Roos Viktoria, Andersson Charlotte I J, Arfvidsson Cecilia, Wahlund Karl-Gustav, Bülow Leif
Department of Pure and Applied Biochemistry, Center for Chemistry and Chemical Engineering, Lund University, Lund, Sweden.
Biotechnol Prog. 2002 May-Jun;18(3):652-6. doi: 10.1021/bp020005v.
In several organisms, expression of a gene encoding dimeric hemoglobin (VHb) from the obligate aerobic bacterium Vitreoscilla stercoraria has been shown to increase microaerobic cell growth and enhance oxygen-dependent cell metabolism. In an attempt to further improve these effects of VHb, a gene encoding two vhb genes connected by a short linker of six base pairs was constructed and expressed in Escherichia coli(double VHb). Escherichia coli cells expressing double VHb reached a cell density 19% higher than that of cells expressing native VHb. The protein production per cell remained constant since the increase in cell growth was accompanied by an increase in protein content by 16%. Investigation of ribosome and tRNA content revealed that cells expressing double VHb reached their maximal capacity of protein synthesis later during cultivation than cells expressing native VHb, and furthermore they reached considerably higher levels of ribosome and tRNA compared to that of the VHb-expressing cells.
在几种生物体中,已证明来自专性需氧细菌粪产碱杆菌的编码二聚体血红蛋白(VHb)的基因表达可增加微氧条件下的细胞生长,并增强氧依赖性细胞代谢。为了进一步改善VHb的这些作用,构建了一个编码由六个碱基对的短接头连接的两个vhb基因的基因,并在大肠杆菌中表达(双VHb)。表达双VHb的大肠杆菌细胞的细胞密度比表达天然VHb的细胞高19%。由于细胞生长的增加伴随着蛋白质含量增加16%,每个细胞的蛋白质产量保持恒定。对核糖体和tRNA含量的研究表明,与表达天然VHb的细胞相比,表达双VHb的细胞在培养后期才达到其最大蛋白质合成能力,而且与表达VHb的细胞相比,它们达到了相当高的核糖体和tRNA水平。