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Published on: February 13, 2021
SPECC1L regulates palate development downstream of IRF6
Everett G Hall1, Luke W Wenger1, Nathan R Wilson1
1Department of Anatomy and Cell Biology, University of Kansas Medical Center, Kansas City, KS 66160, USA.
Abstract:
SPECC1L mutations have been identified in patients with rare atypical orofacial clefts and with syndromic cleft lip and/or palate (CL/P). These mutations cluster in the second coiled-coil and calponin homology domains of SPECC1L and severely affect the ability of SPECC1L to associate with microtubules. We previously showed that gene-trap knockout of Specc1l in mouse results in early embryonic lethality. We now present a truncation mutant mouse allele, Specc1lΔC510, that results in perinatal lethality. Specc1lΔC510/ΔC510 homozygotes showed abnormal palate rugae but did not show cleft palate. However, when crossed with a gene-trap allele, Specc1lcGT/ΔC510 compound heterozygotes showed a palate elevation delay with incompletely penetrant cleft palate. Specc1lcGT/ΔC510 embryos exhibit transient oral epithelial adhesions at E13.5, which may delay shelf elevation. Consistent with oral adhesions, we show periderm layer abnormalities, including ectopic apical expression of adherens junction markers, similar to Irf6 hypomorphic mutants and Arhgap29 heterozygotes. Indeed, SPECC1L expression is drastically reduced in Irf6 mutant palatal shelves. Finally, we wanted to determine if SPECC1L deficiency also contributed to non-syndromic (ns) CL/P. We sequenced 62 Caucasian, 89 Filipino, 90 Ethiopian, 90 Nigerian and 95 Japanese patients with nsCL/P and identified three rare coding variants (p.Ala86Thr, p.Met91Iso and p.Arg546Gln) in six individuals. These variants reside outside of SPECC1L coiled-coil domains and result in milder functional defects than variants associated with syndromic clefting. Together, our data indicate that palate elevation is sensitive to deficiency of SPECC1L dosage and function and that SPECC1L cytoskeletal protein functions downstream of IRF6 in palatogenesis.
Insights
Mutations in SPECC1L cause rare orofacial clefts by affecting microtubule association. Mouse models reveal SPECC1L dosage affects palate elevation and may function downstream of IRF6 in development.
Area of Science:
- Developmental Biology
- Genetics
- Craniofacial Development
Background:
- SPECC1L mutations are linked to syndromic and atypical orofacial clefts.
- These mutations impair SPECC1L's microtubule-binding capacity.
- Previous Specc1l knockout models showed embryonic lethality.
Purpose of the Study:
- To investigate the role of SPECC1L in palate development using a novel truncation mutant mouse model.
- To explore the functional consequences of SPECC1L deficiency on palate elevation and cleft palate.
- To examine the relationship between SPECC1L, IRF6, and non-syndromic cleft lip and/or palate (CL/P).
Main Methods:
- Generation and analysis of a Specc1l truncation mutant mouse allele (Specc1lΔC510).
- Cross-breeding Specc1lΔC510 with a gene-trap allele (Specc1lcGT) to create compound heterozygotes.
- Histological examination of palatal shelves, including assessment of epithelial adhesions and adherens junction markers.
- Sequencing of SPECC1L in patients with non-syndromic CL/P from diverse ethnic backgrounds.
Main Results:
- Specc1lΔC510 homozygotes exhibited abnormal palate rugae but not cleft palate.
- Specc1lcGT/ΔC510 compound heterozygotes displayed palate elevation delay and incomplete cleft palate.
- Transient oral epithelial adhesions and periderm abnormalities were observed in Specc1lcGT/ΔC510 embryos.
- SPECC1L expression was significantly reduced in Irf6 mutant palatal shelves.
- Three rare SPECC1L coding variants were identified in patients with non-syndromic CL/P.
Conclusions:
- Palate elevation is sensitive to SPECC1L dosage and function.
- SPECC1L acts downstream of IRF6 in the process of palatogenesis.
- Mild SPECC1L variants may contribute to non-syndromic cleft lip and/or palate.
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