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Broadening the versatility of lentiviral vectors as a tool in nucleic acid research via genetic code expansion

机译:通过遗传密码扩展扩大慢病毒载体的多功能性,将其作为核酸研究的工具

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With the aim of broadening the versatility of lentiviral vectors as a tool in nucleic acid research, we expanded the genetic code in the propagation of lentiviral vectors for site-specific incorporation of chemical moieties with unique properties. Through systematic exploration of the structure-function relationship of lentiviral VSVg envelope by site-specific mutagenesis and incorporation of residues displaying azide- and diazirine-moieties, the modifiable sites on the vector surface were identified, with most at the PH domain that neither affects the expression of envelope protein nor propagation or infectivity of the progeny virus. Furthermore, via the incorporation of such chemical moieties, a variety of fluorescence probes, ligands, PEG and other functional molecules are conjugated, orthogonally and stoichiometrically, to the lentiviral vector. Using this methodology, a facile platform is established that is useful for tracking virus movement, targeting gene delivery and detecting virus-host interactions. This study may provide a new direction for rational design of lentiviral vectors, with significant impact on both basic research and therapeutic applications.
机译:为了扩大慢病毒载体作为核酸研究工具的多功能性,我们扩展了慢病毒载体繁殖的遗传密码,以实现具有独特特性的化学部分的位点特异性结合。通过位点特异性诱变和掺入显示叠氮化物和二叠氮基部分的残基的系统研究慢病毒VSVg包膜的结构-功能关系,鉴定了载体表面上的可修饰位点,其中大部分位于不影响DNA的PH域。包膜蛋白的表达或子代病毒的繁殖或感染性。此外,通过掺入这样的化学部分,将各种荧光探针,配体,PEG和其他功能性分子以正交和化学计量的方式与慢病毒载体缀合。使用这种方法,可以建立一个简便的平台,该平台可用于跟踪病毒运动,靶向基因传递和检测病毒-宿主相互作用。这项研究可能为合理设计慢病毒载体提供新的方向,对基础研究和治疗应用都有重大影响。

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