SCUBE3 loss-of-function causes a recognizable recessive developmental disorder due to defective bone morphogenetic protein signaling

Signal peptide-CUB-EGF domain-containing protein 3 (SCUBE3) is a member of a small family of multifunctional cell surface-anchored glycoproteins functioning as co-receptors for a variety of growth factors. Here we report that bi-allelic inactivating variants in SCUBE3 have pleiotropic consequences o...

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Veröffentlicht in:American Journal of Human Genetics 2021-01, Vol.108 (1), p.115-133
Hauptverfasser: Lin, Y.C., Niceta, M., Muto, V., Vona, B., Pagnamenta, A.T., Maroofian, R., Beetz, C., Duyvenvoorde, H. van, Dentici, M.L., Lauffer, P., Vallian, S., Ciolfi, A., Pizzi, S., Bauer, P., Gruning, N.M., Bellacchio, E., Fattore, A. del, Petrini, S., Shaheen, R., Tiosano, D., Halloun, R., Albayrak, H.M., Isik, E., Wit, J.M., Dittrich, M., Freire, B.L., Bertola, D.R., Jorge, A.A.L., Barel, O., Sabir, A.H., Tenaiji, A.M.J. al, Taji, S.M., Al-Sannaa, N., Al-Abdulwahed, H., Digilio, M.C., Irving, M., Anikster, Y., Bhavani, G.S.L., Girisha, K.M., Haaf, T., Taylor, J.C., Dallapiccola, B., Alkuraya, F.S., Yang, R.B., Tartaglia, M.
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Sprache:eng
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Zusammenfassung:Signal peptide-CUB-EGF domain-containing protein 3 (SCUBE3) is a member of a small family of multifunctional cell surface-anchored glycoproteins functioning as co-receptors for a variety of growth factors. Here we report that bi-allelic inactivating variants in SCUBE3 have pleiotropic consequences on development and cause a previously unrecognized syndromic disorder. Eighteen affected individuals from nine unrelated families showed a consistent phenotype characterized by reduced growth, skeletal features, distinctive craniofacial appearance, and dental anomalies. In vitro functional validation studies demonstrated a variable impact of disease-causing variants on transcript processing, protein secretion and function, and their dysregulating effect on bone morphogenetic protein (BMP) signaling. We show that SCUBE3 acts as a BMP2/BMP4 co-receptor, recruits the BMP receptor complexes into raft microdomains, and positively modulates signaling possibly by augmenting the specific interactions between BMPs and BMP type I receptors. Scube3(-/-) mice showed craniofacial and dental defects, reduced body size, and defective endochondral bone growth due to impaired BMP-mediated chondrogenesis and osteogenesis, recapitulating the human disorder. Our findings identify a human disease caused by defective function of a member of the SCUBE family, and link SCUBE3 to processes controlling growth, morphogenesis, and bone and teeth development through modulation of BMP signaling.
DOI:10.1016/j.ajhg.2020.11.015