Architectural alterations of the fission yeast genome during the cell cycle

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44
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48

초록

Eukaryotic genomes are highly ordered through various mechanisms, including topologically associating domain (TAD) organization. We employed an in situ Hi-C approach to follow the 3D organization of the fission yeast genome during the cell cycle. We demonstrate that during mitosis, large domains of 300 kb-1 Mb are formed by condensin. This mitotic domain organization does not suddenly dissolve, but gradually diminishes until the next mitosis. By contrast, small domains of 30-40 kb that are formed by cohesin are relatively stable across the cell cycle. Condensin and cohesin mediate long-and short-range contacts, respectively, by bridging their binding sites, thereby forming the large and small domains. These domains are inversely regulated during the cell cycle but assemble independently. Our study describes the chromosomal oscillation between the formation and decay phases of the large and small domains, and we predict that the condensin-mediated domains serve as chromosomal compaction units.

키워드

TOPOLOGICALLY ASSOCIATING DOMAINS; GENE-EXPRESSION; CHROMOSOMAL ORGANIZATION; REGULATORY LANDSCAPE; MITOTIC CHROMOSOME; DROSOPHILA GENOME; HI-C; CONDENSIN; TRANSCRIPTION; RESOLUTION
제목
Architectural alterations of the fission yeast genome during the cell cycle
저자
Tanizawa, Hideki; Kim, Kyoung-Dong; Iwasaki, Osamu; Noma, Ken-ichi
DOI
10.1038/nsmb.3482
발행일
2017-11
유형
Article
저널명
Nature Structural & Molecular Biology
권
24
호
11
페이지
965 ~ 976