ADEVO:在纤维旋钮上随机显示多肽的腺病毒定向 EVOlution 概念验证

Erwan Sallard, Julian Fischer, Katrin Schroeer, Lisa-Marie Dawson, Nissai Beaude, Arsalene Affes, Eric Ehrke-Schulz, Wenli Zhang, Adrian Westhaus, Marti Cabanes-Creus, Leszek Lisowski, Zsolt Ruszics, Anja Ehrhardt
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引用次数: 0

摘要

病毒载体的定向进化包括生成随机文库,然后对改进变体进行人工选择。迄今为止,定向进化在腺病毒(AdV)工程中只取得了有限的成果,主要原因是随机文库不够复杂。同时,作为基因治疗或溶瘤载体的 AdVs 的临床应用仍然受到天然类型的预定滋养性的阻碍。为了克服这一挑战,我们假设可以将荚膜表面的随机肽插入纳入 AdV 生物工程工具箱,以实现再靶向。在此,我们开发了基于纤维旋钮肽展示的 AdV 定向 EVOlution 方案。我们按照三种不同的方案构建了人类 AdV-C5 衍生文库,并在一组癌细胞系中进行了筛选,目的是找出能够更有效地感染和裂解这些肿瘤细胞的变体。所有方案都能构建出具有高达 9.6 × 10 个独特变体的高复杂性文库,与之前发表的 AdV 文库相比,大约提高了 100 倍。经过筛选,最丰富的变体在各种癌细胞系中得到了稳健的选择,它们并没有显示出更强的感染性,而是显示出更高效的复制和细胞裂解能力。被选中的插入物还增强了局限于表达端粒酶细胞系的溶瘤 AdV 的裂解能力。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
ADEVO: Proof-of-concept of adenovirus-directed EVOlution by random peptide display on the fiber knob
Directed evolution of viral vectors involves the generation of randomized libraries followed by artificial selection of improved variants. Directed evolution only yielded limited results in adenovirus (AdV) engineering until now, mainly due to insufficient complexities of randomized libraries. Meanwhile, clinical applications of AdVs as gene therapy or oncolytic vectors are still hampered by the predetermined tropism of natural types. To overcome this challenge, we hypothesized that randomized peptide insertions on the capsid surface can be incorporated into the AdV bioengineering toolbox for retargeting. Here we developed AdV-directed EVOlution protocols based on fiber knob peptide display. Human AdV-C5-derived libraries were constructed following three distinct protocols and selected on a panel of cancer cell lines, with the goal of identifying variants able to infect and lyse these tumor cells more efficiently. All protocols enabled the construction of high complexity libraries with up to 9.6 × 10 unique variants, an approximate 100-fold improvement compared with previously published AdV libraries. After selection, the most enriched variants, which were robustly selected in various cancer cell lines, did not display enhanced infectivity but rather more efficient replication and cell lysis. Selected inserts also conferred enhanced lysis ability to oncolytic AdVs restricted to telomerase-expressing cell lines.
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