Bartels F, Fernández S, Holtel A, Timmis K N, de Lorenzo V
Division of Microbiology, Gesellschaft für Biotechnologische Forschung (GBF), D-38124, Braunschweig, Germany.
J Biol Chem. 2001 May 18;276(20):16641-8. doi: 10.1074/jbc.M011295200. Epub 2001 Feb 13.
A protein mixture containing two major components able to catalyze a beta-recombination reaction requiring nonspecific DNA bending was obtained by fractionation of a Pseudomonas putida extract. N-terminal sequence analysis and genomic data base searches identified the major component as an analogue of HupB of Pseudomonas aeruginosa and Escherichia coli, encoding one HU protein variant. The minor component of the fraction, termed HupN, was divergent enough from HupB to predict a separate DNA-bending competence. The determinants of the two proteins were cloned and hyperexpressed, and the gene products were purified. Their activities were examined in vitro in beta-recombination assays and in vivo by complementation of the Hbsu function of Bacillus subtilis. HupB and HupN were equally efficient in all tests, suggesting that they are independent and functionally redundant DNA bending proteins. This was reflected in the maintenance of in vivo activity of the final sigma54 Ps promoter of the toluene degradation plasmid, TOL, which requires facilitated DNA bending, in DeltahupB or DeltahupN strains. However, hupB/hupN double mutants were not viable. It is suggested that the requirement for protein-facilitated DNA bending is met in P. putida by two independent proteins that ensure an adequate supply of an essential cellular activity.
通过对恶臭假单胞菌提取物进行分级分离,获得了一种蛋白质混合物,其中含有两种主要成分,能够催化一种需要非特异性DNA弯曲的β重组反应。N端序列分析和基因组数据库搜索确定主要成分是铜绿假单胞菌和大肠杆菌HupB的类似物,编码一种HU蛋白变体。该分级分离物的次要成分称为HupN,与HupB的差异足够大,可预测其具有独立的DNA弯曲能力。克隆并超表达了这两种蛋白质的决定因素,并纯化了基因产物。在体外β重组试验中以及在体内通过枯草芽孢杆菌Hbsu功能的互补作用检测了它们的活性。在所有测试中,HupB和HupN的效率相同,这表明它们是独立的且在功能上冗余的DNA弯曲蛋白。这反映在甲苯降解质粒TOL的最终sigma54 Ps启动子在体内的活性维持上,该启动子需要促进DNA弯曲,在缺失hupB或缺失hupN的菌株中也是如此。然而,hupB/hupN双突变体无法存活。有人提出,恶臭假单胞菌中对蛋白质促进的DNA弯曲的需求由两种独立的蛋白质满足,这两种蛋白质确保了一种基本细胞活性的充足供应。