首页> 外文期刊>Journal of Functional Biomaterials >Monodisperse 130 kDa and 260 kDa Recombinant Human Hemoglobin Polymers as Scaffolds for Protein Engineering of Hemoglobin-Based Oxygen Carriers
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Monodisperse 130 kDa and 260 kDa Recombinant Human Hemoglobin Polymers as Scaffolds for Protein Engineering of Hemoglobin-Based Oxygen Carriers

机译:单分散130 kDa和260 kDa重组人血红蛋白聚合物作为基于血红蛋白的氧气载体蛋白质工程的支架

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A recombinant 130 kDa dihemoglobin which is made up of a single-chain tetra-α globin and four β globins has been expressed as a soluble protein in E. coli. The sequence of the single chain tetra-α is: αI-Gly-αII-(SerGlyGly)5Ser-αIII-Gly-αIV. This dihemoglobin has been purified and characterized in vitro by size exclusion chromatography, electrospray mass spectroscopy, equilibrium oxygen binding, and analytical ultracentrifugation. The observed values of P50 and nmax for the dihemoglobin are slightly lower than those observed for the recombinant hemoglobin rHb1.1 (a “monohemoglobin” comprised of two β globins and an αI-Gly-αII diα-globin chain). Titration of the deoxy form of dihemoglobin with CO shows that all eight heme centers bind ligand. In vivo, dihemoglobin showed increased circulating halflife and a reduced pressor response in conscious rats when compared to rHb1.1. These observations suggest that dihemoglobin is an oxygen carrying molecule with desirable in vivo properties and provides a platform for an isooncotic hemoglobin solution derived solely from a recombinant source. A 260 kDa tetrahemoglobin has also been produced by chemical crosslinking of a dihemoglobin that contains a Lys16Cys mutation in the C-terminal α-globin subunit. Tetrahemoglobin also shows reduced vasoactivity in conscious rats that is comparable to that observed for dihemoglobin.
机译:由单链四-α球蛋白和四个β球蛋白组成的重组130 kDa二血红蛋白已在大肠杆菌中表达为可溶性蛋白。单链四-α的序列为:αI-Gly-αII-(SerGlyGly)5Ser-αIII-Gly-αIV。此二血红蛋白已通过尺寸排阻色谱,电喷雾质谱,平衡氧结合和分析超速离心进行了体外纯化和表征。双血红蛋白的P 50 和n max 的观察值略低于重组血红蛋白rHb1.1(由两个β球蛋白和αI-Gly-αIIdiα-珠蛋白链)。用CO滴定双血红蛋白的脱氧形式表明,所有八个血红素中心均与配体结合。在体内,与rHb1.1相比,在有意识的大鼠中,双血红蛋白显示出增加的循环半衰期和降低的升压反应。这些观察结果表明,双血红蛋白是具有期望的体内性质的载氧分子,并为仅衍生自重组来源的等渗血红蛋白溶液提供了平台。通过对在C-末端α-球蛋白亚基中包含Lys16Cys突变的二血红蛋白进行化学交联,也可产生260 kDa的四血红蛋白。四血红蛋白在清醒大鼠中还显示出降低的血管活性,这与二血红蛋白所观察到的相当。

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