Departament de Biologia Cel·lular, Fisiologia i Immunologia, Universitat Autònoma de Barcelona, Cerdanyola del Vallès, Spain.
Genome Integrity and Instability Group, Institut de Biotecnologia i Biomedicina, Universitat Autònoma de Barcelona, Cerdanyola del Vallès, Spain.
Nat Commun. 2022 May 11;13(1):2608. doi: 10.1038/s41467-022-30296-6.
Chromosome folding has profound impacts on gene regulation, whose evolutionary consequences are far from being understood. Here we explore the relationship between 3D chromatin remodelling in mouse germ cells and evolutionary changes in genome structure. Using a comprehensive integrative computational analysis, we (i) reconstruct seven ancestral rodent genomes analysing whole-genome sequences of 14 species representatives of the major phylogroups, (ii) detect lineage-specific chromosome rearrangements and (iii) identify the dynamics of the structural and epigenetic properties of evolutionary breakpoint regions (EBRs) throughout mouse spermatogenesis. Our results show that EBRs are devoid of programmed meiotic DNA double-strand breaks (DSBs) and meiotic cohesins in primary spermatocytes, but are associated in post-meiotic cells with sites of DNA damage and functional long-range interaction regions that recapitulate ancestral chromosomal configurations. Overall, we propose a model that integrates evolutionary genome reshuffling with DNA damage response mechanisms and the dynamic spatial genome organisation of germ cells.
染色体折叠对基因调控有深远影响,但其进化后果还远未被理解。在这里,我们探索了小鼠生殖细胞中的 3D 染色质重塑与基因组结构进化变化之间的关系。我们使用综合的整合计算分析,(i)重建了七个祖先啮齿动物基因组,分析了 14 个主要进化群代表物种的全基因组序列,(ii)检测到谱系特异性染色体重排,(iii)鉴定了整个小鼠精子发生过程中进化断点区域(EBR)的结构和表观遗传特性的动态。我们的结果表明,EBR 在初级精母细胞中没有程序性减数分裂 DNA 双链断裂(DSB)和减数分裂黏合蛋白,但在减数后细胞中与 DNA 损伤和功能长距离相互作用区域相关,这些区域再现了祖先的染色体构象。总的来说,我们提出了一个模型,将进化基因组重排与 DNA 损伤反应机制以及生殖细胞的动态空间基因组组织整合在一起。