Heinkelein Martin, Dressler Marco, Jármy Gergely, Rammling Matthias, Imrich Horst, Thurow Jana, Lindemann Dirk, Rethwilm Axel
Institut für Virologie und Immunbiologie, Universität Würzburg, Germany.
J Virol. 2002 Apr;76(8):3774-83. doi: 10.1128/jvi.76.8.3774-3783.2002.
Foamy virus (FV) vectors that have minimal cis-acting sequences and are devoid of residual viral gene expression were constructed and analyzed by using a packaging system based on transient cotransfection of vector and different packaging plasmids. Previous studies indicated (i) that FV gag gene expression requires the presence of the R region of the long terminal repeat and (ii) that RNA from packaging constructs is efficiently incorporated into vector particles. Mutants with changes in major 5' splice donor (SD) site located in the R region identified this sequence element as responsible for regulating gag gene expression by an unidentified mechanism. Replacement of the FV 5' SD with heterologous splice sites enabled expression of the gag and pol genes. The incorporation of nonvector RNA into vector particles could be reduced to barely detectable levels with constructs in which the human immunodeficiency virus 5' SD or an unrelated intron sequence was substituted for the FV 5' untranslated region and in which gag expression and pol expression were separated on two different plasmids. By this strategy, efficient vector transfer was achieved with constructs that have minimal genetic overlap.
构建了具有最小顺式作用序列且无残留病毒基因表达的泡沫病毒(FV)载体,并通过基于载体与不同包装质粒瞬时共转染的包装系统进行分析。先前的研究表明:(i)FV gag基因表达需要长末端重复序列的R区域存在;(ii)包装构建体的RNA能有效掺入载体颗粒。位于R区域的主要5'剪接供体(SD)位点发生变化的突变体将该序列元件确定为通过未知机制调节gag基因表达的原因。用异源剪接位点替换FV 5' SD可实现gag和pol基因的表达。将人类免疫缺陷病毒5' SD或无关内含子序列替换FV 5'非翻译区,且gag表达和pol表达分别位于两个不同质粒上的构建体,可将非载体RNA掺入载体颗粒的情况减少到几乎检测不到的水平。通过这种策略,使用遗传重叠最小的构建体实现了高效的载体转移。