State Key Laboratory of Genetic Engineering, Institute of Genetics, School of Life Sciences, Fudan University, Shanghai, China.
Mol Biol Rep. 2012 Jan;39(1):343-9. doi: 10.1007/s11033-011-0744-z. Epub 2011 May 10.
HIV-1 integrase (HIV-1 IN), a key element of HIV-1-derived lentiviral vectors, is crucial for the stable maintenance of the vector gene by inserting them into host genome. HIV-1 IN has been found to have functions other than integration, such as involving in virion morphology, viral DNA synthesis and viral DNA nuclear import. In our study, the yeast two-hybrid assay identified a tetrapeptide 156KELK159 in HIV-1 IN that was crucial for HIV-1 IN and Daxx interaction. To investigate the functions of the tetrapeptide 156KELK159 of the HIV-1 IN, both the wild type HIV-1 IN and a mutant without 156KELK159 were used to package the EGFP reporter gene contained lentivirus. p24 based titer assay revealed that deleting the tetrapeptide did not affect virus packaging. The result was verified by quantitative real time PCR with viral specific primers. But the 156KELK159 was crucial for lentiviral gene integration. Deleting the tetrapeptide made the percentage of cells expressing the reporter gene significantly decreased and did not affect the level of DNA entered into the cells or nucleus. Real time reverse transcription PCR and FACS were used to detect the lentiviral report gene expression in infection maintaining cells and revealed 156KELK159 did not affect lentiviral vector gene expression. Our results may shed light on the regulatory mechanism of gene integration of lentivirus.
HIV-1 整合酶(HIV-1 IN)是 HIV-1 衍生慢病毒载体的关键组成部分,通过将它们插入宿主基因组中,对载体基因的稳定维持至关重要。已经发现 HIV-1 IN 具有除整合以外的其他功能,例如参与病毒形态、病毒 DNA 合成和病毒 DNA 核输入。在我们的研究中,酵母双杂交分析鉴定出 HIV-1 IN 中的四肽 156KELK159 对于 HIV-1 IN 和 Daxx 相互作用至关重要。为了研究 HIV-1 IN 中四肽 156KELK159 的功能,我们使用野生型 HIV-1 IN 和缺乏 156KELK159 的突变体来包装含有 EGFP 报告基因的慢病毒。基于 p24 的滴度测定表明,删除四肽不会影响病毒包装。这一结果通过使用病毒特异性引物的定量实时 PCR 得到了验证。但是 156KELK159 对于慢病毒基因整合至关重要。删除四肽使表达报告基因的细胞比例显著降低,而不影响进入细胞或细胞核的 DNA 水平。实时逆转录 PCR 和 FACS 用于检测感染维持细胞中的慢病毒报告基因表达,结果表明 156KELK159 不影响慢病毒载体基因表达。我们的结果可能为慢病毒基因整合的调控机制提供了线索。