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Random Transposon-Mediated Mutagenesis of the Essential Large Tegument Protein pUL36 of Pseudorabies Virus

机译:随机转座子介导的伪狂犬病病毒必需大皮膜蛋白pUL36诱变

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摘要

Homologs of the pseudorabies virus (PrV) essential large tegument protein pUL36 are conserved throughout the Herpesviridae. pUL36 functions during transport of the nucleocapsid to and docking at the nuclear pore as well as during virion formation after nuclear egress in the cytoplasm. Deletion analyses revealed several nonessential regions within the 3,084-amino-acid PrV pUL36 (S. Böttcher, B. G. Klupp, H. Granzow, W. Fuchs, K. Michael, and T. C. Mettenleiter, J. Virol. 80:9910-9915, 2006; S. Böttcher, H. Granzow, C. Maresch, B. Möhl, B. G. Klupp, and T. C. Mettenleiter, J. Virol. 81:13403-13411, 2007), while the C-terminal 62 amino acids are essential for virus replication (K. Coller, J. Lee, A. Ueda, and G. Smith, J. Virol. 81:11790-11797, 2007). To identify additional functional domains, we performed random mutagenesis of PrV pUL36 by transposon-mediated insertion of a 15-bp linker. By this approach, 26 pUL36 insertion mutants were selected and tested in transient transfection assays for their ability to complement one-step growth and/or viral spread of a PrV UL36 null mutant. Ten insertion mutants in the N-terminal half and 10 in the C terminus complemented both, whereas six insertion mutants clustering in the center of the protein did not complement in either assay. Interestingly, several insertions within conserved parts yielded positive complementation, including those located within the essential C-terminal 62 amino acids. For 15 mutants that mediated productive replication, stable virus recombinants were isolated and further characterized by plaque assay, in vitro growth analysis, and electron microscopy. Except for three mutant viruses, most insertion mutants replicated like wild-type PrV. Two insertion mutants, at amino acids (aa) 597 and 689, were impaired in one-step growth and viral spread and exhibited a defect in virion maturation in the cytoplasm. In contrast, one functional insertion (aa 1800) in a region which otherwise yielded only nonfunctional insertion mutants was impaired in viral spread but not in one-step growth without a distinctive ultrastructural phenotype. In summary, these studies extend and refine previous analyses of PrV pUL36 and demonstrate the different sensitivities of different regions of the protein to functional loss by insertion.
机译:在整个疱疹病毒科中,伪狂犬病病毒(PrV)必需的大被皮蛋白质pUL36的同源物均被保守。 pUL36在核衣壳转运到核孔并停靠在核孔期间以及在细胞质中核流出后形成病毒粒子期间起作用。缺失分析揭示了3,084个氨基酸的PrV pUL36内的几个非必需区域(S.Böttcher,BG Klupp,H.Granzow,W.Fuchs,K.Michael和TC Mettenleiter,J.Virol.80:9910-9915,2006 ; S。Böttcher,H。Granzow,C。Maresch,B。Möhl,BG Klupp和TC Mettenleiter,J。Virol。81:13403-13411,2007),而C末端的62个氨基酸对于病毒复制至关重要(K.Coller,J.Lee,A.Ueda和G.Smith,J.Virol.81:11790-11797,2007)。为了确定其他功能域,我们通过转座子介导的15 bp接头插入对PrV pUL36进行了随机诱变。通过这种方法,选择了26个pUL36插入突变体,并在瞬时转染测定中测试了它们补充PrV UL36空突变体的一步生长和/或病毒传播的能力。在N端一半的10个插入突变体和在C末端的10个插入突变体都互补,而聚集在蛋白质中心的6个插入突变体在任一测定中都不互补。有趣的是,保守部分内的数个插入产生正互补,包括位于必需的C末端62个氨基酸内的那些。对于介导生产性复制的15个突变体,分离出稳定的病毒重组体,并通过噬斑测定,体外生长分析和电子显微镜进一步表征。除了三种突变病毒,大多数插入突变体都像野生型PrV一样复制。氨基酸(aa)597和689处的两个插入突变体的一步生长和病毒传播受到损害,并在细胞质中表现出病毒粒子成熟缺陷。相反,在一个区域中仅产生非功能性插入突变体的一个功能性插入(aa 1800)在病毒传播中受到损害,而在没有明显超微结构表型的一步生长中则没有受到损害。总之,这些研究扩展和完善了先前对PrV pUL36的分析,并证明了蛋白质不同区域对插入引起的功能丧失的不同敏感性。

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