Identification of a mutation in editing of defective newcastle disease virus recombinants that modulates P-gene mRNA editing and restores virus replication and pathogenicity in chicken embryos

被引:19
作者
Mebatsion, T
de Vaan, LTC
de Haas, N
Römer-Oberdörfer, A
Braber, M
机构
[1] Intervet Int BV, Dept Virol, NL-5830 AA Boxmeer, Netherlands
[2] Fed Res Ctr Virus Dis Anim, Friedrich Loeffler Inst, Inst Mol Biol, D-17493 Greifswald, Germany
关键词
D O I
10.1128/JVI.77.17.9259-9265.2003
中图分类号
Q93 [微生物学];
学科分类号
071005 ; 100705 ;
摘要
Editing of P-gene mRNA of Newcastle disease virus (NDV) enables the formation of two additional proteins (V and W) by inserting one or two nontemplated G residues at a conserved editing site (5'-AAAAAGGG). The V protein of NDV plays an important role in virus replication and is also a virulence factor presumably due to its ability to counteract the antiviral effects of interferon. A recombinant virus possessing a nucleotide substitution within the A-stretch (5'-AAgAAGGG) produced 20-fold-less V protein and, in consequence, was impaired in replication capacity and completely attenuated in pathogenicity for chicken embryos. However, in a total of seven serial passages, restoration of replication and pathogenic capacity in 9- to 11-day-old chicken embryos was noticed. Determining the sequence around the editing site of the virus at passage 7 revealed a C-to-U mutation at the second nucleotide immediately upstream of the 5'-A(5) stretch (5'-GuUAAgAAGGG). The V mRNA increased from an undetectable level at passage 5 to ca. 1 and 5% at passages 6 and 7, respectively. In addition, similar defects in another mutant possessing a different substitution mutation (5'-AAAcAGGG) were restored in an identical manner within a total of seven serial passages. Introduction of the above C-to-U mutation into the parent virus (5'-GuUAAAAAGGG) altered the frequency of P, V, and W mRNAs from 68, 28, and 4% to 15, 44, and 41%, respectively, demonstrating that the U at this position is a key determinant in modulating P-gene mRNA editing. The results indicate that this second-site mutation is required to compensate for the drop in edited mRNAs and consequently to restore the replication capacity, as well as. the pathogenic potential, of editing-defective NDV recombinants.
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收藏
页码:9259 / 9265
页数:7
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