TY - JOUR
T1 - Role of ZFHX4 in orofacial clefting based on human genetic data and zebrafish models
AU - Ishorst, Nina
AU - Hölzel, Selina
AU - Greve, Carola
AU - Yilmaz, Öznur
AU - Lindenberg, Tobias
AU - Lambertz, Jessica
AU - Drichel, Dmitriy
AU - Zametica, Berina
AU - Mingardo, Enrico
AU - Kalanithy, Jeshurun C.
AU - Channab, Khadija
AU - Kibris, Duygu
AU - Henne, Sabrina
AU - Degenhardt, Franziska
AU - Siewert, Anna
AU - Dixon, Michael
AU - Kruse, Teresa
AU - Ongkosuwito, Edwin
AU - Girisha, Katta M.
AU - Pande, Shruti
AU - Nowak, Stefanie
AU - Hagelueken, Gregor
AU - Geyer, Matthias
AU - Carels, Carine
AU - van Rooij, Iris A.L.M.
AU - Ludwig, Kerstin U.
AU - Odermatt, Benjamin
AU - Mangold, Elisabeth
N1 - Publisher Copyright:
© The Author(s) 2024.
PY - 2024
Y1 - 2024
N2 - Orofacial clefting (OFC) is a frequent congenital anomaly and can occur either in the context of underlying syndromes or in isolation (nonsyndromic). The two common OFC phenotypes are cleft lip with/without cleft palate (CL/P) and cleft palate only (CPO). In this study, we searched for penetrant CL/P genes, by evaluating de novo copy number variants (CNV) from an exome sequencing dataset of 50 nonsyndromic patient-parent trios. We detected a heterozygous 86 kb de novo deletion affecting exons 4–11 of ZFHX4, a gene previously associated with OFC. Genetic and phenotypic data from our in-house and the AGORA cohort (710 and 229 individuals with nonsyndromic CL/P) together with literature and database reviews demonstrate that ZFHX4 variants can lead to both nonsyndromic and syndromic forms not only of CL/P but also CPO. Expression analysis in published single-cell RNA-sequencing data (mouse embryo, zebrafish larva) at relevant time-points support an important role of Zfhx4/zfhx4 in craniofacial development. To characterize the role of zfhx4 in zebrafish craniofacial development, we knocked out/down the zebrafish orthologue. Cartilage staining of the zfhx4 CRISPR F0 knockout and morpholino knockdown at 4 days post-fertilization showed an underdeveloped and abnormally shaped ethmoid plate and cartilaginous jaw (resembling micrognathia). While there is evidence for the dominant inheritance of ZFHX4 variants in OFC, we here present a patient with a possible recessive inheritance. In conclusion, ZFHX4 has a highly heterogeneous phenotypic spectrum and variable mode of inheritance. Our data highlight that ZFHX4 should be considered in genetic testing in patients with nonsyndromic clefting.
AB - Orofacial clefting (OFC) is a frequent congenital anomaly and can occur either in the context of underlying syndromes or in isolation (nonsyndromic). The two common OFC phenotypes are cleft lip with/without cleft palate (CL/P) and cleft palate only (CPO). In this study, we searched for penetrant CL/P genes, by evaluating de novo copy number variants (CNV) from an exome sequencing dataset of 50 nonsyndromic patient-parent trios. We detected a heterozygous 86 kb de novo deletion affecting exons 4–11 of ZFHX4, a gene previously associated with OFC. Genetic and phenotypic data from our in-house and the AGORA cohort (710 and 229 individuals with nonsyndromic CL/P) together with literature and database reviews demonstrate that ZFHX4 variants can lead to both nonsyndromic and syndromic forms not only of CL/P but also CPO. Expression analysis in published single-cell RNA-sequencing data (mouse embryo, zebrafish larva) at relevant time-points support an important role of Zfhx4/zfhx4 in craniofacial development. To characterize the role of zfhx4 in zebrafish craniofacial development, we knocked out/down the zebrafish orthologue. Cartilage staining of the zfhx4 CRISPR F0 knockout and morpholino knockdown at 4 days post-fertilization showed an underdeveloped and abnormally shaped ethmoid plate and cartilaginous jaw (resembling micrognathia). While there is evidence for the dominant inheritance of ZFHX4 variants in OFC, we here present a patient with a possible recessive inheritance. In conclusion, ZFHX4 has a highly heterogeneous phenotypic spectrum and variable mode of inheritance. Our data highlight that ZFHX4 should be considered in genetic testing in patients with nonsyndromic clefting.
UR - https://www.scopus.com/pages/publications/85212483095
UR - https://www.scopus.com/pages/publications/85212483095#tab=citedBy
U2 - 10.1038/s41431-024-01775-9
DO - 10.1038/s41431-024-01775-9
M3 - Article
AN - SCOPUS:85212483095
SN - 1018-4813
VL - 33
SP - 595
EP - 606
JO - European Journal of Human Genetics
JF - European Journal of Human Genetics
IS - 5
M1 - 14364
ER -