Fodor B, Rákhely G, Kovács K L
Institute of Biophysics, Biological Research Center, Hungarian Academy of Sciences, and Department of Biotechnology, University of Szeged, H-6726 Szeged, Hungary.
Appl Environ Microbiol. 2001 Jun;67(6):2476-83. doi: 10.1128/AEM.67.6.2476-2483.2001.
A random transposon-based mutagenesis system was optimized for the purple sulfur phototrophic bacterium Thiocapsa roseopersicina BBS. Screening for hydrogenase-deficient phenotypes resulted in the isolation of six independent mutants in a mini-Tn5 library. One of the mutations was in a gene showing high amino acid sequence similarity to HypF proteins in other organisms. Inactivation of hydrogen uptake activity in the hypF-deficient mutant resulted in a dramatic increase in the hydrogen evolution capacity of T. roseopersicina under nitrogen-fixing conditions. This mutant is therefore a promising candidate for use in practical biohydrogen-producing systems. The reconstructed hypF gene was able to complement the hypF-deficient mutant of T. roseopersicina BBS. Heterologous complementation experiments, using hypF mutant strains of T. roseopersicina, Escherichia coli, and Ralstonia eutropha and various hypF genes, were performed. They were successful in all of the cases tested, although for E. coli, the regulatory region of the foreign gene had to be replaced in order to achieve partial complementation. RT-PCR data suggested that HypF has no effect on the transcriptional regulation of the structural genes of hydrogenases in this organism.
一种基于转座子的随机诱变系统针对紫色硫光合细菌玫瑰色硫囊菌BBS进行了优化。通过筛选氢化酶缺陷型表型,在一个mini-Tn5文库中分离出了六个独立的突变体。其中一个突变发生在一个基因上,该基因与其他生物体中的HypF蛋白具有高度的氨基酸序列相似性。hypF缺陷型突变体中氢摄取活性的失活导致玫瑰色硫囊菌在固氮条件下的产氢能力显著增加。因此,该突变体是用于实际生物制氢系统的一个有前途的候选者。重建的hypF基因能够互补玫瑰色硫囊菌BBS的hypF缺陷型突变体。利用玫瑰色硫囊菌、大肠杆菌和嗜麦芽窄食单胞菌的hypF突变株以及各种hypF基因进行了异源互补实验。在所有测试的情况下实验都取得了成功,不过对于大肠杆菌,为了实现部分互补,必须替换外源基因的调控区域。逆转录聚合酶链反应(RT-PCR)数据表明,HypF对该生物体中氢化酶结构基因的转录调控没有影响。