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组装激活蛋白对合成腺相关病毒衣壳分子进化的影响。

Impact of the Assembly-Activating Protein on Molecular Evolution of Synthetic Adeno-Associated Virus Capsids.

机构信息

1 Department of Infectious Diseases/Virology, Heidelberg University Hospital, Cluster of Excellence CellNetworks, Heidelberg, Germany.

2 BioQuant Center, University of Heidelberg, Heidelberg, Germany.

出版信息

Hum Gene Ther. 2019 Jan;30(1):21-35. doi: 10.1089/hum.2018.085. Epub 2018 Dec 18.

Abstract

Over the last decade, the role of the assembly-activating protein (AAP) has begun to be dissected for the formation of adeno-associated virus (AAV) capsids based on different viral serotypes. Recently, the authors' group has specifically studied AAP's relevance during production of AAV gene therapy vectors in mammalian or insect cells, and AAP was found to be essential for capsid protein stabilization and generation of functional vector particles. Here, the lingering question is additionally addressed of whether molecular AAV evolution via DNA family shuffling of viral capsid genes would perturb AAP functionality due to concurrent and inadvertent recombination of the AAP open reading frame. To this end, a battery of complementary experiments was conducted in which: (1) the ability of chimeric AAP from AAVDJ, a hybrid of serotypes 2, 8, and 9, was tested to rescue AAP knockouts in the three parental serotypes; (2) the functionality of 60 chimeric AAPs extracted from five shuffled, unselected capsid libraries was measured; (3) whether production of different shuffled libraries, 10 wild-type serotypes or 25 individual chimeric capsids, can be enhanced by overexpression of AAP cocktails was assessed; and (4) the activity of 12 chimeric AAPs isolated from a shuffled library that was iteratively selected in vivo in mouse livers was studied. Collectively, the data demonstrate a remarkable tolerance of AAP for recombination via DNA family shuffling, evidenced by the findings that (1) all chimeric AAPs studied here retained at least partial activity, even in cases where the cognate hybrid capsid may be non-functional, and that (2) ectopic AAP overexpression did not enhance production of shuffled AAV chimeras or libraries, implying that the inherently encoded hybrid AAP variants are sufficiently active. Together, this work provides compelling evidence that AAP is not rate limiting during AAV capsid shuffling and thereby relieves a major concern in the field of AAV vector evolution.

摘要

在过去的十年中,基于不同的病毒血清型,组装激活蛋白 (AAP) 在腺相关病毒 (AAV) 衣壳形成中的作用开始被剖析。最近,作者小组专门研究了 AAP 在哺乳动物或昆虫细胞中生产 AAV 基因治疗载体时的相关性,发现 AAP 对于衣壳蛋白的稳定和功能性载体颗粒的产生是必不可少的。在这里,人们还提出了一个悬而未决的问题,即通过 DNA 家族改组对 AAV 分子进行进化,是否会由于 AAP 开放阅读框的并发和意外重组而破坏 AAP 的功能。为此,进行了一系列补充实验:(1)测试了来自 AAVDJ 的嵌合 AAP 的能力,AAVDJ 是血清型 2、8 和 9 的杂交体,以拯救三个亲本血清型中的 AAP 敲除;(2)测量了从五个无选择的衣壳文库中提取的 60 个嵌合 AAP 的功能;(3)评估了过表达 AAP 鸡尾酒是否可以增强不同的随机文库、10 个野生型血清型或 25 个单个嵌合衣壳的生产;(4)研究了从体内在小鼠肝脏中反复选择的随机文库中分离出的 12 个嵌合 AAP 的活性。总的来说,数据表明 AAP 对 DNA 家族改组的重组具有很强的耐受性,这表现在以下发现:(1)所有研究的嵌合 AAP 都保留了至少部分活性,即使在同源杂交衣壳可能无功能的情况下也是如此,(2)异位 AAP 过表达并没有增强随机 AAV 嵌合体或文库的生产,这表明内在编码的杂交 AAP 变体足够活跃。总的来说,这项工作提供了令人信服的证据,证明 AAP 在 AAV 衣壳改组过程中不是限速因素,从而缓解了 AAV 载体进化领域的一个主要关注点。

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