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腺相关病毒的遗传分析:体外构建的缺失突变体的特性及腺相关病毒复制功能的证据

Genetic analysis of adeno-associated virus: properties of deletion mutants constructed in vitro and evidence for an adeno-associated virus replication function.

作者信息

Tratschin J D, Miller I L, Carter B J

出版信息

J Virol. 1984 Sep;51(3):611-9. doi: 10.1128/JVI.51.3.611-619.1984.

Abstract

Transfection of a pBR322-based, recombinant plasmid, pAV2, containing the entire adeno-associated virus (AAV) type 2 genome into human 293 cells in the presence of helper adenovirus resulted in rescue and replication of AAV to yield infectious particles. We constructed mutants of pAV2 containing deletions within the AAV sequence. We describe here the phenotypes of these AAV deletion mutants. The results can be summarized as follows. Mutants (cap-) with deletions between map positions 53 and 85 did not synthesize capsid antigen or progeny single-stranded DNA but accumulated normal levels of duplex replicating form DNA. Mutants (rep-) with deletions between map positions 17 and 36 failed to rescue or replicate any AAV DNA. The rep- mutants could be complemented for replicating form DNA synthesis by a cap- mutant. This clearly demonstrates an AAV-coded replication function which is different from the capsid antigen. Other mutants (inf-) with deletions in the region between map positions 40 and 52 synthesized abundant amounts of replicating form DNA and capsid antigen but gave a low yield of infectious particles. This suggests that there may be an additional region of AAV, perhaps within the intron, which is required for efficient particle assembly. This work shows that AAV is genetically complex and expresses at least three clearly different functions.

摘要

在辅助腺病毒存在的情况下,将含有完整2型腺相关病毒(AAV)基因组的基于pBR322的重组质粒pAV2转染到人293细胞中,导致AAV的拯救和复制,产生感染性颗粒。我们构建了在AAV序列内含有缺失的pAV2突变体。我们在此描述这些AAV缺失突变体的表型。结果可总结如下。在图谱位置53和85之间有缺失的突变体(cap-)不合成衣壳抗原或子代单链DNA,但双链复制型DNA积累到正常水平。在图谱位置17和36之间有缺失的突变体(rep-)未能拯救或复制任何AAV DNA。rep-突变体可通过cap-突变体在复制型DNA合成方面得到互补。这清楚地证明了一种AAV编码的复制功能,它不同于衣壳抗原。在图谱位置40和52之间区域有缺失的其他突变体(inf-)合成了大量的复制型DNA和衣壳抗原,但感染性颗粒产量很低。这表明AAV可能还有一个额外的区域,也许在内含子内,这是高效颗粒组装所必需的。这项工作表明AAV在遗传上很复杂,并且表达至少三种明显不同的功能。

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