Meiotic homologue alignment and its quality surveillance are controlled by mouse HORMAD1
出版年份 2011 全文链接
标题
Meiotic homologue alignment and its quality surveillance are controlled by mouse HORMAD1
作者
关键词
-
出版物
NATURE CELL BIOLOGY
Volume 13, Issue 5, Pages 599-610
出版商
Springer Nature
发表日期
2011-04-12
DOI
10.1038/ncb2213
参考文献
相关参考文献
注意:仅列出部分参考文献,下载原文获取全部文献信息。- Evidence that Meiotic Sex Chromosome Inactivation Is Essential for Male Fertility
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- Hormad1 Mutation Disrupts Synaptonemal Complex Formation, Recombination, and Chromosome Segregation in Mammalian Meiosis
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- A novel mammalian HORMA domain-containing protein, HORMAD1, preferentially associates with unsynapsed meiotic chromosomes
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- The axial element protein HTP-3 promotes cohesin loading and meiotic axis assembly in C. elegans to implement the meiotic program of chromosome segregation
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- Mouse HORMAD1 and HORMAD2, Two Conserved Meiotic Chromosomal Proteins, Are Depleted from Synapsed Chromosome Axes with the Help of TRIP13 AAA-ATPase
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- Phosphorylation of the Axial Element Protein Hop1 by Mec1/Tel1 Ensures Meiotic Interhomolog Recombination
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- HTP-3 Links DSB Formation with Homolog Pairing and Crossing Over during C. elegans Meiosis
- (2008) William Goodyer et al. DEVELOPMENTAL CELL
- Crossovers trigger a remodeling of meiotic chromosome axis composition that is linked to two-step loss of sister chromatid cohesion
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- Extensive meiotic asynapsis in mice antagonises meiotic silencing of unsynapsed chromatin and consequently disrupts meiotic sex chromosome inactivation
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- Progression of meiotic recombination requires structural maturation of the central element of the synaptonemal complex
- (2008) G. Hamer et al. JOURNAL OF CELL SCIENCE
- Disruption of pairing and synapsis of chromosomes causes stage-specific apoptosis of male meiotic cells
- (2007) G. Hamer et al. THERIOGENOLOGY
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