| Literature DB >> 21220101 |
Jason M Newbern1, Xiaoyan Li, Sarah E Shoemaker, Jiang Zhou, Jian Zhong, Yaohong Wu, Daniel Bonder, Steven Hollenback, Giovanni Coppola, Daniel H Geschwind, Gary E Landreth, William D Snider.
Abstract
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. Copyright ÂEntities:
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Year: 2011 PMID: 21220101 PMCID: PMC3060558 DOI: 10.1016/j.neuron.2010.12.003
Source DB: PubMed Journal: Neuron ISSN: 0896-6273 Impact factor: 17.173