Takabatake Takashi, Ishihara Hiroshi, Ohmachi Yasushi, Tanaka Izumi, Nakamura Masako M, Fujikawa Katsuyoshi, Hirouchi Tokuhisa, Kakinuma Shizuko, Shimada Yoshiya, Oghiso Yoichi, Tanaka Kimio
Department of Radiobiology, Institute for Environmental Sciences, 2-121, Hacchazawa, Takahoko, Rokkasho, Aomori 039-3213, Japan.
Nucleic Acids Res. 2008 Jun;36(10):e59. doi: 10.1093/nar/gkn235. Epub 2008 May 1.
Mammalian genomes contain numerous evolutionary harbored mobile elements, a part of which are still active and may cause genomic instability. Their movement and positional diversity occasionally result in phenotypic changes and variation by causing altered expression or disruption of neighboring host genes. Here, we describe a novel microarray-based method by which dispersed genomic locations of a type of retrotransposon in a mammalian genome can be identified. Using this method, we mapped the DNA elements for a mouse retrotransposon, intracisternal A-particle (IAP), within genomes of C3H/He and C57BL/6J inbred mouse strains; consequently we detected hundreds of probable IAP cDNA-integrated genomic regions, in which a considerable number of strain-specific putative insertions were included. In addition, by comparing genomic DNAs from radiation-induced myeloid leukemia cells and its reference normal tissue, we detected three genomic regions around which an IAP element was integrated. These results demonstrate the first successful genome-wide mapping of a retrotransposon type in a mammalian genome.
哺乳动物基因组包含众多在进化过程中保留下来的移动元件,其中一部分仍然活跃,可能导致基因组不稳定。它们的移动和位置多样性偶尔会通过改变邻近宿主基因的表达或使其破坏而导致表型变化和变异。在此,我们描述了一种基于微阵列的新方法,利用该方法可识别哺乳动物基因组中一类逆转录转座子的分散基因组位置。使用此方法,我们在C3H/He和C57BL/6J近交系小鼠基因组中绘制了一种小鼠逆转录转座子——脑内A颗粒(IAP)的DNA元件图谱;因此,我们检测到数百个可能整合了IAP cDNA的基因组区域,其中包含相当数量的菌株特异性推定插入。此外,通过比较辐射诱导的髓系白血病细胞及其参考正常组织的基因组DNA,我们检测到三个IAP元件整合在其周围的基因组区域。这些结果证明了首次成功地在哺乳动物基因组中对一种逆转录转座子类型进行全基因组图谱绘制。