Tracy R B, Lieber M R
Department of Pathology, Norris Comprehensive Cancer Center, University of Southern California Keck School of Medicine, 1441 Eastlake Avenue, Los Angeles, CA 90089-9176, USA.
EMBO J. 2000 Mar 1;19(5):1055-67. doi: 10.1093/emboj/19.5.1055.
Immunoglobulin class switching is mediated by recombination between switch sequences located immediately upstream of the immunoglobulin constant heavy chain genes. Targeting of recombination to particular switch sequences is associated temporally with transcription through these regions. We recently have provided evidence for inducible and stable RNA-DNA hybrid formation at switch sequences in the mouse genome that are mechanistically important for class switching in vivo. Here, we define in vitro the precise configuration of the DNA and RNA strands within this hybrid structure at the Smicro, Sgamma3 and Sgamma2b mouse switch sequences. We find that the G-rich (non-template) DNA strand of each switch sequence is hypersensitive to probes throughout much of its length, while the C-rich (template) DNA strand is essentially resistant. These results demonstrate formation of an R-loop, whereby the G-rich RNA strand forms a stable heteroduplex with its C-rich DNA strand counterpart, and the G-rich DNA strand exists primarily in a single-stranded state. We propose that the organized structure of the R-loop is essential for targeting the class switch recombination machinery to these sequences.
免疫球蛋白类别转换由位于免疫球蛋白恒定重链基因上游紧邻位置的转换序列之间的重组介导。重组靶向特定转换序列在时间上与通过这些区域的转录相关。我们最近提供了证据,证明在小鼠基因组的转换序列处可诱导并稳定形成RNA-DNA杂交体,这在体内类别转换中具有重要的机制意义。在此,我们在体外确定了在小鼠Sμ、Sγ3和Sγ2b转换序列处该杂交结构内DNA和RNA链的精确构象。我们发现每个转换序列富含G的(非模板)DNA链在其大部分长度上对探针高度敏感,而富含C的(模板)DNA链基本无反应。这些结果证明形成了R环,即富含G的RNA链与其富含C的DNA链对应物形成稳定的异源双链体,且富含G的DNA链主要以单链状态存在。我们提出R环的有序结构对于将类别转换重组机制靶向这些序列至关重要。