首页> 外文期刊>Fish & Shellfish Immunology >First comparative characterization of three distinct ferritin subunits from a teleost: Evidence for immune-responsive mRNA expression and iron depriving activity of seahorse (Hippocampus abdominalis) ferritins
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First comparative characterization of three distinct ferritin subunits from a teleost: Evidence for immune-responsive mRNA expression and iron depriving activity of seahorse (Hippocampus abdominalis) ferritins

机译:硬骨鱼三个不同铁蛋白亚基的第一个比较表征:免疫应答mRNA表达和海马(海马)铁蛋白的铁缺乏活性的证据

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Ferritins play an indispensable role in iron homeostasis through their iron-withholding function in living beings. In the current study, cDNA sequences of three distinct ferritin subunits, including a ferritin H, a ferritin M, and a ferritin L, were identified from big belly seahorse, Hippocampus abdominalis, and molecularly characterized. Complete coding sequences (CDS) of seahorse ferritin H (HaFerH), ferritin M (HaFerM), and ferritin L (HaFerL) subunits were comprised of 531, 528, and 522 base pairs (bp), respectively, which encode polypeptides of 177, 176, and 174 amino acids, respectively, with molecular masses of similar to 20-21 kDa. Our in silico analyses demonstrate that these three ferritin subunits exhibit the typical characteristics of ferritin superfamily members including iron regulatory elements, domain signatures, and reactive centers. The coding sequences of HaFerH, M, and L were cloned and the corresponding proteins were overexpressed in a bacterial system. Recombinantly expressed HaFer proteins demonstrated detectable in vivo iron sequestrating (ferroxidase) activity, consistent with their putative iron binding capability. Quantification of the basal expression of these three HaFer sequences in selected tissues demonstrated a gene-specific ubiquitous spatial distribution pattern, with abundance of mRNA in HaFerM in the liver and predominant expression of HaFerH and HaFerL in blood. Interestingly, the basal expression of all three ferritin genes was found to be significantly modulated against pathogenic stress mounted by lipopolysaccharides (LPS), poly I:C, Streptococcus iniae, and Edwardsiella tarda. Collectively, our findings suggest that the three HaFer subunits may be involved in iron (II) homeostasis in big belly seahorse and that they are important in its host defense mechanisms. (C) 2016 Elsevier Ltd. All rights reserved.
机译:铁蛋白通过其在生物中的铁保持功能在铁体内平衡中起着不可或缺的作用。在当前的研究中,从大腹海马,腹部海马中鉴定出三个不同的铁蛋白亚基的cDNA序列,包括铁蛋白H,铁蛋白M和铁蛋白L,并进行了分子表征。海马铁蛋白H(HaFerH),铁蛋白M(HaFerM)和铁蛋白L(HaFerL)亚基的完整编码序列(CDS)分别由531、528和522个碱基对(bp)组成,它们编码177,分别具有176和174个氨基酸,分子量类似于20-21 kDa。我们的计算机分析表明,这三个铁蛋白亚基表现出铁蛋白超家族成员的典型特征,包括铁调节元素,结构域特征和反应中心。克隆了HaFerH,M和L的编码序列,并在细菌系统中过表达了相应的蛋白质。重组表达的HaFer蛋白表现出可检测到的体内铁螯合(ferroxidase)活性,与其推定的铁结合能力一致。对这三个HaFer序列在选定组织中的基础表达进行定量分析表明,存在基因特异性的普遍存在的空间分布模式,肝脏中HaFerM中的mRNA丰富,而血液中HaFerH和HaFerL的主要表达。有趣的是,发现所有三个铁蛋白基因的基础表达均被抗脂多糖(LPS),聚I:C,链球菌和焦糖爱德华氏菌所致的致病胁迫显着调节。总体而言,我们的发现表明,三个HaFer亚基可能参与了大腹海马的铁(II)稳态,并且在其宿主防御机制中很重要。 (C)2016 Elsevier Ltd.保留所有权利。

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