DNA damage, homology-directed repair, and DNA methylation

被引:147
作者
Cuozzo, Concetta
Porcellini, Antonio
Angrisano, Tiziana
Morano, Annalisa
Lee, Bongyong
Di Pardo, Alba
Messina, Samantha
Iuliano, Rodolfo
Fusco, Alfredo
Santillo, Maria R.
Muller, Mark T.
Chiariotti, Lorenzo
Gottesman, Max E. [1 ]
Avvedimento, Enrico V.
机构
[1] Univ Naples Federico II, Ist Encocrinol & Oncol Sperimentale, Consiglio Nazl Ric, Dipartimento Biol & Patol Mol & Cellulare, Naples, Italy
[2] Univ Roma La Sapienza, Dipartimento Med Sperimentale, I-00161 Rome, Italy
[3] Ist Neurol Mediterraneo, Dipartimento Patol Mol, Pozzili, Poland
[4] Univ Cent Florida, Biomol Sci Ctr, Dept Mol Biol & Microbiol, Orlando, FL 32816 USA
[5] Univ Naples Federico II, Dipartimento Neurosci, Sez Fisiol, Naples, Italy
[6] Columbia Univ, Med Ctr, Inst Canc Res, New York, NY USA
来源
PLOS GENETICS | 2007年 / 3卷 / 07期
关键词
D O I
10.1371/journal.pgen.0030110
中图分类号
Q3 [遗传学];
学科分类号
071007 ; 090102 ;
摘要
To explore the link between DNA damage and gene silencing, we induced a DNA double-strand break in the genome of Hela or mouse embryonic stem (ES) cells using I-SceI restriction endonuclease. The I-SceI site lies within one copy of two inactivated tandem repeated green fluorescent protein (GFP) genes (DR-GFP). A total of 2%-4% of the cells generated a functional GFP by homology-directed repair (HR) and gene conversion. However, similar to 50% of these recombinants expressed GFP poorly. Silencing was rapid and associated with HR and DNA methylation of the recombinant gene, since it was prevented in Hela cells by 5-aza-2 '-deoxycytidine. ES cells deficient in DNA methyl transferase 1 yielded as many recombinants as wild-type cells, but most of these recombinants expressed GFP robustly. Half of the HR DNA molecules were de novo methylated, principally downstream to the double-strand break, and half were undermethylated relative to the uncut DNA. Methylation of the repaired gene was independent of the methylation status of the converting template. The methylation pattern of recombinant molecules derived from pools of cells carrying DR-GFP at different loci, or from an individual clone carrying DR-GFP at a single locus, was comparable. ClustalW analysis of the sequenced GFP molecules in Hela and ES cells distinguished recombinant and nonrecombinant DNA solely on the basis of their methylation profile and indicated that HR superimposed novel methylation profiles on top of the old patterns. Chromatin immunoprecipitation and RNA analysis revealed that DNA methyl transferase 1 was bound specifically to HR GFP DNA and that methylation of the repaired segment contributed to the silencing of GFP expression. Taken together, our data support a mechanistic link between HR and DNA methylation and suggest that DNA methylation in eukaryotes marks homologous recombined segments.
引用
收藏
页码:1144 / 1162
页数:19
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