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Transcription-coupled structural dynamics of topologically associating domains regulate replication origin efficiency

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Zenodo2021-05-20 更新2026-05-25 收录
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Background Metazoan cells only utilize a small subset of the potential DNA replication origins to duplicate the whole genome in each cell cycle. Origin choice is linked to cell growth, differentiation, and replication stress. Despite various genetic and epigenetic signatures are found to be related with the replication efficiency of origins, a consensus in that how the selection of origins is determined has been lacking. Results Here, we applied dual-color stochastic optical reconstruction microscopy (STORM) super-resolution imaging to map the spatial distribution of origins within individual topologically associating domains (TADs). We found that multiple replication origins initiate separately at the spatial boundary of a TAD at the beginning of the S phase. Intriguingly, while both highly-efficient and lowly-efficient origins are distributed homogeneously in the TAD during the G1 phase, highly-efficient origins relocate to the TAD periphery before entering the S phase. We proved that such origin relocalization is dependent on both transcription and CTCF-mediated chromatin structure. Further, we observed that the replication machinery protein PCNA forms immobile clusters around the TADs at the G1/S transition, which explains why origins at the TAD periphery are preferentially fired.

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Zenodo
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2021-05-20
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