Kappeler Michael, Kranz Elisabeth, Woolcock Katrina, Georgiev Oleg, Schaffner Walter
Insitut für Molekularbiologie der Universität Zürich, Zürich, Switzerland.
Nucleic Acids Res. 2008 Dec;36(21):6907-17. doi: 10.1093/nar/gkn793. Epub 2008 Oct 31.
DNA double strand breaks (DSB) can be repaired either via a sequence independent joining of DNA ends or via homologous recombination. We established a detection system in Drosophila melanogaster to investigate the impact of sequence constraints on the usage of the homology based DSB repair via single strand annealing (SSA), which leads to recombination between direct repeats with concomitant loss of one repeat copy. First of all, we find the SSA frequency to be inversely proportional to the spacer length between the repeats, for spacers up to 2.4 kb in length. We further show that SSA between divergent repeats (homeologous SSA) is suppressed in cell cultures and in vivo in a sensitive manner, recognizing sequence divergences smaller than 0.5%. Finally, we demonstrate that the suppression of homeologous SSA depends on the Bloom helicase (Blm), encoded by the Drosophila gene mus309. Suppression of homeologous recombination is a novel function of Blm in ensuring genomic integrity, not described to date in mammalian systems. Unexpectedly, distinct from its function in Saccharomyces cerevisiae, the mismatch repair factor Msh2 encoded by spel1 does not suppress homeologous SSA in Drosophila.
DNA双链断裂(DSB)可以通过DNA末端的序列非依赖性连接或通过同源重组进行修复。我们在黑腹果蝇中建立了一个检测系统,以研究序列限制对基于同源性的DSB修复通过单链退火(SSA)的使用的影响,单链退火会导致直接重复序列之间发生重组,同时丢失一个重复拷贝。首先,我们发现对于长度达2.4 kb的间隔序列,SSA频率与重复序列之间的间隔长度成反比。我们进一步表明,在细胞培养物和体内,不同源重复序列之间的SSA(异源SSA)以敏感的方式受到抑制,能够识别小于0.5%的序列差异。最后,我们证明异源SSA的抑制取决于由果蝇基因mus309编码的布鲁姆解旋酶(Blm)。抑制异源重组是Blm在确保基因组完整性方面的一个新功能,在哺乳动物系统中迄今尚未描述。出乎意料的是,与它在酿酒酵母中的功能不同,由spel1编码的错配修复因子Msh2在果蝇中并不抑制异源SSA。