一种新的基于重组腺相关病毒(AAV)的随机多肽展示文库系统:感染缺陷AAV1.9-3作为载体进化的新型非靶向平台。

Kei Adachi, Hiroyuki Nakai
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摘要

通过对病毒衣壳进行基因工程改造,然后进行选择,从而实现定向进化,已成为创造新型重组腺相关病毒(rAAV)载体的有力手段,这种载体具有所需的滋养性和更强的特性。最有效的方法之一是使用基于 rAAV 的随机多肽展示文库。rAAV1.9-3 有一个经过基因工程改造的 AAV1 荚膜,其 445-568 个氨基酸被 AAV9 的氨基酸取代,已被确定为一种变体,在输注到小鼠体内时感染性明显减弱,血液清除延迟。在这项研究中,我们生成了rAAV1.9-3变体文库,其中在荚膜氨基酸590位表达了7-或12-mer随机肽。对原代人类真皮成纤维细胞进行了三轮阳性选择,成功鉴定出了新的 rAAV 多肽变体,其转导效率高于原型 rAAV2。因此,我们的研究表明,感染缺陷rAAV变体可作为随机多肽展示文库的新型非靶向平台。我们还简要回顾了基于 rAAV 的随机多肽展示文库方法的最新进展。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

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A NEW RECOMBINANT ADENO-ASSOCIATED VIRUS (AAV)-BASED RANDOM PEPTIDE DISPLAY LIBRARY SYSTEM: INFECTION-DEFECTIVE AAV1.9-3 AS A NOVEL DETARGETED PLATFORM FOR VECTOR EVOLUTION.

Directed evolution through genetic engineering of viral capsids followed by selection has emerged as a powerful means to create novel recombinant adeno-associated virus (rAAV) vectors with desired tropism and enhanced properties. One of the most effective approaches uses rAAV-based random peptide display libraries. Here we report a novel system based on an infection-defective rAAV1.9-3 as a platform for random peptide display, and show that biopanning of the libraries in vitro effectively identifies the peptides that restore and enhance rAAV transduction. rAAV1.9-3 has a genetically engineered AAV1 capsid with amino acids 445-568 being replaced with those of AAV9, and has been identified as a variant exhibiting significantly impaired infectivity and delayed blood clearance when infused into mice. In this study, we generated rAAV1.9-3 variant libraries in which 7- or 12-mer random peptides were expressed at the capsid amino acid position 590. Three rounds of positive selection for primary human dermal fibroblasts successfully identified new rAAV-peptide variants that transduce them more efficiently than the prototype rAAV2. Thus our study demonstrates that an infection-defective rAAV variant serves as a novel detargeted platform for random peptide display libraries. We also describe a brief review of recent progress in rAAV-based random peptide display library approaches.

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