Lestou V S, Strehl S, Lion T, Gadner H, Ambros P F
Children's Cancer Research Institute, St. Anna Kinderspital, Vienna, Austria.
Cytogenet Cell Genet. 1996;74(3):211-7. doi: 10.1159/000134416.
Here we report a high-resolution fluorescence in situ hybridization (FISH) analysis of the integrated Epstein-Barr virus (EBV) genome in chromosomes, decondensed interphase nuclear chromatin, and linearly extended chromatin fibers. We analyzed the EBV DNA integrated into the human genome in the well-characterized Burkitt's lymphoma cell line Namalwa, which contains two complete EBV genomes. The integration occurs via the terminal repeats of the virus and was always detectable at chromosome band 1p35. Using the biotinylated BamHIW fragment of the viral DNA, we observed distinct pairs of signals or small nuclear RNA "tracks" within interphase nuclei. FISH to stretched DNA fibers has a higher resolving power and; therefore, enables analysis of the structural organization of DNA. Application of this methodology to linearly extended chromatin of Namalwa cells using different EBV fragments allowed us to visualize the ordered arrangement of the integrated virus. Based on the predicted span of 0.34 nm per base pair for relaxed DNA, length measurements of 30 images showed a good correlation between the mean physical length of hybridized EBV DNA of 52.8 microns (158 kb) without the terminal repeats, and the EBV genomic length of 172 kb, including the terminal repeats. This DNA mapping procedure represents a useful tool for studying the structural organization of integrated viral genomes, and its application will have implications for the understanding of integration processes.
在此,我们报告了对染色体、解聚的间期核染色质和线性伸展的染色质纤维中整合的爱泼斯坦-巴尔病毒(EBV)基因组进行的高分辨率荧光原位杂交(FISH)分析。我们分析了在特征明确的伯基特淋巴瘤细胞系Namalwa中整合到人类基因组中的EBV DNA,该细胞系含有两个完整的EBV基因组。整合通过病毒的末端重复序列发生,并且总是在染色体带1p35处可检测到。使用病毒DNA的生物素化BamHIW片段,我们在间期核内观察到不同的信号对或小核RNA“轨迹”。对拉伸的DNA纤维进行FISH具有更高的分辨率,因此能够分析DNA的结构组织。使用不同的EBV片段将这种方法应用于Namalwa细胞的线性伸展染色质,使我们能够可视化整合病毒的有序排列。基于松弛DNA每碱基对预测跨度为0.34 nm,对30张图像的长度测量显示,不包括末端重复序列的杂交EBV DNA平均物理长度为52.8微米(158 kb)与包括末端重复序列的EBV基因组长度172 kb之间具有良好的相关性。这种DNA定位程序是研究整合病毒基因组结构组织的有用工具,其应用将对理解整合过程具有重要意义。