Portin Petter
Department of Biology, University of Turku, Turku, Finland.
Genetica. 2010 Mar;138(3):333-42. doi: 10.1007/s10709-009-9422-7. Epub 2009 Nov 2.
The mus309 gene in Drosophila melanogaster encodes a RecQ helicase which is involved in DNA double-strand break (DSB) repair. In a brood pattern analysis, it was observed that in mus309 mutant females, the frequency of single crossovers in the central cv-v interval of the X chromosome was reduced in young females but returned to the level of the wild type control as the females aged. In the proximal v-f interval, the frequency of single crossovers was increased during the entire experimental period. In particular, it was observed that the frequency of double crossovers, as well as the coefficient of coincidence first increased but then gradually decreased, finally reaching the level of the control flies, as the females aged. Map distances increased due to the mus309 mutation in both gene interval studies, but they did not change as the females aged, a result suggesting that the mus309 gene controls the distribution of DSBs to be repaired as crossovers instead of non-crossovers. The results suggest a mechanism for the centromere effect of crossing over in Drosophila, viz the fact the frequency of meiotic crossing over reduces with the age of the female, and that the reduction is more pronounced the closer the interval is to the proximal heterochromatin of the chromosome arm. According to the model suggested, the centromere effect is simply a matter of the balance between different pathways of the repair of the DSBs of DNA.
果蝇中的mus309基因编码一种RecQ解旋酶,该酶参与DNA双链断裂(DSB)修复。在一项育雏模式分析中,观察到在mus309突变雌性果蝇中,X染色体中央cv-v区间的单交换频率在年轻雌性中降低,但随着雌性果蝇年龄增长,该频率恢复到野生型对照的水平。在近端v-f区间,单交换频率在整个实验期间都增加。特别值得注意的是,随着雌性果蝇年龄增长,双交换频率以及并发系数首先增加,但随后逐渐降低,最终达到对照果蝇的水平。在两个基因区间研究中,由于mus309突变,图距增加,但随着雌性果蝇年龄增长,图距并未改变,这一结果表明mus309基因控制着作为交换而非非交换进行修复的DSB的分布。这些结果提示了果蝇中交换的着丝粒效应的一种机制,即减数分裂交换频率随雌性果蝇年龄增长而降低,并且距离染色体臂近端异染色质越近,这种降低越明显。根据所提出的模型,着丝粒效应仅仅是DNA双链断裂不同修复途径之间平衡关系而已。