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Hox3 genes coordinate mechanisms of genetic suppression and activation in the generation of branchial and somatic motoneurons
2003
Development
results in ectopic expression of the r4-specific determinant Hoxb1. This ectopic expression in turn results in the differentiation of r4-like facial branchiomotoneurons within this rhombomere. These studies reveal that members of the Hox1 and Hox3 paralogous groups participate in a 'Hox code' that is necessary for coordinating both suppression and activation mechanisms that ensure distinction between the multiple rhombomeres in the developing hindbrain.
doi:10.1242/dev.00730
pmid:12954718
fatcat:zpdq7hjoxnfepo3isaitd4b4xy