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腺相关病毒的遗传学:2型腺相关病毒突变体的分离与初步表征

Genetics of adeno-associated virus: isolation and preliminary characterization of adeno-associated virus type 2 mutants.

作者信息

Hermonat P L, Labow M A, Wright R, Berns K I, Muzyczka N

出版信息

J Virol. 1984 Aug;51(2):329-39. doi: 10.1128/JVI.51.2.329-339.1984.

Abstract

We constructed insertion and deletion mutants with mutations within the adeno-associated virus (AAV) sequences of the infectious recombinant plasmid pSM620. Studies of these mutants revealed at least three AAV phenotypes. Mutants with mutations between 11 and 42 map units were partially or completely defective for rescue and replication of the AAV sequences from the recombinant plasmids (rep mutants). The mutants could be complemented by mutants with replication-positive phenotypes. The protein(s) that is affected in rep mutants has not been identified, but the existence of the rep mutants proves that at least one AAV-coded protein is required for viral DNA replication. Also, the fact that one of the rep mutant mutations maps within the AAV intron suggests that the intron sequences code for part of a functional AAV protein. Mutants with mutations between 63 and 91 map units synthesized normal amounts of AAV duplex DNA but could not generate single-stranded virion DNA (cap mutants). The cap phenotype could be complemented by rep mutants and is probably due to a defect in the major AAV capsid protein, VP3. This suggests that a preformed capsid or precursor is required for the accumulation of single-stranded AAV progeny DNA. Mutants with mutations between 48 and 55 map units synthesized normal amounts of AAV single-stranded and duplex DNA but produced substantially lower yields of infectious virus particles than wild-type AAV (lip mutants). The lip phenotype is probably due to a defect in the minor capsid protein, VPI, and suggests the existence of an additional (as yet undiscovered) AAV mRNA. Evidence is also presented for recombination between mutant AAV genomes during lytic growth.

摘要

我们构建了感染性重组质粒pSM620腺相关病毒(AAV)序列内发生突变的插入和缺失突变体。对这些突变体的研究揭示了至少三种AAV表型。在11至42个图谱单位之间发生突变的突变体对于从重组质粒中拯救和复制AAV序列存在部分或完全缺陷(rep突变体)。这些突变体可以由具有复制阳性表型的突变体互补。尚未鉴定出在rep突变体中受影响的蛋白质,但rep突变体的存在证明病毒DNA复制至少需要一种AAV编码的蛋白质。此外,rep突变体之一的突变位于AAV内含子内这一事实表明内含子序列编码功能性AAV蛋白质的一部分。在63至91个图谱单位之间发生突变的突变体合成了正常量的AAV双链DNA,但无法产生单链病毒粒子DNA(cap突变体)。cap表型可以由rep突变体互补,可能是由于主要AAV衣壳蛋白VP3存在缺陷。这表明单链AAV子代DNA的积累需要预先形成的衣壳或前体。在48至55个图谱单位之间发生突变的突变体合成了正常量的AAV单链和双链DNA,但产生的感染性病毒粒子产量比野生型AAV低得多(lip突变体)。lip表型可能是由于次要衣壳蛋白VPI存在缺陷,并提示存在另一种(尚未发现)AAV mRNA。还提供了在裂解生长期间突变AAV基因组之间发生重组的证据。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/2cc0/254442/1efa009c73b9/jvirol00131-0074-a.jpg

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