遗传增强
生物
载体(分子生物学)
病毒载体
分子生物学
CpG站点
病毒学
基因
转导(生物物理学)
细胞生物学
计算生物学
遗传学
重组DNA
基因表达
生物物理学
DNA甲基化
作者
Xiufang Pan,Yongping Yue,Maria Boftsi,Lakmini P. Wasala,Ngoc Tam Tran,Keqing Zhang,David J. Pintel,Phillip W.L. Tai,Dongsheng Duan
出处
期刊:Gene Therapy
[Springer Nature]
日期:2021-10-06
卷期号:29 (6): 333-345
被引量:28
标识
DOI:10.1038/s41434-021-00296-0
摘要
Inverted terminal repeats (ITRs) are the only wild-type components retained in the genome of adeno-associated virus (AAV) vectors. To determine whether ITR modification is a viable approach for AAV vector engineering, we rationally deleted all CpG motifs in the ITR and examined whether CpG elimination compromises AAV-vector production and transduction. Modified ITRs were stable in the plasmid and maintained the CpG-free nature in purified vectors. Replacing the wild-type ITR with the CpG-free ITR did not affect vector genome encapsidation. However, the vector yield was decreased by approximately 3-fold due to reduced vector genome replication. To study the biological potency, we made micro-dystrophin (μDys) AAV vectors carrying either the wild-type ITR or the CpG-free ITR. We delivered the CpG-free μDys vector to one side of the tibialis anterior muscle of dystrophin-null mdx mice and the wild-type μDys vector to the contralateral side. Evaluation at four months after injection showed no difference in the vector genome copy number, microdystrophin expression, and muscle histology and force. Our results suggest that the complete elimination of the CpG motif in the ITR does not affect the biological activity of the AAV vector. CpG-free ITRs could be useful in engineering therapeutic AAV vectors.
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