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先前暴露于类似内体的pH条件会降低AAV8的转导能力。

AAV8 transduction capacity is reduced by prior exposure to endosome-like pH conditions.

作者信息

Lowell Jeffrey A, Mah Kar Men, Bixby John L, Lemmon Vance P

机构信息

Miami Project to Cure Paralysis, University of Miami, Miami, FL, USA.

Miami Project to Cure Paralysis; Department of Neurological Surgery; Department of Molecular and Cellular Pharmacology, University of Miami, Miami, FL, USA.

出版信息

Neural Regen Res. 2021 May;16(5):851-855. doi: 10.4103/1673-5374.299272.

Abstract

Adeno-associated virus (AAV) is an essential instrument in the neuroscientist's toolkit, which allows delivery of DNA to provide labeling with fluorescent proteins or genetic instructions to regulate gene expression. In the field of neural regeneration, the transduction of neurons enables the observation and regulation of axon growth and regeneration, and in the future will likely be a mechanism for delivering molecular therapies to promote sprouting and regeneration after central nervous system injury. Traditional formulations of AAV preparations permit efficient viral transduction under physiologic conditions, but an improved understanding of the mechanistic limitations of AAV transduction may facilitate production of more resilient AAV strains for investigative and therapeutic purposes. We studied AAV transduction in the context of prior exposure of AAV serotype 8 (AAV8) to environmental pH within the range encountered during endosomal endocytosis (pH 7.4 to pH 4.4), during which low pH-triggered structural and autoproteolytic changes to the viral capsid are believed to be necessary for endosome escape and virus uncoating. Due to the fundamental nature of these processes, we hypothesized that premature exposure of AAV8 particles to acidic pH would decrease viral transduction of HT1080 cells in vitro, as measured by fluorescent reporter gene expression using high-content imaging analysis. We found that increasingly acidic incubation conditions were associated with concomitant reductions in transduction efficiency, and that quantitative levels of reporter gene expression in transduced cells were similarly decreased. The biggest decrease in transduction occurred between pH 7.4 and pH 6.4, suggesting the possible co-occurrence of a pH-associated event and viral inactivation within that range. Taken together, these findings indicate that exposure of AAV8 to acidic pH for as little as 1 hour is deleterious to transduction ability. Future studies are necessary to understand the pH-associated causative mechanisms involved. This study was approved by the University of Miami Institutional Animal Care and Use Committee, USA (Protocol #18-108-LF) on July 12, 2018.

摘要

腺相关病毒(AAV)是神经科学家工具包中的重要工具,它能够递送DNA以实现荧光蛋白标记或提供调控基因表达的遗传指令。在神经再生领域,神经元的转导可实现对轴突生长和再生的观察与调控,并且在未来可能会成为一种递送分子疗法以促进中枢神经系统损伤后轴突发芽和再生的机制。传统的AAV制剂配方可在生理条件下实现高效的病毒转导,但对AAV转导机制局限性的深入理解可能有助于生产出更具适应性的AAV毒株,用于研究和治疗目的。我们在AAV血清型8(AAV8)先前暴露于内吞体胞吞过程中所遇到的环境pH范围(pH 7.4至pH 4.4)的背景下研究了AAV转导,在此期间,低pH引发的病毒衣壳结构和自蛋白水解变化被认为是内体逃逸和病毒脱壳所必需的。由于这些过程的基本性质,我们假设AAV8颗粒过早暴露于酸性pH会降低体外HT1080细胞的病毒转导,这通过使用高内涵成像分析的荧光报告基因表达来衡量。我们发现,酸性孵育条件越强烈,转导效率随之降低,并且转导细胞中报告基因表达的定量水平也同样下降。转导效率的最大降幅发生在pH 7.4和pH 6.4之间,这表明在该范围内可能同时发生了与pH相关的事件和病毒失活。综上所述,这些发现表明,AAV8暴露于酸性pH仅1小时就会对转导能力产生有害影响。有必要开展进一步研究以了解其中涉及的与pH相关的致病机制。本研究于2018年7月12日获得美国迈阿密大学机构动物护理和使用委员会批准(协议编号#18 - 108 - LF)。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/cd51/8178773/b7efa774fbf2/NRR-16-851-g002.jpg

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