首页> 美国卫生研究院文献>Proceedings of the National Academy of Sciences of the United States of America >Rescue of a pathogenic Mareks disease virus with overlapping cosmid DNAs: Use of a pp38 mutant to validate the technology for the study of gene function
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Rescue of a pathogenic Mareks disease virus with overlapping cosmid DNAs: Use of a pp38 mutant to validate the technology for the study of gene function

机译:拯救具有重叠粘粒DNA的马立克氏病致病性病毒:使用pp38突变体来验证用于基因功能研究的技术

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摘要

Marek's disease virus (MDV) genetics has lagged behind that of other herpesviruses because of the lack of tools for the introduction of site-specific mutations into the genome of highly cell-associated oncogenic strains. Overlapping cosmid clones have been successfully used for the introduction of mutations in other highly cell-associated herpesviruses. Here we describe the development of overlapping cosmid DNA clones from a very virulent oncogenic strain of MDV. Transfection of these cosmid clones into MDV-susceptible cells resulted in the generation of a recombinant MDV (rMd5) with biological properties similar to the parental strain. To demonstrate the applicability of this technology for elucidation of gene function of MDV, we have generated a mutant virus lacking an MDV unique phosphoprotein, pp38, which has previously been associated with the maintenance of transformation in MDV-induced tumor cell lines. Inoculation of Marek's disease-susceptible birds with the pp38 deletion mutant virus (rMd5Δpp38) revealed that pp38 is involved in early cytolytic infection in lymphocytes but not in the induction of tumors. This powerful technology will speed the characterization of MDV gene function, leading to a better understanding of the molecular mechanisms of MDV pathogenesis. In addition, because Marek's disease is a major oncogenic system, the knowledge obtained from these studies may shed light on the oncogenic mechanisms of other herpesviruses.
机译:马立克氏病病毒(MDV)的遗传学已经落后于其他疱疹病毒,因为缺乏将位点特异性突变引入与细胞高度相关的致癌菌株基因组中的工具。重叠的粘粒克隆已成功用于在其他高度细胞相关的疱疹病毒中引入突变。在这里,我们描述了从非常有毒的MDV致癌菌株中重叠粘粒DNA克隆的发展。将这些粘粒克隆转染到MDV易感细胞中,从而产生了具有与亲本菌株相似的生物学特性的重组MDV(rMd5)。为了证明该技术对阐明MDV基因功能的适用性,我们产生了一种缺少MDV独特磷蛋白pp38的突变病毒,该病毒先前与维持MDV诱导的肿瘤细胞系的转化有关。用pp38缺失突变病毒(rMd5Δpp38)接种马立克氏病易感鸟类表明,pp38参与淋巴细胞的早期溶细胞性感染,但不参与肿瘤的诱导。这项强大的技术将加快MDV基因功能的表征,从而使人们更好地了解MDV发病机理的分子机制。另外,由于马立克氏​​病是主要的致癌系统,因此从这些研究中获得的知识可能会阐明其他疱疹病毒的致癌机制。

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