Carstens E B, Ye L B, Faulkner P
Department of Microbiology and Immunology, Queen's University, Kingston, Ontario K7L 3N6, Canada.
J Gen Virol. 1987 Mar;68 ( Pt 3):901-5. doi: 10.1099/0022-1317-68-3-901.
The polyhedrin gene region of the Autographa californica nuclear polyhedrosis virus(AcMNPV) morphology mutant M29 has been characterized by genetic and physical techniques. Recombination analysis of mutants M29 and AcM5polyl demonstrated that wild-type polyhedrin recombinants could be obtained and that the DNA restriction patterns of the recombinant viruses were identical to wild-type AcMNPV DNA. Marker rescue experiments using the wild-type AcMNPV EcoRI I fragment indicated that the morphology mutation responsible for the M29 phenotype was located in the 0.0 to 5.9 % region of the genome. Direct DNA sequencing of the BamHIF fragment from M29 showed a single point mutation at position 253 of the polyhedrin gene. This mutation caused a substitution of phenylalanine for leucine at amino acid 84 of the M29 polyhedrin protein. These results indicated the necessity of amino acid conservation in the polyhedrin amino acid sequence for proper folding and assembly of the polypeptide into occlusion bodies.
通过遗传和物理技术对苜蓿银纹夜蛾核型多角体病毒(AcMNPV)形态突变体M29的多角体蛋白基因区域进行了表征。突变体M29和AcM5polyl的重组分析表明,可以获得野生型多角体蛋白重组体,并且重组病毒的DNA限制图谱与野生型AcMNPV DNA相同。使用野生型AcMNPV EcoRI I片段进行的标记拯救实验表明,导致M29表型的形态突变位于基因组的0.0至5.9%区域。对来自M29的BamHIF片段进行直接DNA测序,结果显示在多角体蛋白基因的第253位有一个单点突变。该突变导致M29多角体蛋白的第84位氨基酸由亮氨酸替换为苯丙氨酸。这些结果表明,多角体蛋白氨基酸序列中的氨基酸保守性对于多肽正确折叠并组装成包涵体是必要的。