Falcone D L, Tabita F R
Department of Microbiology, Ohio State University, Columbus 43210.
J Bacteriol. 1991 Mar;173(6):2099-108. doi: 10.1128/jb.173.6.2099-2108.1991.
A Rhodobacter sphaeroides ribulose 1,5-bisphosphate carboxylase-oxygenase (RubisCO) deletion strain was constructed that was complemented by plasmids containing either the form I or form II CO2 fixation gene cluster. This strain was also complemented by genes encoding foreign RubisCO enzymes expressed from a Rhodospirillum rubrum RubisCO promoter. In R. sphaeroides, the R. rubrum promoter was regulated, resulting in variable levels of disparate RubisCO molecules under different growth conditions. Photosynthetic growth of the R. sphaeroides deletion strain complemented with cyanobacterial RubisCO revealed physiological properties reflective of the unique cellular environment of the cyanobacterial enzyme. The R. sphaeroides RubisCO deletion strain and R. rubrum promoter system may be used to assess the properties of mutagenized proteins in vivo, as well as provide a potential means to select for altered RubisCO molecules after random mutagenesis of entire genes or gene regions encoding RubisCO enzymes.
构建了球形红细菌1,5-二磷酸核酮糖羧化酶加氧酶(RubisCO)缺失菌株,该菌株由含有I型或II型二氧化碳固定基因簇的质粒互补。该菌株还由从红螺菌RubisCO启动子表达的编码外源RubisCO酶的基因互补。在球形红细菌中,红螺菌启动子受到调控,导致在不同生长条件下不同RubisCO分子的水平可变。用蓝细菌RubisCO互补的球形红细菌缺失菌株的光合生长揭示了反映蓝细菌酶独特细胞环境的生理特性。球形红细菌RubisCO缺失菌株和红螺菌启动子系统可用于体内评估诱变蛋白的特性,以及提供一种潜在方法,用于在对编码RubisCO酶的整个基因或基因区域进行随机诱变后选择改变的RubisCO分子。