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PMID: 40997799 已发表 · ppublish 英语

Maternal CENP-C restores centromere symmetry in mammalian zygotes to ensure proper chromosome segregation.

Developmental cell ·第 61 卷 ·第 1 期 ·2026-01-14

Tower CA, Manske G, Ferrell EL, Anbarci DN, Jorgensen K, Ma B, Aboelenain M, Ranjan R, Chakraborty S, Moritz L, Das A, Boiani M, Black BE, Chavez S, Marsh EE, Shikanov A, Schindler K, Chen X, Hammoud SS

摘要

Across metazoan species, the centromere-specific histone variant CENP-A is essential for accurate chromosome segregation, yet its regulation during the mammalian parental-to-zygote transition is poorly understood. To address this, we generated a CENP-A-mScarlet mouse model that revealed sex-specific dynamics: mature sperm retain 10% of the CENP-A levels present in MII oocytes. However, this difference is resolved in zygotes prior to the first mitosis, using maternally inherited cytoplasmic CENP-A. Notably, the increase in CENP-A at paternal centromeres is independent of sensing CENP-A asymmetry or the presence of maternal chromosomes. Instead, CENP-A equalization relies on the asymmetric recruitment of maternal CENP-C to paternal centromeres. Depletion of maternal CENP-A decreases total CENP-A in both pronuclei without disrupting equalization. In contrast, reducing maternal CENP-C or disruption of its dimerization function impairs CENP-A equalization and chromosome segregation. Therefore, maternal CENP-C acts as a key epigenetic regulator that resets centromeric symmetry at fertilization to preserve genome integrity.

关键词
CENP-A CENP-C MIS18BP1 centromere epigenetics intergenerational mouse oocyte sperm zygote
文献信息
期刊
Developmental cell
期刊简称
Dev Cell
ISSN
1878-1551
通讯邮箱
发表日期
2026-01-14
语言
英语
国家/地区
United States
NLM ID
101120028
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