Azai Chihiro, Kim Kwang, Kondo Toru, Harada Jiro, Itoh Shigeru, Oh-oka Hirozo
Department of Biological Sciences, Osaka University, Toyonaka, Osaka 560-0043, Japan.
Biochim Biophys Acta. 2011 Jul;1807(7):803-12. doi: 10.1016/j.bbabio.2011.03.007. Epub 2011 Mar 21.
The 6xHis-tag-pscA gene, which was genetically engineered to express N-terminally histidine (His)-tagged PscA, was inserted into a coding region of the recA gene in the green sulfur bacterium Chlorobaculum tepidum (C. tepidum). Although the inactivation of the recA gene strongly suppressed a homologous recombination in C. tepidum genomic DNA, the mutant grew well under normal photosynthetic conditions. The His-tagged reaction center (RC) complex could be obtained simply by Ni(2+)-affinity chromatography after detergent solubilization of chlorosome-containing membranes. The complex consisted of three subunits, PscA, PscB, and PscC, in addition to the Fenna-Matthews-Olson protein, but there was no PscD. Low-temperature EPR spectroscopic studies in combination with transient absorption measurements indicated that the complex contained all intrinsic electron transfer cofactors as detected in the wild-type strain. Furthermore, the LC/MS/MS analysis revealed that the core protein consisted of a mixture of a His-/His-tagged PscA homodimer and a non-/His-tagged PscA heterodimer. The development of the pscA gene duplication method presented here, thus, enables not only a quick and large-scale preparation of the RC complex from C. tepidum but also site-directed mutagenesis experiments on the artificially incorporated 6xHis-tag-pscA gene itself, since the expression of the authentic PscA/PscA homodimeric RC complex could complement any defect in mutated His-tagged PscA. This method would provide an invaluable tool for structural and functional analyses of the homodimeric type 1 RC complex.
6xHis标签的pscA基因经过基因工程改造,用于表达N端带有组氨酸(His)标签的PscA,该基因被插入到绿硫细菌嗜热栖热菌(C. tepidum)recA基因的编码区。尽管recA基因的失活强烈抑制了嗜热栖热菌基因组DNA中的同源重组,但该突变体在正常光合条件下生长良好。在含叶绿体的膜用去污剂溶解后,通过Ni(2+)亲和层析可简单地获得His标签的反应中心(RC)复合物。该复合物除了费纳-马修斯-奥尔森蛋白外,还由三个亚基PscA、PscB和PscC组成,但没有PscD。结合低温电子顺磁共振光谱研究和瞬态吸收测量表明,该复合物包含野生型菌株中检测到的所有内在电子传递辅因子。此外,液相色谱串联质谱分析显示,核心蛋白由His标签的PscA同二聚体和非His标签的PscA异二聚体的混合物组成。因此,本文提出的pscA基因重复方法的开发,不仅能够从嗜热栖热菌快速大规模制备RC复合物,还能对人工引入的6xHis标签的pscA基因本身进行定点诱变实验,因为真实的PscA/PscA同二聚体RC复合物的表达可以弥补突变的His标签PscA中的任何缺陷。该方法将为同二聚体1型RC复合物的结构和功能分析提供一个宝贵的工具。