Li Zhaofei, Pan Lijing, Yu Hang, Li Lingling, Gong Yingxue, Yang Kai, Pang Yi
State Key Laboratory for Biocontrol, Institute of Entomology, Zhongshan University, Guangzhou 510275, PR China.
Virus Res. 2006 Feb;115(2):185-91. doi: 10.1016/j.virusres.2005.08.006. Epub 2005 Oct 3.
Homology analysis revealed that Spodoptera litura multicapsid nucleopolyhedrovirus (SpltMNPV) 38.7 k protein has 22-83% amino acid identities with Ecotropis obliqua NPV, Mamestra configurata MNPV, Helicoverpa armigera SNPV, H. zea SNPV, S. exigua MNPV and S. littoralis MNPV 38.7 k proteins. Analysis of the relationship of these 38.7 k proteins indicated that they contain a conserved BRO-N domain, and SpltMNPV and SpliMNPV 38.7 k proteins also contain a motif found in all known viral and prokaryotic single-strand DNA binding proteins. RT-PCR results showed that SpltMNPV 38.7 k gene is transcribed actively at the late stage of infection and the mRNA start site was mapped within a consensus baculovirus late promoter motif (ATAAG). Western blot analysis revealed that the 38.7 k was expressed in infected S. litura cells as a 41 kDa form and this protein distributed in the nucleus of infected cells. Using a histone extraction protocol, SpltMNPV 38.7 k could be detected in the histone H1 fraction. Micrococcal nuclease treatment released SpltMNPV 38.7 k protein from the chromatin fraction, suggesting that its involvement in nucleosome structures. Furthermore, column chromatography using DNA-cellulose showed that SpltMNPV 38.7 k protein interacted with nucleic acids. It was proposed that SpltMNPV 38.7 k might function as a DNA-binding protein.
同源性分析显示,斜纹夜蛾多粒包埋核多角体病毒(SpltMNPV)的38.7k蛋白与斜纹夜蛾NPV、甘蓝夜蛾MNPV、棉铃虫SNPV、玉米螟SNPV、甜菜夜蛾MNPV和海滨夜蛾MNPV的38.7k蛋白具有22%-83%的氨基酸同一性。对这些38.7k蛋白的关系分析表明,它们含有一个保守的BRO-N结构域,并且SpltMNPV和SpliMNPV的38.7k蛋白还含有一个在所有已知病毒和原核单链DNA结合蛋白中都存在的基序。RT-PCR结果表明,SpltMNPV的38.7k基因在感染后期活跃转录,mRNA起始位点定位在杆状病毒晚期启动子共有基序(ATAAG)内。蛋白质印迹分析显示,38.7k蛋白在感染的斜纹夜蛾细胞中以41kDa的形式表达,并且该蛋白分布在感染细胞的细胞核中。使用组蛋白提取方案,在组蛋白H1组分中可检测到SpltMNPV的38.7k蛋白。微球菌核酸酶处理从染色质组分中释放出SpltMNPV的38.7k蛋白,表明其参与核小体结构。此外,使用DNA-纤维素的柱色谱显示SpltMNPV的38.7k蛋白与核酸相互作用。有人提出SpltMNPV的38.7k可能作为一种DNA结合蛋白发挥作用。