Laboratory of Mouse Molecular Genetics, Division BIOCEV, Institute of Molecular Genetics, Czech Academy of Sciences, CZ-25250 Vestec, Czech Republic.
Department of Cell Biology, Faculty of Science, Charles University, CZ-12000 Prague, Czech Republic.
Genetics. 2021 Mar 3;217(1):1-14. doi: 10.1093/genetics/iyaa013.
During meiosis, the recombination-initiating DNA double-strand breaks (DSBs) are repaired by crossovers or noncrossovers (gene conversions). While crossovers are easily detectable, noncrossover identification is hampered by the small size of their converted tracts and the necessity of sequence polymorphism. We report identification and characterization of a mouse chromosome-wide set of noncrossovers by next-generation sequencing of 10 mouse intersubspecific chromosome substitution strains. Based on 94 identified noncrossovers, we determined the mean length of a conversion tract to be 32 bp. The spatial chromosome-wide distribution of noncrossovers and crossovers significantly differed, although both sets overlapped the known hotspots of PRDM9-directed histone methylation and DNA DSBs, thus supporting their origin in the standard DSB repair pathway. A significant deficit of noncrossovers descending from asymmetric DSBs proved their proposed adverse effect on meiotic recombination and pointed to sister chromatids as an alternative template for their repair. The finding has implications for the molecular mechanism of hybrid sterility in mice from crosses between closely related Mus musculus musculus and Mus musculus domesticus subspecies.
在减数分裂过程中,重组起始的 DNA 双链断裂(DSBs)通过交叉或非交叉(基因转换)修复。虽然交叉很容易检测到,但由于非交叉转化片段较小,且需要序列多态性,因此其鉴定受到阻碍。我们通过对 10 种小鼠亚种间染色体替换品系的下一代测序,鉴定和描述了一组小鼠全染色体的非交叉。基于 94 个鉴定的非交叉,我们确定转换片段的平均长度为 32bp。尽管这两组都与已知的 PRDM9 定向组蛋白甲基化和 DNA DSBs 的热点重叠,但非交叉和交叉在空间上的全染色体分布显著不同,这支持了它们在标准 DSB 修复途径中的起源。从不对称 DSB 下降的非交叉显著减少证明了它们对减数分裂重组的不利影响,并指出姐妹染色单体是其修复的替代模板。这一发现对来自近交系 Mus musculus musculus 和 Mus musculus domesticus 亚种之间杂交的小鼠杂种不育的分子机制具有重要意义。