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Heavy metal detoxification by recombinant ferritin from Apostichopus japonicus

机译:来自Apostichopus japonicus的重组铁蛋白的重金属解毒

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摘要

Ferritin is a bionanomaterial that is widely applied in magnetic resonance imaging, drug delivery systems, biocompatible fluorescence, neutron-capture therapy and electrochemical markers. Ferritin also has great potential for use in environmental detection and heavy metal removal due to its hollow cage sequestration and maintenance of iron in a nontoxic and bio-available form. In this study, the heavy metal binding activity of ferritin from Apostichopus japonicus (AjFER) was elucidated using scanning electron microscopy (SEM). It was observed that ferritin aggregation morphology changed dramatically upon exposure to five metals. The reaction systems formed ferritin-Cd, ferritin-As, ferritin-Hg, ferritinPb, and ferritin-Cr aggregations. The aggregations of horse spleen ferritin (HSF) and AjFER are relatively unified rules. The enrichment capacity of ferritin was further analyzed using Inductively Coupled Plasma Mass spectrometry. The contents of Cd2+, Hg2+, Cr3+, Pb2+, and As3+ enriched by recombinant AjFER were higher than that for the standard HSF in ordinary groups. Moreover, the concentration levels of enriched heavy metal ions in groups treated with phosphate were higher than those in ordinary dialysis control AjFER groups. The conformation stability of AjFER binding to different heavy metal ions was determined using Circular Dichroism (CD) spectroscopy, which revealed that the second structure of Mn+-ferritin has relative stability. The affinity of ferritin for metal ions was determined using Isothermal Titration Calorimetry (ITC), and the order of binding constant was Pb-Fer > Hg-Fer > Cd-Fer > As-Fer > Cr-Fer. The ion channel was measured using site-directed mutagenesis, which revealed that heavy metal ions primarily enter the protein cage via a three-fold channel and that the ferroxidase center may be one of the key sites for metal ion diffusion into the interior of the protein shell.
机译:铁蛋白是一种脱硫材料,广泛应用于磁共振成像,药物递送系统,生物相容性荧光,中子捕获治疗和电化学标志物。铁蛋白在环境检测和重金属中的使用也具有很大的潜力,由于其中空笼子封存和维持在无毒和生物可用形式的铁。在该研究中,使用扫描电子显微镜(SEM)阐明了来自Apostichopus japonicus(ajfer)的铁蛋白的重金属结合活性。观察到铁素聚集形态在暴露于五个金属时会发生巨大变化。反应系统形成了铁蛋白-CD,铁蛋白 - AS,铁蛋白-HG,铁蛋白酶,和铁蛋白CS-CR聚集。马脾铁蛋白(HSF)和Ajfer的聚集是相对统一的规则。使用电感耦合等离子体质谱法进一步分析铁蛋白的富集能力。通过重组Ajfer富集的CD2 +,Hg2 +,Cr3 +,Pb2 +和As3 +的含量高于普通基团中标准的HSF的含量。此外,用磷酸盐处理的基团中富含重金属离子的浓度水平高于普通透析控制Ajfer基团的浓度水平。使用圆形二色性(CD)光谱法测定Ajfer结合到不同重金属离子的构象稳定性,这揭示了Mn + --Ferritin的第二结构具有相对稳定性。使用等温滴定热量法(ITC)测定铁素对金属离子的亲和力,结合常数的顺序是Pb-FER> Hg-FER> CD-FER> AS-FER> CR-FER。使用位点定向诱变测量离子通道,这揭示了重金属离子主要通过三倍的通道进入蛋白质笼,并且铁脂酶中心可以是金属离子扩散到蛋白质内部的关键位置之一贝壳。

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  • 来源
    《RSC Advances 》 |2017年第66期| 共10页
  • 作者单位

    Ningbo Univ Sch Marine Sci Ningbo 315211 Zhejiang Peoples R China;

    Ningbo Univ Sch Marine Sci Ningbo 315211 Zhejiang Peoples R China;

    Cornell Univ Dept Food Sci New York NY 10021 USA;

    Ningbo Univ Sch Marine Sci Ningbo 315211 Zhejiang Peoples R China;

    Ningbo Univ Sch Marine Sci Ningbo 315211 Zhejiang Peoples R China;

    Ningbo Univ Sch Marine Sci Ningbo 315211 Zhejiang Peoples R China;

    Ningbo Univ Sch Marine Sci Ningbo 315211 Zhejiang Peoples R China;

    Ningbo Univ Sch Marine Sci Ningbo 315211 Zhejiang Peoples R China;

    Ningbo Univ Sch Marine Sci Ningbo 315211 Zhejiang Peoples R China;

    Ningbo Univ Sch Marine Sci Ningbo 315211 Zhejiang Peoples R China;

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  • 正文语种 eng
  • 中图分类 化学 ;
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