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首页> 外文期刊>Proteome science >Novel immune-modulator identified by a rapid, functional screen of the parapoxvirus ovis (Orf virus) genome
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Novel immune-modulator identified by a rapid, functional screen of the parapoxvirus ovis (Orf virus) genome

机译:通过对副痘病毒卵(Orf病毒)基因组的快速,功能性筛选鉴定出的新型免疫调节剂

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Background The success of new sequencing technologies and informatic methods for identifying genes has made establishing gene product function a critical rate limiting step in progressing the molecular sciences. We present a method to functionally mine genomes for useful activities in vivo, using an unusual property of a member of the poxvirus family to demonstrate this screening approach. Results The genome of Parapoxvirus ovis (Orf virus) was sequenced, annotated, and then used to PCR-amplify its open-reading-frames. Employing a cloning-independent protocol, a viral expression-library was rapidly built and arrayed into sub-library pools. These were directly delivered into mice as expressible cassettes and assayed for an immune-modulating activity associated with parapoxvirus infection. The product of the B2L gene, a homolog of vaccinia F13L, was identified as the factor eliciting immune cell accumulation at sites of skin inoculation. Administration of purified B2 protein also elicited immune cell accumulation activity, and additionally was found to serve as an adjuvant for antigen-specific responses. Co-delivery of the B2L gene with an influenza gene-vaccine significantly improved protection in mice. Furthermore, delivery of the B2L expression construct, without antigen, non-specifically reduced tumor growth in murine models of cancer. Conclusion A streamlined, functional approach to genome-wide screening of a biological activity in vivo is presented. Its application to screening in mice for an immune activity elicited by the pathogen genome of Parapoxvirus ovis yielded a novel immunomodulator. In this inverted discovery method, it was possible to identify the adjuvant responsible for a function of interest prior to a mechanistic study of the adjuvant. The non-specific immune activity of this modulator, B2, is similar to that associated with administration of inactivated particles to a host or to a live viral infection. Administration of B2 may provide the opportunity to significantly impact host immunity while being itself only weakly recognized. The functional genomics method used to pinpoint B2 within an ORFeome may be more broadly applicable to screening for other biological activities in an animal.
机译:背景技术用于鉴定基因的新测序技术和信息学方法的成功使建立基因产物功能成为分子科学发展中的关键速率限制步骤。我们提出了一种利用体内痘病毒家族成员的不寻常特性来证明这种筛选方法的功能性挖掘体内有用活动的基因组的方法。结果副猪痘病毒(Orf病毒)的基因组被测序,注释,然后用于PCR扩增其开放阅读框。利用与克隆无关的方案,快速构建了病毒表达文库并将其排列在子文库库中。将它们作为可表达的盒直接递送到小鼠中,并测定与副痘病毒感染有关的免疫调节活性。 B2L基因的产物,牛痘F13L的同系物,被确定为在皮肤接种部位引起免疫细胞积聚的因子。纯化的B2蛋白的给药也引起免疫细胞积聚活性,另外还发现它可作为抗原特异性反应的佐剂。 B2L基因与流感基因疫苗的共同递送显着改善了对小鼠的保护。此外,在没有抗原的情况下,B2L表达构建体的递送非特异性地减少了在癌症的鼠模型中的肿瘤生长。结论提出了一种简化的功能性方法,可进行全基因组体内生物学活性筛选。将其用于在小鼠中筛选副痘病毒的病原体基因组引起的免疫活性产生了一种新型的免疫调节剂。在这种反向发现方法中,有可能在佐剂的机理研究之前鉴定出负责感兴趣功能的佐剂。这种调节剂B2的非特异性免疫活性类似于将灭活的颗粒施用于宿主或活病毒感染的免疫活性。 B2的管理可能会提供机会显着影响宿主的免疫力,而自身只是被弱者认识到。用于确定ORFeome中B2的功能基因组学方法可能更广泛地适用于筛选动物中的其他生物活性。

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