Division of Molecular Medicine, Katholieke Universiteit Leuven, Leuven, Belgium.
Mol Ther. 2010 Mar;18(3):552-60. doi: 10.1038/mt.2010.36. Epub 2010 Jan 5.
Correction of genetic diseases requires integration of the therapeutic gene copy into the genome of patient cells. Retroviruses are commonly used as delivery vehicles because of their precise integration mechanism, but their use has led to adverse events in which vector integration activated proto-oncogenes and contributed to leukemogenesis. Here, we show that integration by lentiviral vectors can be targeted away from genes using an artificial tethering factor. During normal lentivirus infection, the host cell-encoded transcriptional coactivator lens epithelium-derived growth factor/p75 (LEDGF/p75) binds lentiviral integrase (IN), thereby targeting integration to active transcription units and increasing the efficiency of infection. We replaced the LEDGF/p75 chromatin interaction-binding domain with CBX1. CBX1 binds histone H3 di- or trimethylated on K9, which is associated with pericentric heterochromatin and intergenic regions. The chimeric protein supported efficient transduction of lentiviral vectors and directed the integration outside of genes, near bound CBX1. Despite integration in regions rich in epigenetic marks associated with gene silencing, lentiviral vector expression remained efficient. Thus, engineered LEDGF/p75 chimeras provide technology for controlling integration site selection by lentiviral vectors.
遗传疾病的治疗需要将治疗基因的副本整合到患者细胞的基因组中。逆转录病毒因其精确的整合机制而被广泛用作载体,但它们的使用导致了一些不良事件,其中载体整合激活了原癌基因,并导致白血病的发生。在这里,我们展示了利用人工连接因子可以将慢病毒载体的整合靶向远离基因。在正常的慢病毒感染过程中,宿主细胞编码的转录共激活因子晶状体上皮衍生生长因子/p75(LEDGF/p75)与慢病毒整合酶(IN)结合,从而将整合靶向到活性转录单位,并提高感染效率。我们用 CBX1 替换了 LEDGF/p75 的染色质相互作用结合域。CBX1 结合组蛋白 H3 二甲基化或三甲基化的 K9,这与着丝粒异染色质和基因间区有关。嵌合蛋白支持高效转导慢病毒载体,并将整合引导到 CBX1 结合的基因之外。尽管整合发生在富含与基因沉默相关的表观遗传标记的区域,但慢病毒载体的表达仍然有效。因此,工程化的 LEDGF/p75 嵌合体为控制慢病毒载体的整合位点选择提供了技术。