突触
生物
联会复合体
减数分裂细胞
减数分裂
同源重组
同源染色体
前期
雷达51
遗传学
遗传重组
染色体交叉
细胞生物学
染色体分离
异位重组
染色体
重组
DNA
基因
作者
Frédéric Baudat,Katia Manova,Julie Pui Yuen,Maria Jasin,Scott Keeney
出处
期刊:Molecular Cell
[Elsevier]
日期:2000-11-01
卷期号:6 (5): 989-998
被引量:710
标识
DOI:10.1016/s1097-2765(00)00098-8
摘要
Spo11, a protein first identified in yeast, is thought to generate the chromosome breaks that initiate meiotic recombination. We now report that disruption of mouse Spo11 leads to severe gonadal abnormalities from defective meiosis. Spermatocytes suffer apoptotic death during early prophase; oocytes reach the diplotene/dictyate stage in nearly normal numbers, but most die soon after birth. Consistent with a conserved function in initiating meiotic recombination, Dmc1/Rad51 focus formation is abolished. Spo11(-/-) meiocytes also display homologous chromosome synapsis defects, similar to fungi but distinct from flies and nematodes. We propose that recombination initiation precedes and is required for normal synapsis in mammals. Our results also support the view that mammalian checkpoint responses to meiotic recombination and/or synapsis defects are sexually dimorphic.
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