Köhler P, Marahiel M A
Biochemie/Fachbereich Chemie, Phillipps-Universität Marburg, Germany.
J Bacteriol. 1997 Mar;179(6):2060-4. doi: 10.1128/jb.179.6.2060-2064.1997.
To investigate the physiological role of the essential histone-like protein of Bacillus subtilis (HBsu) in the nucleoid structure, a fusion to the green fluorescent protein (GFP) of Aequorea victoria was constructed. This purified fusion protein, HBsuGFP, showed a threefold-reduced affinity to DNA compared to unmodified HBsu; however, in gel mobility shift experiments HBsuGFP DNA-binding was greatly enhanced in the presence of low HBsu concentrations. Additional production of HBsu also had a positive effect on the retarded growth of a B. subtilis strain, PK9C8, which expresses only hbs-gfp (encoding HBsuGFP). HBsu seemed to influence not only growth but also nucleoid structure, as monitored by DNA staining and fluorescence microscopy. Without HBsu production, strain PK9C8 showed a relaxed nucleoid structure associated with HBsuGFP. However, a highly compact nucleoid structure that coincides with the fluorescence of the fusion protein was visualized when HBsu synthesis was induced. This provides the first evidence for in vivo association of HBsu in DNA packaging and its consequence on cell growth.
为了研究枯草芽孢杆菌必需的类组蛋白(HBsu)在类核结构中的生理作用,构建了与维多利亚水母绿色荧光蛋白(GFP)的融合蛋白。与未修饰的HBsu相比,这种纯化的融合蛋白HBsuGFP对DNA的亲和力降低了三倍;然而,在凝胶迁移率变动实验中,在低浓度HBsu存在的情况下,HBsuGFP与DNA的结合大大增强。额外产生的HBsu对仅表达hbs-gfp(编码HBsuGFP)的枯草芽孢杆菌菌株PK9C8的生长迟缓也有积极影响。通过DNA染色和荧光显微镜监测发现,HBsu似乎不仅影响生长,还影响类核结构。在不产生HBsu的情况下,PK9C8菌株显示出与HBsuGFP相关的松弛类核结构。然而,当诱导HBsu合成时,可以看到与融合蛋白荧光一致的高度致密的类核结构。这为HBsu在体内与DNA包装的关联及其对细胞生长的影响提供了首个证据。