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牛免疫缺陷病毒的dUTPase相关基因对病毒复制至关重要,尽管其编码蛋白缺乏dUTPase活性。

The dUTPase-related gene of bovine immunodeficiency virus is critical for viral replication, despite the lack of dUTPase activity of the encoded protein.

作者信息

Voronin Nickolay, Herzig Eytan, Hizi Amnon

机构信息

Department of Cell and Developmental Biology, Sackler School of Medicine, Tel Aviv University, Tel Aviv 69978, Israel.

出版信息

Retrovirology. 2014 Aug 12;11:60. doi: 10.1186/1742-4690-11-60.

Abstract

BACKGROUND

Deoxyuridine 5'-triphosphate nucleotide-hydrolases (dUTPases) are essential for maintaining low intra-cellular dUTP/dTTP ratios. Therefore, many viruses encode this enzyme to prevent dUTP incorporation into their genomes instead of dTTP. Among the lentiviruses, the non-primate viruses express dUTPases. In bovine immunodeficiency virus (BIV), the putative dUTPase protein is only 74 residues-long, compared to ~130 residues in other lentiviruses.

RESULTS

In this study, the recombinant BIV dUTPase, as well as infectious wild-type (WT) BIV virions, were shown to lack any detectable dUTPase activity. Controls of recombinant dUTPase from equine infectious anemia virus (EIAV) or of EIAV virions showed substantial dUTPase activities. To assess the importance of the dUTPase to BIV replication, we have generated virions of WT BIV or BIV with mutations in the dUTPase gene. The two mutant viral dUTPases were the double mutant D48E/N57S (in the putative enzyme active site and its vicinity) and a deletion of 36 residues. In dividing Cf2Th cells and under conditions where the WT virus was infectious and generated progeny virions, both mutant viruses were defective, as no progeny viruses were generated. Analyses of the integrated viral cDNA showed that cells infected with the mutant virions carry in their genomic DNA levels of integrated BIV DNA that are comparable to those in WT BIV-infected cells.

CONCLUSIONS

The herby presented results show that the two BIV mutants with the modified dUTPase gene could infect cells, as viral cDNA was synthesized and integrated into the host cell DNA. However, no virions were generated by cells infected by these mutants. The most likely explanation is that either the integrated cDNA of the mutants is defective (due to potential multiple mutations, introduced during reverse-transcription) or that the original dUTPase mutations have led to severe blocks in viral replication at steps post integration. These results emphasize the importance of the dUTPase-related sequence to BIV replication, despite the lack of any detectable catalytic activity.

摘要

背景

脱氧尿苷5'-三磷酸核苷酸水解酶(dUTPases)对于维持细胞内低dUTP/dTTP比率至关重要。因此,许多病毒编码这种酶以防止dUTP而非dTTP掺入其基因组。在慢病毒中,非灵长类病毒表达dUTPases。在牛免疫缺陷病毒(BIV)中,假定的dUTPase蛋白仅74个残基长,而其他慢病毒中的该蛋白约为130个残基。

结果

在本研究中,重组BIV dUTPase以及感染性野生型(WT)BIV病毒粒子均显示缺乏任何可检测到的dUTPase活性。来自马传染性贫血病毒(EIAV)的重组dUTPase或EIAV病毒粒子的对照显示出大量的dUTPase活性。为了评估dUTPase对BIV复制的重要性,我们构建了WT BIV或dUTPase基因发生突变的BIV病毒粒子。两种突变病毒dUTPases分别是双突变体D48E/N57S(在假定的酶活性位点及其附近)和缺失36个残基。在分裂的Cf2Th细胞中,以及在WT病毒具有感染性并产生子代病毒粒子的条件下,两种突变病毒均有缺陷,因为未产生子代病毒。对整合的病毒cDNA的分析表明,感染突变病毒粒子的细胞在其基因组DNA中携带的整合BIV DNA水平与WT BIV感染的细胞相当。

结论

本文呈现的结果表明,具有修饰的dUTPase基因的两种BIV突变体能够感染细胞,因为病毒cDNA被合成并整合到宿主细胞DNA中。然而,被这些突变体感染的细胞未产生病毒粒子。最可能的解释是,突变体的整合cDNA存在缺陷(由于逆转录过程中可能引入的多个突变),或者原始的dUTPase突变在整合后的病毒复制步骤中导致了严重的阻滞。这些结果强调了dUTPase相关序列对BIV复制的重要性,尽管缺乏任何可检测到的催化活性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/b196/4261571/a0c497db66e6/12977_2014_3939_Fig1_HTML.jpg

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