Xu Heming, Chi Yi, Yin Changjian, Li Cheng, Chen Yujie, Liu Zhiyuan, Liu Xiaowen, Xie Hao, Chen Zi-Jiang, Zhao Han, Wu Keliang, Zhao Shigang, Xing Dong
Biomedical Pioneering Innovation Center (BIOPIC), School of Life Sciences, Peking University, Beijing, China.
Beijing Advanced Innovation Center for Genomics (ICG), Peking University, Beijing, China.
Nat Commun. 2025 Apr 23;16(1):3805. doi: 10.1038/s41467-025-59055-z.
The three-dimensional (3D) organization of chromosomes is crucial for packaging a large mammalian genome into a confined nucleus and ensuring proper nuclear functions in somatic cells. However, the packaging of the much more condensed sperm genome is challenging to study with traditional imaging or sequencing approaches. In this study, we develop an enhanced chromosome conformation capture assay, and resolve the 3D whole-genome structures of single mammalian sperm. The reconstructed genome structures accurately delineate the species-specific nuclear morphologies for both human and mouse sperm. We discover that sperm genomes are divided into chromosomal territories and A/B compartments, similarly to somatic cells. However, neither human nor mouse sperm chromosomes contain topologically associating domains or chromatin loops. These results suggest that the fine-scale chromosomal organization of mammalian sperm fundamentally differs from that of somatic cells. The discoveries and methods established in this work will be valuable for future studies of sperm related infertility.
染色体的三维(3D)组织对于将大型哺乳动物基因组包装到有限的细胞核中并确保体细胞中正常的核功能至关重要。然而,对于更为浓缩的精子基因组的包装,使用传统成像或测序方法进行研究具有挑战性。在本研究中,我们开发了一种增强的染色体构象捕获分析方法,并解析了单个哺乳动物精子的3D全基因组结构。重建的基因组结构准确描绘了人类和小鼠精子的物种特异性核形态。我们发现,与体细胞类似,精子基因组被分为染色体区域和A/B区室。然而,人类和小鼠精子染色体均不包含拓扑相关结构域或染色质环。这些结果表明,哺乳动物精子的精细染色体组织与体细胞的根本不同。本研究中建立的发现和方法将对未来精子相关不孕症的研究具有重要价值。