In mouse early pachytene spermatocytes, the X and Y chromosomes undergo rapid non-homologous (NH) synapsis and desynapsis, but the functional significance remains unknown. Here, we report that pachynema-specific knockout of Speedy A (SpdyA) from telomeres caused persistent Y-X NH synapsis, with the entire Y axis synapsed onto the X axis. This persistent Y-X NH synapsis did not interrupt meiotic sex chromosome inactivation, recombination, or sex body formation, but it disrupted X-Y loop-axis organization and homologous X-Y desynapsis, leading to spermatocyte death. Similarly, persistent Y-X NH synapsis was also observed in pachytene spermatocytes lacking TRF1, where SpdyA was frequently lost from the X-Y non-pseudoautosomal region (non-PAR) telomeres. Mechanistic studies revealed that Serine 48 of SUN1 is a key SpdyA/CDK2 phosphorylation site required for Y-X NH desynapsis. We propose that SpdyA governs Y-X NH desynapsis by stabilizing the linkage between the X-Y non-PAR telomeres and their LINC complexes, and that this process is regulated independently from other aspects of pachynema progression. Our findings suggest a key role for Y-X NH desynapsis in establishing proper X-Y loop-axis organization.
Speedy A governs non-homologous XY chromosome desynapsis as a unique prerequisite for XY loop-axis organization.
Speedy A 控制非同源 XY 染色体解联会,这是 XY 环轴组织的独特先决条件
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作者:Liu Dongteng, Zhang Yuxiang, Li Dongliang, Jiang Binjie, Zhao Xudong, Li Yanyan, Lin Zexiong, Zhao Yu, Hu Zhe, Deng Shuzi, Li Zheng, Lu Haonan, Chan Karen K L, Yeung William S B, Kaldis Philipp, Yao Chencheng, Wang Hengbin, Chow Louise T, Liu Kui
| 期刊: | EMBO Journal | 影响因子: | 8.300 |
| 时间: | 2025 | 起止号: | 2025 Oct;44(19):5509-5536 |
| doi: | 10.1038/s44318-025-00528-8 | 研究方向: | 其它 |
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