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Application of an M13 bacteriophage displaying tyrosine on the surface for detection of Fe3+ and Fe2+ ions

机译:M13噬菌体在表面上施用酪氨酸的施用检测Fe3 +和Fe2 +离子的检测

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摘要

Ferric and ferrous ion plays critical roles in bioprocesses, their influences in many fields have not been fully explored due to the lack of methods for quantification of ferric and ferrous ions in biological system or complex matrix. In this study, an M13 bacteriophage (phage) was engineered for use as a sensor for ferric and ferrous ions via the display of a tyrosine residue on the P8 coat protein. The interaction between the specific phenol group of tyrosine and Fe3+ / Fe2+ was used as the sensor. Transmission electron microscopy showed aggregation of the tyrosine-displaying phages after incubation with Fe3+ and Fe2+. The aggregated phages infected the host bacterium inefficiently. This phenomenon could be utilized for detection of ferric and ferrous ions. For ferric ions, a calibration curve ranging from 200 nmol/L to 8 μmol/L with a detection limit of 58 nmol/L was acquired. For ferrous ions, a calibration curve ranging from 800 nmol/L to 8 μmol/L with a detection limit of 641.7 nmol/L was acquired. The assay was specific for Fe3+ and Fe2+ when tested against Ni2+, Pb2+, Zn2+, Mn2+, Co2+, Ca2+, Cu2+, Cr3+, Ba2+, and K+. The tyrosine displaying phage to Fe3+ and Fe2+ interaction would have plenty of room in application to biomaterials and bionanotechnology.
机译:铁和亚铁离子在生物过程中起重要作用,由于缺乏在生物系统或复杂基质中缺乏定量铁和铁离子的方法,许多领域的影响尚未完全探索。在该研究中,M13噬菌体(噬菌体)通过显示P8涂层蛋白质的酪氨酸残基显示为用于铁和铁离子的传感器。使用酪氨酸和Fe3 + / Fe2 +的特定酚基之间的相互作用作为传感器。透射电子显微镜显示与Fe3 +和Fe2 +孵育后酪氨酸显示噬菌体的聚集。聚集噬菌体的宿主细菌效率低下。这种现象可用于检测铁和亚铁离子。对于铁离子,获得从200nmol / L至8μmol/ L的校准曲线,检测限为58 nmol / L.为亚铁离子,校准曲线范围从800纳摩尔/ L至8微摩尔/ L与641.7纳摩尔/ L的检测限为获取。当对Ni2 +,Pb2 +,Zn2 +,Mn 2 +,CO 2 +,Ca 2 +,Cu2 +,Cr3 +,Ba2 +和K +测试时,测定对于Fe3 +和Fe2 +特异于Fe3 +和Fe2 +。将噬菌体显示为Fe3 +和Fe2 +相互作用的酪氨酸在生物材料和Bionanootechnology中有大量的空间。

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