Mikhailov Victor S, Okano Kazuhiro, Rohrmann George F
Department of Microbiology, Oregon State University, Corvallis, OR 97331-3804, USA.
J Virol. 2003 Feb;77(4):2436-44. doi: 10.1128/jvi.77.4.2436-2444.2003.
Alkaline nuclease (AN) of the Autographa californica multiple-capsid nucleopolyhedrovirus (AcMNPV) (open reading frame 133) was expressed in recombinant baculovirus as a His(6)-tagged fusion and purified by sequential chromatography on Ni-NTA-agarose, DEAE-Toyopearl, and heparin-Sepharose. At all stages of purification, AcMNPV AN was found to copurify with a 44-kDa polypeptide which was identified as the baculovirus single-stranded DNA (ssDNA)-binding (SSB) protein, LEF-3. Sedimentation analysis in glycerol gradients of highly purified samples suggested that AN and LEF-3 are associated in a complex (designated *AN/L3), predominantly as heterodimers, although oligomeric forms containing both proteins were evident. In reactions with single- or double-stranded 62-mer oligonucleotides that were labeled with (32)P at the 5' or 3' ends, *AN/L3 carried out exonucleolytic hydrolysis of both substrates exclusively in a 5'-->3' direction. Saturation of ssDNA with an excess of LEF-3 prior to the addition of *AN/L3 resulted in a marked decrease in the rate of ssDNA hydrolysis. This suggests that excess LEF-3 may protect ssDNA from digestion by a AN-LEF-3 complex, thus regulating its activity in infected cells. The association of baculovirus AN with the viral SSB LEF-3 and the 5'-->3' exonuclease activity of this complex suggests that AN and LEF-3 may participate in homologous recombination of the baculovirus genome in a manner similar to that of exonuclease (Redalpha) and DNA-binding protein (Redbeta) of the Red-mediated homologous recombination system of bacteriophage lambda.
苜蓿银纹夜蛾多核衣壳核型多角体病毒(AcMNPV)的碱性核酸酶(AN)(开放阅读框133)在重组杆状病毒中作为His(6)标签融合蛋白表达,并通过在Ni-NTA琼脂糖、DEAE- Toyopearl和肝素-琼脂糖上的连续层析进行纯化。在纯化的各个阶段,发现AcMNPV AN与一种44 kDa的多肽共纯化,该多肽被鉴定为杆状病毒单链DNA(ssDNA)结合(SSB)蛋白LEF-3。在甘油梯度中对高度纯化样品进行的沉降分析表明,AN和LEF-3以复合物形式存在(命名为*AN/L3),主要以异二聚体形式存在,尽管含有这两种蛋白质的寡聚体形式也很明显。在与5'或3'端用(32)P标记的单链或双链62聚体寡核苷酸的反应中,AN/L3仅在5'→3'方向上对两种底物进行核酸外切水解。在添加AN/L3之前,用过量的LEF-3使ssDNA饱和,导致ssDNA水解速率显著降低。这表明过量的LEF-3可能保护ssDNA不被AN-LEF-3复合物消化,从而调节其在感染细胞中的活性。杆状病毒AN与病毒SSB LEF-3的结合以及该复合物的5'→3'核酸外切酶活性表明,AN和LEF-3可能以类似于噬菌体λ的Red介导的同源重组系统中的核酸外切酶(Redalpha)和DNA结合蛋白(Redbeta)的方式参与杆状病毒基因组的同源重组。