲤鱼名称]对抗病原感染的重要分子。用病原体相关分子模式(PAMPs)刺激的鱼类,肝脏、肾脏和皮肤中铁调素mRNA的表达增加。本研究表明铁调素作为抗菌肽在中和鱼类病原感染中存在。