FB2026_01 , released March 12, 2026
FB2026_01 , released March 12, 2026
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Citation
Gehin, C., Lone, M.A., Lee, W., Capolupo, L., Ho, S., Adeyemi, A.M., Gerkes, E.H., Stegmann, A.P., López-Martín, E., Bermejo-Sánchez, E., Martínez-Delgado, B., Zweier, C., Kraus, C., Popp, B., Strehlow, V., Gräfe, D., Knerr, I., Jones, E.R., Zamuner, S., Abriata, L.A., Kunnathully, V., Moeller, B.E., Vocat, A., Rommelaere, S., Bocquete, J.P., Ruchti, E., Limoni, G., Van Campenhoudt, M., Bourgeat, S., Henklein, P., Gilissen, C., van Bon, B.W., Pfundt, R., Willemsen, M.H., Schieving, J.H., Leonardi, E., Soli, F., Murgia, A., Guo, H., Zhang, Q., Xia, K., Fagerberg, C.R., Beier, C.P., Larsen, M.J., Valenzuela, I., Fernández-Álvarez, P., Xiong, S., Śmigiel, R., López-González, V., Armengol, L., Morleo, M., Selicorni, A., Torella, A., Blyth, M., Cooper, N.S., Wilson, V., Oegema, R., Herenger, Y., Garde, A., Bruel, A.L., Tran Mau-Them, F., Maddocks, A.B., Bain, J.M., Bhat, M.A., Costain, G., Kannu, P., Marwaha, A., Champaigne, N.L., Friez, M.J., Richardson, E.B., Gowda, V.K., Srinivasan, V.M., Gupta, Y., Lim, T.Y., Sanna-Cherchi, S., Lemaitre, B., Yamaji, T., Hanada, K., Burke, J.E., Jakšić, A.M., McCabe, B.D., De Los Rios, P., Hornemann, T., D'Angelo, G., Gennarino, V.A. (2023). CERT1 mutations perturb human development by disrupting sphingolipid homeostasis.  J. Clin. Invest. 133(10): e165019.
FlyBase ID
FBrf0256486
Publication Type
Research paper
Abstract
Neural differentiation, synaptic transmission, and action potential propagation depend on membrane sphingolipids, whose metabolism is tightly regulated. Mutations in the ceramide transporter CERT (CERT1), which is involved in sphingolipid biosynthesis, are associated with intellectual disability, but the pathogenic mechanism remains obscure. Here, we characterize 31 individuals with de novo missense variants in CERT1. Several variants fall into a previously uncharacterized dimeric helical domain that enables CERT homeostatic inactivation, without which sphingolipid production goes unchecked. The clinical severity reflects the degree to which CERT autoregulation is disrupted, and inhibiting CERT pharmacologically corrects morphological and motor abnormalities in a Drosophila model of the disease, which we call ceramide transporter (CerTra) syndrome. These findings uncover a central role for CERT autoregulation in the control of sphingolipid biosynthetic flux, provide unexpected insight into the structural organization of CERT, and suggest a possible therapeutic approach for patients with CerTra syndrome.
PubMed ID
PubMed Central ID
PMC10178846 (PMC) (EuropePMC)
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    Language of Publication
    English
    Additional Languages of Abstract
    Parent Publication
    Publication Type
    Journal
    Abbreviation
    J. Clin. Invest.
    Title
    Journal of Clinical Investigation
    Publication Year
    1924-
    ISBN/ISSN
    0021-9738
    Data From Reference
    Alleles (2)
    Chemicals (1)
    Genes (1)
    Human Disease Models (1)
    Natural transposons (1)
    Insertions (3)
    Transgenic Constructs (2)