首页> 外国专利> Recombinant human EPO-Fc fusion proteins with prolonged half-life and enhanced erythropoietic activity in vivo

Recombinant human EPO-Fc fusion proteins with prolonged half-life and enhanced erythropoietic activity in vivo

机译:具有延长的半衰期和增强的体内促红细胞生成活性的重组人EPO-Fc融合蛋白

摘要

A recombinant fusion protein comprising a human erythropoietin peptide portion linked to an immunoglobulin peptide portion is described. The fusion protein has a prolonged half-life in vivo in comparison to naturally occurring or recombinant native human erythropoietin. In one embodiment of the invention the protein has a half-life in vivo at least three fold higher than native human erythropoietin. The fusion protein also exhibits enhanced erythropoietic bioactivity in comparison to native human erythropoietin. In one embodiment, the fusion protein comprises the complete peptide sequence of a human erythropoietin (EPO) molecule and the peptide sequence of an Fc fragment of human immunoglobulin IgG1. The Fc fragment in the fusion protein includes the hinge region, CH2 and CH3 domains of human immunoglobulin IgG1. The EPO molecule may be linked directly to the Fc fragment to avoid extraneous peptide linkers and lessen the risk of an immunogenic response when administered in vivo. In one embodiment the hinge region is a human Fc fragment variant having a non-cysteine residue at amino acid 6. The invention also relates to nucleic acid and amino acid sequences encoding the fusion protein and transfected cell lines and methods for producing the fusion protein. The invention further includes pharmaceutical compositions comprising the fusion protein and methods of using the fusion protein and/or the pharmaceutical compositions, for example to stimulate erythropoiesis in subjects in need of therapy.
机译:描述了包含与免疫球蛋白肽部分连接的人促红细胞生成素肽部分的重组融合蛋白。与天然或重组天然人促红细胞生成素相比,该融合蛋白在体内具有延长的半衰期。在本发明的一个实施方案中,该蛋白质在体内的半衰期比天然人促红细胞生成素高至少三倍。与天然人促红细胞生成素相比,该融合蛋白还表现出增强的促红细胞生成生物活性。在一个实施方案中,融合蛋白包含人促红细胞生成素(EPO)分子的完整肽序列和人免疫球蛋白IgG1的Fc片段的肽序列。融合蛋白中的Fc片段包括人免疫球蛋白IgG1的铰链区,CH2和CH3结构域。 EPO分子可以直接连接至Fc片段,以避免多余的肽接头,并且在体内施用时降低了免疫原性应答的风险。在一个实施方案中,铰链区是在氨基酸6具有非半胱氨酸残基的人Fc片段变体。本发明还涉及编码融合蛋白和转染的细胞系的核酸和氨基酸序列以及产生融合蛋白的方法。本发明进一步包括包含融合蛋白的药物组合物和使用融合蛋白和/或药物组合物的方法,例如以在需要治疗的受试者中刺激红细胞生成。

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