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在大肠杆菌中生产未修饰的成人血红蛋白。

Production of unmodified human adult hemoglobin in Escherichia coli.

作者信息

Shen T J, Ho N T, Simplaceanu V, Zou M, Green B N, Tam M F, Ho C

机构信息

Department of Biological Sciences, Carnegie Mellon University, Pittsburgh, PA 15213.

出版信息

Proc Natl Acad Sci U S A. 1993 Sep 1;90(17):8108-12. doi: 10.1073/pnas.90.17.8108.

Abstract

We have constructed a plasmid (pHE2) in which the synthetic human alpha- and beta-globin genes and the methionine aminopeptidase (Met-AP) gene from Escherichia coli are coexpressed under the control of separate tac promoters. The Hbs were expressed in E. coli JM109 and purified by fast protein liquid chromatography, producing two major components, a and b. Electrospray mass spectrometry shows that at least 98% and about 90% of the expressed alpha and beta chains of component a, respectively, have the expected masses. The remaining 10% of the beta chain in component a corresponds in mass to the beta chain plus methionine. In component b, both alpha and beta chains have the correct masses without detectable N-terminal methionine (< 2%). These results have been confirmed by Edman degradation studies of the amino-terminal sequences of the alpha and beta chains of these two recombinant Hb (rHb) samples. rHbs from components a and b exhibit visible optical spectra identical to that of human normal adult Hb (Hb A). Component a and Hb A have very similar oxygen-binding properties, but component b shows somewhat altered oxygen binding, especially at low pH values. 1H-NMR spectra of component a and Hb A are essentially identical, whereas those of component b exhibit altered ring current-shifted and hyperfine-shifted proton resonances, indicating altered heme conformation in the beta chain. These altered resonance patterns can be changed to those of Hb A by converting component b to the ferric state and then to the deoxy state and finally back to either the carbonmonoxy or oxy form. Thus, our E. coli expression system produces native, unmodified Hb A in high yield and can be used to produce desired mutant Hbs.

摘要

我们构建了一种质粒(pHE2),其中来自大肠杆菌的合成人α-和β-珠蛋白基因以及甲硫氨酸氨肽酶(Met-AP)基因在各自的tac启动子控制下共表达。血红蛋白在大肠杆菌JM109中表达,并通过快速蛋白质液相色谱法纯化,产生两个主要组分,a和b。电喷雾质谱分析表明,组分a中至少98%的表达α链和约90%的表达β链分别具有预期质量。组分a中剩余10%的β链在质量上相当于β链加上甲硫氨酸。在组分b中,α链和β链都具有正确的质量,且未检测到N端甲硫氨酸(<2%)。对这两个重组血红蛋白(rHb)样品的α链和β链的氨基末端序列进行的埃德曼降解研究证实了这些结果。来自组分a和b的rHb呈现出与人类正常成人血红蛋白(Hb A)相同的可见光谱。组分a和Hb A具有非常相似的氧结合特性,但组分b显示出氧结合有所改变,尤其是在低pH值时。组分a和Hb A的1H-NMR光谱基本相同,而组分b的光谱显示环电流位移和超精细位移质子共振发生改变,表明β链中的血红素构象发生了变化。通过将组分b转变为三价铁状态,然后转变为脱氧状态,最后再转变回一氧化碳结合或氧合形式,可以将这些改变的共振模式转变为Hb A的共振模式。因此,我们的大肠杆菌表达系统能够高产天然、未修饰的Hb A,并可用于生产所需的突变血红蛋白。

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