Neural tube closure
MID1 and MID2 are required for Xenopus neural tube closure through the regulation of microtubule organization
12
β catenin regulates Pax3 and Cdx2 for caudal neural tube closure and elongation
10
Fat1 interacts with Fat4 to regulate neural tube closure, neural progenitor proliferation and apical constriction during mouse brain development
11
RACK1 is a novel interaction partner of PTK7 that is required for neural tube closure
7
PREVALENCE OF NEURAL TUBE CLOSURE DEFECTS AND THE ORO FACIAL CLEFTS, DURING THREE CONSECUTIVE YEARS (2012 2014) IN 20 PUBLIC HOSPITALS IN MOROCCO
18
In toto live imaging of mouse morphogenesis and new insights into neural tube closure
11
Distinct intracellular Ca2+ dynamics regulate apical constriction and differentially contribute to neural tube closure
10
Bone morphogenetic proteins regulate neural tube closure by interacting with the apicobasal polarity pathway
10
Identifying Regulators of Morphogenesis Common to Vertebrate Neural Tube Closure and Caenorhabditis elegans Gastrulation
26
Cdx mediates neural tube closure through transcriptional regulation of the planar cell polarity gene Ptk7
10
Neural tube closure: cellular, molecular and biomechanical mechanisms
15
MIM regulates vertebrate neural tube closure
13
The iron exporter ferroportin 1 is essential for development of the mouse embryo, forebrain patterning and neural tube closure
10
Multiple Sites of Anterior Neural Tube Closure in Humans: Evidence From Anterior Neural Tube Defects (Anencephaly)
7
Cell movements of the deep layer of non neural ectoderm underlie complete neural tube closure in Xenopus
10
Actomyosin stiffens the vertebrate embryo during crucial stages of elongation and neural tube closure
12
Zinc deficiency causes neural tube defects through attenuation of p53 ubiquitylation
12
Folate deficiency induced H2A ubiquitination to lead to downregulated expression of genes involved in neural tube defects
19
La-related protein 6 controls ciliated cell differentiation
11
Med12 is essential for early mouse development and for canonical Wnt and Wnt/PCP signaling
9