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E-GEOD-24730 GSE24730 transcription profiling by array Mus musculus

Specific functions for ERK/MAPK signaling during PNS development

Submitted Oct. 14, 2010 ·Released Oct. 16, 2010 ·Updated June 10, 2011
8
Samples
8
Assays
1
Array Platforms
Description

We have established functions of the stimulus dependent MAPKs, ERK1/2 and ERK5 in DRG, motor neuron, and Schwann cell development. Surprisingly, many aspects of early DRG and motor neuron development were found to be ERK1/2 independent and Erk5 deletion had no obvious effect on embryonic PNS. In contrast, Erk1/2 deletion in developing neural crest resulted in peripheral nerves that were devoid of Schwann cell progenitors, and deletion of Erk1/2 in Schwann cell precursors caused disrupted differentiation and marked hypomyelination of axons. The Schwann cell phenotypes are similar to those reported in neuregulin-1 and ErbB mutant mice and neuregulin effects could not be elicited in glial precursors lacking Erk1/2. ERK/MAPK regulation of myelination was specific to Schwann cells, as deletion in oligodendrocyte precursors did not impair myelin formation, but reduced precursor proliferation. Our data suggest a tight linkage between developmental functions of ERK/MAPK signaling and biological actions of specific RTK-activating factors. Microarray analysis on RNA extracts derived from E12.5 Erk1/2CKO(Wnt1) and wildtype DRGs

Array Platforms
A-MEXP-1174
Illumina MouseRef-8 v2.0 Expression BeadChip(8 items)
Sample Attributes
cell type
E12.5 dorsal root ganglia (DRG)
genotype/variation
E12.5 Erk1/2CKO(Wnt1), wild-type
Organism
Mus musculus
Experiment Info
Accession
E-GEOD-24730
GEO ID
GSE24730
Type
transcription profiling by array
Organism
Mus musculus
Submitted
Oct. 14, 2010
Released
Oct. 16, 2010
Updated
June 10, 2011
Submitter
Daniel Bonder、 Giovanni Coppola、 Yaohong Wu、 Daniel H Geschwind、 Jiang Zhou、 Sarah E Shoemaker、 Steven Hollenback、 Xiaoyan Li、 Gary E Landreth、 Jason M Newbern、 Jian Zhong、 William D Snider
Analysis Services
Analysis Services

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