首页> 外文OA文献 >Novel Design Architecture for Genetic Stability of Recombinant Poliovirus: the Manipulation of G/C Contents and Their Distribution Patterns Increases the Genetic Stability of Inserts in a Poliovirus-Based RPS-Vax Vector System
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Novel Design Architecture for Genetic Stability of Recombinant Poliovirus: the Manipulation of G/C Contents and Their Distribution Patterns Increases the Genetic Stability of Inserts in a Poliovirus-Based RPS-Vax Vector System

机译:重组脊髓灰质炎病毒遗传稳定性的新型设计体系结构:操纵G / C含量及其分布模式可提高基于脊髓灰质炎病毒的RPS-Vax载体系统中插入片段的遗传稳定性。

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摘要

Poliovirus has been studied as a live recombinant vaccine vector because of its attractive characteristics. The genetic instability, however, has hampered recombinant polioviruses (PVs) from being developed as an appropriate vaccine. A variety of different foreign inserts were cloned directly into our poliovirus Sabin 1-based RPS-Vax vector system, resulting in the production of recombinant PVs. The genetic stability of each recombinant PV was examined during 12 rounds of consecutive passage. It was found that the genetic stability of the recombinants was not well correlated with their insert size. Instead, elevated stability was frequently observed in recombinants with inserts of high G/C contents. Furthermore, a comparative study using different constructs of the human immunodeficiency virus env gene revealed that the internal deletion of the unstable insert was seemingly caused by the presence of the adjacent A/T-rich region. The instability of these inserts was completely remedied by (i) increasing the G/C contents and (ii) replacing the local A/T-rich region with the G/C-rich codon without a change of the amino acid. This means that stability is closely associated with the G/C content and the G/C distribution pattern. To see whether these findings can be applied to the design of genetically stable recombinant PV, we have reconstructed the heteromultimeric insert based on our design architecture, including the above-mentioned G/C rules and the template/ligation-free PCR protocol. The heteromultimeric insert was very unstable, as expected, but the manipulated insert with the same amino acid sequence showed complete genetic stability, not only in vitro, but also in vivo. Even though this guideline was established with our RPS-Vax vector system, to some extent, it can also be applied to other live viral vaccine vectors.
机译:脊髓灰质炎病毒由于其吸引人的特性已被研究为活的重组疫苗载体。然而,遗传不稳定性阻碍了重组脊髓灰质炎病毒(PVs)被开发为合适的疫苗。将多种不同的外源插入片段直接克隆到我们基于脊髓灰质炎病毒Sabin 1的RPS-Vax载体系统中,从而产生了重组PV。在连续12轮传代过程中检查了每个重组PV的遗传稳定性。发现重组体的遗传稳定性与其插入片段大小没有很好的相关性。取而代之的是,在具有高G / C含量的插入片段的重组子中经常观察到提高的稳定性。此外,使用人类免疫缺陷病毒env基因的不同构建体进行的比较研究表明,不稳定插入物的内部缺失似乎是由邻近的富含A / T的区域引起的。通过(i)增加G / C含量和(ii)用富含G / C的密码子替换局部富含A / T的区域而不改变氨基酸,可以完全消除这些插入物的不稳定性。这意味着稳定性与G / C含量和G / C分布模式密切相关。为了了解这些发现是否可用于遗传稳定的重组PV的设计,我们基于我们的设计架构(包括上述G / C规则和无模板/无连接的PCR方案)重构了异源多聚体插入片段。如所预期的,异源多聚体插入物非常不稳定,但是具有相同氨基酸序列的操纵插入物不仅在体外而且在体内均显示出完全的遗传稳定性。即使该指导原则是通过我们的RPS-Vax载体系统建立的,在某种程度上,它也可以应用于其他活病毒疫苗载体。

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