The expression pattern of Xenopus Mox-2 implies a role in initial mesodermal differentiation
Author:
Publisher
Elsevier BV
Subject
Developmental Biology,Embryology
Reference39 articles.
1. Expression of a dominant negative mutant of the FGF receptor disrupts mesoderm formation in xenopus embryos
2. FGF signalling in the early specification of mesoderm in Xenopus
3. Amino acid sequence of Mox-2 and comparison to itsXenopusand rat homologs
4. Mox-1 and Mox-2 define a novel homeobox gene subfamily and are differentially expressed during early mesodermal patterning in mouse embryos
5. Interactions between Xwnt-8 and Spemann organizer signaling pathways generate dorsoventral pattern in the embryonic mesoderm of Xenopus.
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1. A mosaic of conserved and novel modes of gene expression and morphogenesis in mesoderm and muscle formation of a larval bivalve;Organisms Diversity & Evolution;2022-07-07
2. Combined p53- and PTEN-deficiency activates expression of mesenchyme homeobox 1 (MEOX1) required for growth of triple-negative breast cancer;Journal of Biological Chemistry;2020-08
3. Conserved Noncoding Elements in the Most Distant Genera of Cephalochordates: The Goldilocks Principle;Genome Biology and Evolution;2016-07-12
4. Mutations in MEOX1, Encoding Mesenchyme Homeobox 1, Cause Klippel-Feil Anomaly;The American Journal of Human Genetics;2013-01
5. Mef2d Acts Upstream of Muscle Identity Genes and Couples Lateral Myogenesis to Dermomyotome Formation in Xenopus laevis;PLoS ONE;2012-12-31
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