Yang Lin, Li Juan, Xiao Xiao
Division of Molecular Pharmaceutics, Eshelman School of Pharmacy, University of North Carolina at Chapel Hill, Chapel Hill, NC, USA.
Methods Mol Biol. 2011;709:127-39. doi: 10.1007/978-1-61737-982-6_8.
Adeno-associated virus (AAV) is emerging as a vector of choice for muscle gene therapy because of its effective and stable transduction in striated muscles. AAV naturally evolve into multiple serotypes with diverse capsid gene sequences that are apparently the determinants of their tissue tropism and infectivity. Certain AAV serotypes show robust gene transfer upon direct intramuscular injection, while others are effective in crossing the endothelial barrier to reach muscle when delivered intravenously. Muscular dystrophy gene therapy requires efficient body-wide muscle gene transfer. However, preferential liver transduction by nearly all natural AAV serotypes could be an undesirable feature for muscle-directed applications, especially by means of systemic gene delivery. Here we describe a method of in vitro evolution and in vivo selection of AAV capsids that target striated muscles and detarget the liver. Using DNA shuffling technology, we have generated a capsid gene library by in vitro scrambling and shuffling the capsid genes of natural AAV1 to AAV9. To minimize the bias and limitation of in vitro screening on culture cells, we performed direct in vivo panning in adult mice after intravenous injection of the shuffled capsid library that packaged their own coding sequences. The AAV variants enriched in the heart and muscle are retrieved by capsid gene PCR and subsequently characterized for their tissue tropisms. This directed evolution and in vivo selection method should be useful in generating novel gene therapy vectors for muscle and heart and other tissues.
腺相关病毒(AAV)正成为肌肉基因治疗的首选载体,因为它能在横纹肌中进行有效且稳定的转导。AAV自然进化为多种血清型,其衣壳基因序列各异,这些序列显然是其组织嗜性和感染性的决定因素。某些AAV血清型在直接肌肉注射后显示出强大的基因转移能力,而其他血清型在静脉注射时能有效穿过内皮屏障到达肌肉。肌肉营养不良症的基因治疗需要在全身范围内高效地进行肌肉基因转移。然而,几乎所有天然AAV血清型对肝脏的优先转导可能是肌肉定向应用中一个不理想的特征,特别是通过全身基因递送的方式。在此,我们描述了一种针对横纹肌且避开肝脏的AAV衣壳的体外进化和体内筛选方法。利用DNA改组技术,我们通过对天然AAV1至AAV9的衣壳基因进行体外打乱和改组,生成了一个衣壳基因文库。为了尽量减少体外在培养细胞上筛选的偏差和局限性,我们在静脉注射包装有自身编码序列的改组衣壳文库后,在成年小鼠体内进行直接淘选。通过衣壳基因PCR检索在心脏和肌肉中富集的AAV变体,随后对其组织嗜性进行表征。这种定向进化和体内筛选方法应有助于为肌肉、心脏和其他组织生成新型基因治疗载体。