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大肠杆菌中人类血红蛋白的表达:最佳密码子使用的重要性。

Human hemoglobin expression in Escherichia coli: importance of optimal codon usage.

作者信息

Hernan R A, Hui H L, Andracki M E, Noble R W, Sligar S G, Walder J A, Walder R Y

机构信息

Department of Biochemistry, University of Illinois, Urbana, Champaign 61801.

出版信息

Biochemistry. 1992 Sep 15;31(36):8619-28. doi: 10.1021/bi00151a032.

Abstract

The overexpression of a nonfusion product of human beta-globin in Escherichia coli from its cDNA sequence has been accomplished for the first time. Expression of beta-globin from its native cDNA required the use of the strong bacteriophage T7 promoter. In this system, beta-globin accumulated to approximately 10% of total E. coli proteins. alpha-Globin was not expressed in the T7 system using the native cDNA. For the expression of alpha-globin, synthetic genes containing optimal E. coli codons were constructed. Neither synthetic alpha- nor beta-globin gene alone was expressed from the lac or tac promoter. Globin expression was achieved when the two synthetic alpha- and beta-globin genes were combined as an operon downstream of the lac promoter. The two proteins combined intracellularly with endogenous heme, which was concomitantly overproduced to yield tetrameric hemoglobin as roughly 5-10% of total E. coli protein. Cloning the alpha- and beta-globin cDNAs in a construct identical with the lac promoter did not yield globin production, establishing the requirement for optimal codon usage. The recombinant beta-globin from the T7 expression system was purified and reconstituted in vitro with heme and native alpha chains. N-terminal analyses showed that the beta-globin produced in the T7 system and the tetrameric hemoglobin produced from the synthetic genes contained an additional beta 1 methionine residue. Two additional mutants, beta 1 Val----Met and beta 1 Val----Ala were produced using the T7 system. Functional and structural properties of the purified hemoglobins will be discussed in the following papers.

摘要

首次实现了从人β-珠蛋白的cDNA序列在大肠杆菌中表达非融合产物。从其天然cDNA表达β-珠蛋白需要使用强噬菌体T7启动子。在该系统中,β-珠蛋白积累至约占大肠杆菌总蛋白的10%。使用天然cDNA在T7系统中未表达α-珠蛋白。为了表达α-珠蛋白,构建了包含最佳大肠杆菌密码子的合成基因。单独的合成α-珠蛋白基因和β-珠蛋白基因都不能从lac或tac启动子表达。当两个合成的α-珠蛋白基因和β-珠蛋白基因作为一个操纵子组合在lac启动子下游时,实现了珠蛋白的表达。这两种蛋白质在细胞内与内源性血红素结合,内源性血红素同时过量产生,以产生占大肠杆菌总蛋白约5 - 10%的四聚体血红蛋白。将α-珠蛋白和β-珠蛋白的cDNA克隆到与lac启动子相同的构建体中未产生珠蛋白,这确定了对最佳密码子使用的要求。从T7表达系统中纯化出重组β-珠蛋白,并在体外与血红素和天然α链进行重组。N端分析表明,在T7系统中产生的β-珠蛋白和从合成基因产生的四聚体血红蛋白含有一个额外的β1甲硫氨酸残基。使用T7系统产生了另外两个突变体,β1 Val→Met和β1 Val→Ala。纯化血红蛋白的功能和结构特性将在后续论文中讨论。

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