Stemmer Christian, Fernández Silvia, Lopez Gema, Alonso Juan C, Grasser Klaus D
Department of Biotechnology, Institute of Life Sciences, Aalborg University, Sohngaardsholmsvej 49, DK-9000 Aalborg, Denmark.
Biochemistry. 2002 Jun 18;41(24):7763-70. doi: 10.1021/bi020153u.
In the presence of an accessory DNA bending protein, the bacterial site-specific beta recombinase catalyzes resolution and DNA inversion. Five different maize high mobility group B (HMGB) proteins were examined for their potential to facilitate beta recombination in vitro using DNA substrates with different intervening distances (73-913 bp) between two directly oriented recombination (six) sites. All analyzed HMGB proteins (HMGB1 to HMGB5) could promote beta recombination, but depending on the DNA substrate with different efficiencies. The HMGB1 protein displayed an activity comparable to that of the natural promoting protein Hbsu, whereas the other HMGB proteins were less effective. Phosphorylation of the HMGB1 protein resulted in an increased efficiency of HMGB1 to promote beta recombination. Analyses of DNA substrates with closely spaced six sites demonstrated that in the presence of HMGB1 the recombination rate was correlated to the distance between the six sites, but independent of the helical orientation of the six sites. Using a Bacillus subtilis strain defective in Hbsu, the coexpression of beta recombinase and HMGB1 (or a truncated HMGB1 derivative) revealed that a plant HMG-box domain protein is sufficient for assisting beta to catalyze recombination in vivo. Our results using beta recombination as a model system suggest that the various plant HMGB proteins (and their posttranslationally modified versions) have the potential of forming a repertoire of different DNA structures, which is compatible with the idea that the HMGB proteins can act as architectural factors in a variety of nucleoprotein structures.
在辅助性DNA弯曲蛋白存在的情况下,细菌位点特异性β重组酶催化拆分和DNA倒位。使用两个直接定向的重组(六个)位点之间具有不同间隔距离(73 - 913 bp)的DNA底物,对五种不同的玉米高迁移率族B(HMGB)蛋白在体外促进β重组的潜力进行了检测。所有分析的HMGB蛋白(HMGB1至HMGB5)都能促进β重组,但根据DNA底物的不同,效率有所差异。HMGB1蛋白表现出与天然促进蛋白Hbsu相当的活性,而其他HMGB蛋白的效果则较差。HMGB1蛋白的磷酸化导致其促进β重组的效率提高。对六个位点间距紧密的DNA底物的分析表明,在HMGB1存在的情况下,重组率与六个位点之间的距离相关,但与六个位点的螺旋方向无关。使用Hbsu缺陷的枯草芽孢杆菌菌株,β重组酶与HMGB1(或截短的HMGB1衍生物)的共表达表明,一种植物HMG盒结构域蛋白足以在体内协助β催化重组。我们以β重组为模型系统的研究结果表明,各种植物HMGB蛋白(及其翻译后修饰形式)有可能形成不同DNA结构的组合,这与HMGB蛋白可作为多种核蛋白结构中的结构因子这一观点相符。