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高通量解析 AAV-宿主相互作用:速度与好奇。

High-Throughput Dissection of AAV-Host Interactions: The Fast and the Curious.

机构信息

Cluster of Excellence CellNetworks,Virus-Host Interaction Group, Department of Infectious Diseases/Virology, Heidelberg University Hospital, Im Neuenheimer Feld 267, 69120 Heidelberg, Germany; BioQuant Center, University of Heidelberg, Im Neuenheimer Feld 267, 69120 Heidelberg, Germany.

Cluster of Excellence CellNetworks,Virus-Host Interaction Group, Department of Infectious Diseases/Virology, Heidelberg University Hospital, Im Neuenheimer Feld 267, 69120 Heidelberg, Germany; BioQuant Center, University of Heidelberg, Im Neuenheimer Feld 267, 69120 Heidelberg, Germany; German Center for Infection Research (DZIF), Partner site Heidelberg, 69120 Heidelberg, Germany.

出版信息

J Mol Biol. 2018 Aug 17;430(17):2626-2640. doi: 10.1016/j.jmb.2018.05.022. Epub 2018 May 19.

Abstract

Over 50 years after its initial description, adeno-associated virus (AAV) remains the most exciting but also most elusive study object in basic or applied virology. On the one hand, its simple structure not only facilitates investigations into virus biology but, combined with the availability of numerous natural AAV variants with distinct infection efficiency and specificity, also makes AAV a preferred substrate for engineering of gene delivery vectors. On the other hand, it is striking to witness a recent flurry of reports that highlight and partially close persistent gaps in our understanding of AAV virus and vector biology. This is all the more perplexing considering that recombinant AAVs have already been used in >160 clinical trials and recently been commercialized as gene therapeutics. Here, we discuss a reason for these advances in AAV research, namely, the advent and application of powerful high-throughput technology for dissection of AAV-host interactions and optimization of AAV gene therapy vectors. As relevant examples, we focus on the discovery of (i) a "new" cellular AAV receptor, AAVR, (ii) host restriction factors for AAV entry, and (iii) AAV capsid determinants that mediate trafficking through the blood-brain barrier. While items i/ii are prototypes of extra- or intracellular AAV host factors that were identified via high-throughput screenings, item iii exemplifies the power of molecular evolution to investigate the virus itself. In the future, we anticipate that these and other key technologies will continue to accelerate the dissection of AAV biology and will yield a wealth of new designer viruses for clinical use.

摘要

腺相关病毒(AAV)在最初被描述 50 多年后,仍然是基础或应用病毒学中最令人兴奋但也最难以捉摸的研究对象。一方面,其简单的结构不仅便于病毒生物学的研究,而且结合大量具有不同感染效率和特异性的天然 AAV 变体的可用性,也使 AAV 成为基因传递载体工程的首选底物。另一方面,令人瞩目的是,最近有大量报告强调并部分缩小了我们对 AAV 病毒和载体生物学理解的持续差距。考虑到重组 AAV 已经在 >160 项临床试验中使用,并最近被商业化作为基因治疗药物,这更加令人困惑。在这里,我们讨论了 AAV 研究取得这些进展的原因,即用于剖析 AAV-宿主相互作用和优化 AAV 基因治疗载体的强大高通量技术的出现和应用。作为相关的例子,我们重点介绍了(i)“新”的细胞 AAV 受体 AAVR 的发现,(ii)AAV 进入的宿主限制因子,以及(iii)介导通过血脑屏障的 AAV 衣壳决定因素的发现。虽然项目 i/ii 是通过高通量筛选鉴定的细胞外或细胞内 AAV 宿主因子的原型,但项目 iii 则是分子进化研究病毒本身的力量的典范。未来,我们预计这些和其他关键技术将继续加速 AAV 生物学的剖析,并将产生丰富的新型设计病毒用于临床应用。

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