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E-GEOD-63350 SRP049949, GSE63350 ChIP-seq Schizosaccharomyces pombe

The N-terminal Tail of CENP-A Confers Epigenetic Stability to Centromeres via the CENP-T Branch of the CCAN in Fission Yeast

·发布 2015年4月16日 ·更新 2015年8月19日
4
样本数
4
实验数
1
相关文献
实验描述

We employ the well-studied fission yeast centromere to investigate the function of the CENP-A (Cnp1) N-tail. We show that alteration of the N-tail did not affect Cnp1 loading at centromeres, outer kinetochore formation, or spindle checkpoint signaling, but nevertheless elevated chromosome loss. N-Tail mutants exhibited synthetic lethality with an altered centromeric DNA sequence, with rare survivors harboring chromosomal fusions in which the altered centromere was epigenetically inactivated. Elevated centromere inactivation was also observed for N-tail mutants with unaltered centromeric DNA sequences. N-tail mutants specifically reduced localization of the CCAN proteins Cnp20/CENP-T and Mis6/CENP-I, but not Cnp3/CENP-C. Overexpression of Cnp20/CENP-T suppressed defects in an N-tail mutant, suggesting a causal link between reduced CENP-T recruitment and the observed centromere inactivation phenotype. Thus, the Cnp1 N-tail promotes epigenetic stability of centromeres via recruitment of the CENP-T branch of the CCAN. Genome-wide localization of GFP-tagged N-tail Cnp1 variant tailswap versus wt control in cnp1 deletion background

参考文献
The CENP-A N-tail confers epigenetic stability to centromeres via the CENP-T branch of the CCAN in fission yeast.
Folco HD, Campbell CS, May KM, Espinoza CA, Oegema K, Hardwick KG, Grewal SI, Desai A
PMID: 25619765
样本属性
chip-antibody
GFP (Invitrogen A-11122), None
genotype
Cnp1 variant tailswap, wt control in cnp1 deletion
organism
Schizosaccharomyces pombe
实验信息
登记号
E-GEOD-63350
GEO 编号
SRP049949, GSE63350
实验类型
ChIP-seq
物种
Schizosaccharomyces pombe
发布日期
2015年4月16日
更新日期
2015年8月19日
提交者
Arshad Desai、 Hernan D Folco、 Arshad B Desai、 Celso A Espinoza
分析服务
分析服务

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