Mikhailov V S, Mikhailova A L, Iwanaga M, Gomi S, Maeda S
N. K. Koltzov Institute of Developmental Biology, Moscow, Russia.
J Virol. 1998 Apr;72(4):3107-16. doi: 10.1128/JVI.72.4.3107-3116.1998.
A DNA-binding protein (designated DBP) with an apparent molecular mass of 38 kDa was purified to homogeneity from BmN cells (derived from Bombyx mori) infected with the B. mori nucleopolyhedrovirus (BmNPV). Six peptides obtained after digestion of the isolated protein with Achromobacter protease I were partially or completely sequenced. The determined amino acid sequences indicated that DBP was encoded by an open reading frame (ORF16) located at nucleotides (nt) 16189 to 17139 in the BmNPV genome (GenBank accession no. L33180). This ORF (designated dbp) is a homolog of Autographa californica multicapsid NPV ORF25, whose product has not been identified. BmNPV DBP is predicted to contain 317 amino acids (calculated molecular mass of 36.7 kDa) and to have an isoelectric point of 7.8. DBP showed a tendency to multimerization in the course of purification and was found to bind preferentially to single-stranded DNA. When bound to oligonucleotides, DBP protected them from hydrolysis by phage T4 DNA polymerase-associated 3'-->5' exonuclease. The sizes of the protected fragments indicated that a binding site size for DBP is about 30 nt per protein monomer. DBP, but not BmNPV LEF-3, was capable of unwinding partial DNA duplexes in an in vitro system. This helix-destabilizing ability is consistent with the prediction that DBP functions as a single-stranded DNA binding protein in virus replication.
从感染了家蚕核型多角体病毒(BmNPV)的BmN细胞(源自家蚕)中纯化出一种表观分子量为38 kDa的DNA结合蛋白(命名为DBP),使其达到同质状态。用无色杆菌蛋白酶I消化分离出的蛋白后获得的六个肽段进行了部分或全部测序。所确定的氨基酸序列表明,DBP由位于BmNPV基因组(GenBank登录号L33180)中核苷酸(nt)16189至17139处的一个开放阅读框(ORF16)编码。这个ORF(命名为dbp)是苜蓿银纹夜蛾多粒包埋核型多角体病毒ORF25的同源物,其产物尚未确定。预测BmNPV DBP含有317个氨基酸(计算分子量为36.7 kDa),等电点为7.8。DBP在纯化过程中呈现多聚化趋势,并且发现它优先结合单链DNA。当与寡核苷酸结合时,DBP保护它们不被噬菌体T4 DNA聚合酶相关的3'→5'核酸外切酶水解。受保护片段的大小表明,DBP的结合位点大小约为每个蛋白质单体30 nt。在体外系统中,DBP能够解开部分DNA双链体,而BmNPV LEF-3则不能。这种解螺旋能力与DBP在病毒复制中作为单链DNA结合蛋白发挥作用的预测一致。