Unknown,Transcriptomics,Genomics,Proteomics

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Genome-Wide Dynamics of Replication Timing Revealed by In Vitro Models of Mouse Embryogenesis


ABSTRACT: This SuperSeries is composed of the following subset Series: GSE17980: Genome-Wide Dynamics of Replication Timing Revealed by In Vitro Models of Mouse Embryogenesis (Expression) GSE17983: Genome-Wide Dynamics of Replication Timing Revealed by In Vitro Models of Mouse Embryogenesis (WG_CGH; Replication Timing) GSE17980 (Expression): 8 cell lines, with a total of 14 individual replicates (i.e. 6 in duplicates, 2 in single replicates) GSE17983 (WG_CGH; Replication Timing): 22 cell lines, with a total of 36 individual replicates (i.e. 14 in duplicates, 8 in single replicates)

ORGANISM(S): Mus musculus

SUBMITTER: Ichiro Hiratani 

PROVIDER: E-GEOD-18019 | biostudies-arrayexpress |

REPOSITORIES: biostudies-arrayexpress

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Publications

Genome-wide dynamics of replication timing revealed by in vitro models of mouse embryogenesis.

Hiratani Ichiro I   Ryba Tyrone T   Itoh Mari M   Rathjen Joy J   Kulik Michael M   Papp Bernadett B   Fussner Eden E   Bazett-Jones David P DP   Plath Kathrin K   Dalton Stephen S   Rathjen Peter D PD   Gilbert David M DM  

Genome research 20091201 2


Differentiation of mouse embryonic stem cells (mESCs) is accompanied by changes in replication timing. To explore the relationship between replication timing and cell fate transitions, we constructed genome-wide replication-timing profiles of 22 independent mouse cell lines representing 10 stages of early mouse development, and transcription profiles for seven of these stages. Replication profiles were cell-type specific, with 45% of the genome exhibiting significant changes at some point during  ...[more]

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