Metabolomics,Unknown,Transcriptomics,Genomics,Proteomics

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Analysis of conditional loss of Geminin in neural tube and paraxial tissues at E10.5 by laser capture microdissection


ABSTRACT: To better understand the role of Geminin during germ layer specification, we bred floxed Geminin mice to Mox2-Cre mice. Mutants (fl/fl; cre/o) had spinal neural tube defects with complete penetrance. We obtained neural tube and paraxial tissue by laser capture microdissection and analyzed total RNA by microarray. Spinal neural tube and paraxial tissue were obtained separately by laser capture microdissection from wild-type and mutant E10.5 embryos. There were 2 replicates of each sample.

ORGANISM(S): Mus musculus

SUBMITTER: Kristen Kroll 

PROVIDER: E-GEOD-42052 | biostudies-arrayexpress |

REPOSITORIES: biostudies-arrayexpress

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Publications

Geminin loss causes neural tube defects through disrupted progenitor specification and neuronal differentiation.

Patterson Ethan S ES   Waller Laura E LE   Kroll Kristen L KL  

Developmental biology 20140701 1


Geminin is a nucleoprotein that can directly bind chromatin regulatory complexes to modulate gene expression during development. Geminin knockout mouse embryos are preimplantation lethal by the 32-cell stage, precluding in vivo study of Geminin's role in neural development. Therefore, here we used a conditional Geminin allele in combination with several Cre-driver lines to define an essential role for Geminin during mammalian neural tube (NT) formation and patterning. Geminin was required in the  ...[more]

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