缺乏蛋白聚糖的包装细胞高效生产无抑制剂泡沫病毒糖蛋白逆转录病毒载体。

Molecular Therapy. Methods & Clinical Development Pub Date : 2022-08-01 eCollection Date: 2022-09-08 DOI:10.1016/j.omtm.2022.07.004
Clara Marie Munz, Henriette Kreher, Alexander Erdbeer, Stefanie Richter, Dana Westphal, Buqing Yi, Rayk Behrendt, Nicole Stanke, Fabian Lindel, Dirk Lindemann
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引用次数: 0

摘要

泡沫病毒(FV)或带有FV糖蛋白假型的异源逆转录病毒能够转导不同物种的多种靶组织。负责这种异常广泛的趋向性的特定细胞进入受体等待他们的鉴定。然而,普遍表达的硫酸肝素蛋白聚糖(HS-PG)被认为是FV包膜(Env)病毒颗粒的附着因子,极大地增强了靶细胞的容纳性。高滴度、含有FV env病毒的逆转录病毒载体的生产强烈依赖于使用阳离子聚合物转染试剂,如聚乙烯亚胺(PEI)。我们确定包装细胞表面HS-PG表达负责这一要求。高效释放含有FV env的病毒颗粒需要PEI中和HS-PG结合位点。值得注意的是,含有FV env的载体上清液中的PEI残留物不易去除,会对靶细胞的转导产生负面影响,特别是那些髓系和淋巴细胞的转导。为了克服这一限制,生产含有FV env的逆转录病毒上清液,我们通过基因组工程产生了293为基础的不含HS-PG的包装细胞系。这使得首次通过非阳离子聚合物介导转染生产无抑制剂、高滴度的FV env病毒上清液成为可能。根据不同的病毒类型,产生的滴度比PEI转染获得的滴度高2- 10倍。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Efficient production of inhibitor-free foamy virus glycoprotein-containing retroviral vectors by proteoglycan-deficient packaging cells.

Foamy viruses (FVs) or heterologous retroviruses pseudotyped with FV glycoprotein enable transduction of a great variety of target tissues of disparate species. Specific cellular entry receptors responsible for this exceptionally broad tropism await their identification. Though, ubiquitously expressed heparan sulfate proteoglycan (HS-PG) is known to serve as an attachment factor of FV envelope (Env)-containing virus particles, greatly enhancing target cell permissiveness. Production of high-titer, FV Env-containing retroviral vectors is strongly dependent on the use of cationic polymer-based transfection reagents like polyethyleneimine (PEI). We identified packaging cell-surface HS-PG expression to be responsible for this requirement. Efficient release of FV Env-containing virus particles necessitates neutralization of HS-PG binding sites by PEI. Remarkably, remnants of PEI in FV Env-containing vector supernatants, which are not easily removable, negatively impact target cell transduction, in particular those of myeloid and lymphoid origin. To overcome this limitation for production of FV Env-containing retrovirus supernatants, we generated 293T-based packaging cell lines devoid of HS-PG by genome engineering. This enabled, for the first, time production of inhibitor-free, high-titer FV Env-containing virus supernatants by non-cationic polymer-mediated transfection. Depending on the type of virus, produced titers were 2- to 10-fold higher compared with those obtained by PEI transfection.

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