Guo Shimeng, Zhang Yiran, Fei Caifeng, Liu Xiaozhao, Xia Wei, Luo Mengcheng, Wei Gonghong, Qin Weibing, Xiong Chengliang, Li Honggang, Yin Ying, He Ximiao, Zhou Li-Quan
Institute of Reproductive Health & School of Basic Medicine, Tongji Medical College, Huazhong University of Science and Technology, Wuhan, Hubei 430030, China.
Chongqing Key Laboratory of Human Embryo Engineering and Precision Medicine, Center for Reproductive Medicine, Women and Children's Hospital of Chongqing Medical University, Chongqing 400016, China.
Nucleic Acids Res. 2025 Jun 6;53(11). doi: 10.1093/nar/gkaf460.
Chromatin structure during meiosis is different from somatic cells due to the assembly of the synaptonemal complex between homologous chromosome axes. However, genome-wide organizing principles of this meiosis-specific multiprotein complex remain mysterious despite intensive super-resolution imaging analysis. Here, we profiled chromatin occupancy of SYCP3, the key chromatin organizer of synaptonemal complex, in mouse spermatocytes, and showed its enrichment at open chromatin regions. Moreover, SYCP3 occupancy was largely inherited from the leptotene to pachytene stage, facilitated by transcription and fibrous assembly, and was enriched at specific SINE repeats. We also identified SYCP1-occupied regions mainly as a subpopulation of SYCP3-occupied regions with high cohesin enrichment. Collectively, our results demonstrate genome-wide profiling of SYCP3 in mouse meiosis and reveal that its occupancy is a dynamic process modulated by chromatin-related events.
由于同源染色体轴之间联会复合体的组装,减数分裂期间的染色质结构不同于体细胞。然而,尽管进行了深入的超分辨率成像分析,这种减数分裂特异性多蛋白复合体的全基因组组织原则仍然不明。在这里,我们分析了联会复合体的关键染色质组织者SYCP3在小鼠精母细胞中的染色质占据情况,并显示其在开放染色质区域富集。此外,SYCP3的占据情况在很大程度上从细线期到粗线期得以遗传,这受到转录和纤维组装的促进,并且在特定的短散在元件重复序列处富集。我们还确定SYCP1占据的区域主要是具有高黏连蛋白富集的SYCP3占据区域的一个亚群。总体而言,我们的结果展示了小鼠减数分裂中SYCP3的全基因组分析,并揭示其占据是一个由染色质相关事件调节的动态过程。