Department of Bioengineering, University of California, San Diego, CA, USA.
Sci Rep. 2018 Feb 26;8(1):3589. doi: 10.1038/s41598-018-21742-x.
Recombinant adeno-associated viruses (AAVs) are among the most commonly used vehicles for in vivo gene delivery. However, their tropism is limited, and additionally their efficacy can be negatively affected by prevalence of neutralizing antibodies in sera. Methodologies to systematically engineer AAV capsid properties would thus be of great relevance. In this regard, we develop here multi-functional AAVs by engineering precision tethering of oligonucleotides onto the AAV surface, and thereby enabling a spectrum of nucleic-acid programmable functionalities. Towards this, we engineered genetically encoded incorporation of unnatural amino acids (UAA) bearing bio-orthogonal chemical handles onto capsid proteins. Via these we enabled site-specific coupling of oligonucleotides onto the AAV capsid surface using facile click chemistry. The resulting oligo-AAVs could be sequence specifically labeled, and also patterned in 2D using DNA array substrates. Additionally, we utilized these oligo conjugations to engineer viral shielding by lipid-based cloaks that efficaciously protected the AAV particles from neutralizing serum. We confirmed these 'cloaked AAVs' retained full functionality via their ability to transduce a range of cell types, and also enable robust delivery of CRISPR-Cas9 effectors. Taken together, we anticipate this programmable oligo-AAV system will have broad utility in synthetic biology and AAV engineering applications.
重组腺相关病毒(AAV)是体内基因传递最常用的载体之一。然而,其趋向性有限,并且血清中中和抗体的存在会降低其功效。因此,系统工程 AAV 衣壳特性的方法将具有重要意义。在这方面,我们通过在 AAV 表面工程化精确连接寡核苷酸,从而实现了一系列核酸可编程功能,开发了多功能 AAV。为此,我们通过基因编码将带有生物正交化学接头的非天然氨基酸(UAA)掺入衣壳蛋白中。通过这些接头,我们可以使用简单的点击化学将寡核苷酸特异性地连接到 AAV 衣壳表面。所得的寡聚 AAV 可以进行序列特异性标记,并且还可以使用 DNA 阵列底物在 2D 中进行图案化。此外,我们利用这些寡核苷酸缀合来通过基于脂质的斗篷进行病毒屏蔽,有效地保护 AAV 颗粒免受中和血清的影响。我们通过它们转导一系列细胞类型的能力以及有效递送 CRISPR-Cas9 效应物的能力来确认这些“带衣壳的 AAV”保留了完整的功能。总的来说,我们预计这个可编程的寡聚 AAV 系统将在合成生物学和 AAV 工程应用中有广泛的用途。