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Series GSE936 Query DataSets for GSE936
Status Public on Jan 09, 2004
Title Dynamics of global gene expression changes during mouse preimplantation development
Organism Mus musculus
Experiment type Expression profiling by array
Summary Understanding preimplantation development is important both for basic reproductive biology and for practical applications including regenerative medicine and livestock breeding. Global expression profiles revealed and characterized the distinctive patterns of maternal RNA degradation and zygotic gene activation, including two major transient waves of de novo transcription. The first wave corresponds to zygotic genome activation (ZGA); the second wave, named mid-preimplantation gene activation (MGA), precedes the dynamic morphological and functional changes from the morula to blastocyst stage. Further expression profiling of embryos treated with inhibitors of transcription, translation, and DNA replication revealed that the translation of maternal RNAs is required for the initiation of ZGA. We propose a cascade of gene activation from maternal RNA/protein sets to ZGA gene sets and thence to MGA gene sets. The large number of genes identified as involved in each phase is a first step toward analysis of the complex gene regulatory networks.
Keywords: other
 
Web link http://lgsun.grc.nia.nih.gov/microarray/22k/Hamatani/Hamatani-DevCell-analysis-data.xls
 
Contributor(s) Hamatani T, Carter MG, Sharov AA, Ko MS
Citation(s) 14723852
Submission date Dec 30, 2003
Last update date Jan 17, 2013
Contact name Minoru S.H. Ko
E-mail(s) [email protected]
Phone 410-558-8359
Organization name NIH
Department National Institute on Aging
Lab Lab of Genetics
Street address 251 Bayview Blvd, Suite 100, 10C
City Baltimore
State/province MD
ZIP/Postal code 21224
Country USA
 
Platforms (1)
GPL870 NIA Mouse 22K Microarray v1.0 (Development 60-mer Oligo)
Samples (64)
GSM14658 Unfertilized egg replication 1
GSM14660 Unfertilized egg replication 2
GSM14661 Unfertilized egg replication 3
Relations
BioProject PRJNA87969

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