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Mobilization of Full-Length Semliki Forest Virus Replicon by Retrovirus Particles

机译:逆转录病毒颗粒动员全长的塞姆利基森林病毒复制子

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摘要

Conciliating biosafety with efficient gene transfer remains a constant concern in the development of retroviral vectors. Semliki Forest virus (SFV) replicons allow important retroviral vector production with interesting features. It is noteworthy that retroviruses have the ability to package Ψ+ and, to some extent, Ψ cellular RNAs. Therefore, it was important to study the retroviral transfer of highly abundant SFV genomes expressing retroviral proteins. Here, we show that full-length SFV-vector replicons, with or without Ψ, are efficiently packaged into retrovirus particles. Mechanistically, our data suggest that SFV packaging is the sum of its retroviral nucleocapsid-dependent recruitment together with a passive hijacking of membrane-anchored SFV replicon. A direct consequence of this phenomenon is the formation of particles harboring autonomous replicative abilities and contaminating vector preparations. Importantly, we confirm that retroviral SFV mobilization is not an exclusive feature of murine gamma retroviruses, since it is also observed using lentivectors.
机译:生物安全与有效基因转移的协调仍然是逆转录病毒载体开发中的一个持续关注的问题。 Semliki森林病毒(SFV)复制子可产生重要的逆转录病毒载体,并具有有趣的功能。值得注意的是,逆转录病毒具有包装Ψ + 的能力,并在一定程度上具有Ψ-细胞RNA的能力。因此,研究表达逆转录病毒蛋白的高度丰富的SFV基因组的逆转录病毒转移非常重要。在这里,我们显示全长SFV载体复制子(带有或不带有1/3)可以有效地包装到逆转录病毒颗粒中。从机理上讲,我们的数据表明SFV包装是其逆转录病毒核衣壳依赖性补充与膜锚定SFV复制子的被动劫持之和。这种现象的直接后果是形成具有自主复制能力并污染载体制剂的颗粒。重要的是,我们确认逆转录病毒SFV动员不是鼠伽马逆转录病毒的独有特征,因为使用慢病毒载体也可以观察到。

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