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An Explant Assay for Assessing Cellular Behavior of the Cranial Mesenchyme
Published on: January 20, 2013
SPECC1L deficiency results in increased adherens junction stability and reduced cranial neural crest cell
Nathan R Wilson1, Adam J Olm-Shipman1, Diana S Acevedo1
1Department of Anatomy and Cell Biology, University of Kansas Medical Center, Kansas City, KS, USA.
Insights
SPECC1L protein is crucial for proper neural tube closure and cranial neural crest cell delamination, essential processes for mid-facial development. Its deficiency disrupts adherens junctions and PI3K-AKT signaling, leading to birth defects like orofacial clefts.
Area of Science:
- Developmental Biology
- Cell Biology
- Genetics
Background:
- Cranial neural crest cells (CNCCs) are vital for mid-facial development, and their dysfunction is linked to orofacial clefts.
- SPECC1L mutations are associated with clefting disorders, but its precise role remains unclear.
Purpose of the Study:
- To elucidate the function of SPECC1L in craniofacial morphogenesis and its impact on CNCC delamination.
- To investigate the molecular mechanisms underlying SPECC1L's role, focusing on adherens junctions and signaling pathways.
Main Methods:
- Utilized SPECC1L-knockdown cell culture models and generated a Specc1l-deficient mouse model.
- Analyzed adherens junction component localization via staining and electron microscopy.
- Assessed PI3K-AKT signaling pathway activity and apoptosis levels.
Main Results:
- SPECC1L deficiency in cells and mice led to increased adherens junction (AJ) component staining and altered AJ distribution.
- Homozygous Specc1l mutants exhibited embryonic lethality, impaired neural tube closure, and defective CNCC delamination.
- Reduced PI3K-AKT signaling and increased apoptosis were observed in Specc1l mutants, with AJ defects rescued by pathway activation.
Conclusions:
- SPECC1L is a novel regulator of PI3K-AKT signaling and adherens junction dynamics.
- SPECC1L is essential for neural tube closure and CNCC delamination, processes critical for normal craniofacial development.
Abstract:
Cranial neural crest cells (CNCCs) delaminate from embryonic neural folds and migrate to pharyngeal arches, which give rise to most mid-facial structures. CNCC dysfunction plays a prominent role in the etiology of orofacial clefts, a frequent birth malformation. Heterozygous mutations in SPECC1L have been identified in patients with atypical and syndromic clefts. Here, we report that in SPECC1L-knockdown cultured cells, staining of canonical adherens junction (AJ) components, β-catenin and E-cadherin, was increased, and electron micrographs revealed an apico-basal diffusion of AJs. To understand the role of SPECC1L in craniofacial morphogenesis, we generated a mouse model of Specc1l deficiency. Homozygous mutants were embryonic lethal and showed impaired neural tube closure and CNCC delamination. Staining of AJ proteins was increased in the mutant neural folds. This AJ defect is consistent with impaired CNCC delamination, which requires AJ dissolution. Further, PI3K-AKT signaling was reduced and apoptosis was increased in Specc1l mutants. In vitro, moderate inhibition of PI3K-AKT signaling in wildtype cells was sufficient to cause AJ alterations. Importantly, AJ changes induced by SPECC1L-knockdown were rescued by activating the PI3K-AKT pathway. Together, these data indicate SPECC1L as a novel modulator of PI3K-AKT signaling and AJ biology, required for neural tube closure and CNCC delamination.
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