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野生型和突变型人类血红蛋白在酿酒酵母中的合成。

Synthesis of wild type and mutant human hemoglobins in Saccharomyces cerevisiae.

作者信息

Wagenbach M, O'Rourke K, Vitez L, Wieczorek A, Hoffman S, Durfee S, Tedesco J, Stetler G

机构信息

Somatogen, Inc., Broomfield, CO 80020.

出版信息

Biotechnology (N Y). 1991 Jan;9(1):57-61. doi: 10.1038/nbt0191-57.

Abstract

We have expressed human alpha and beta-globin cDNA clones from separate, synthetic galactose-regulated hybrid promoters contained on a single plasmid in Saccharomyces cerevisiae. Co-expression of the alpha and beta-globin chains in S. cerevisiae results in the assembly of these proteins into soluble tetrameric hemoglobin that accumulates to 3-5 percent of the total cell protein. Endogenously produced heme is incorporated into the tetramer and the protein produced is functionally and structurally indistinguishable from human Ao hemoglobin. This expression system has been used to produce both wild type hemoglobin and a low O2-affinity hemoglobin mutant that has oxygen binding and dissociation characteristics similar to human whole blood. The yeast expression system we describe may be suitable for the production of a recombinant hemoglobin based blood substitute as well as for detailed structure-activity studies of human hemoglobin.

摘要

我们已在酿酒酵母中,从单个质粒上包含的独立、合成的半乳糖调节杂交启动子表达了人α和β珠蛋白cDNA克隆。α和β珠蛋白链在酿酒酵母中的共表达导致这些蛋白质组装成可溶性四聚体血红蛋白,其积累量可达总细胞蛋白的3%至5%。内源性产生的血红素被整合到四聚体中,所产生的蛋白质在功能和结构上与人类Ao血红蛋白无法区分。该表达系统已用于生产野生型血红蛋白和一种低氧亲和力血红蛋白突变体,其具有与人全血相似的氧结合和解离特性。我们描述的酵母表达系统可能适用于生产基于重组血红蛋白的血液替代品,以及用于人类血红蛋白的详细结构-活性研究。

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