FB2025_04 , released October 2, 2025
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Paul, M.S., Michener, S.L., Pan, H., Chan, H., Pfliger, J.M., Rosenfeld, J.A., Lerma, V.C., Tran, A., Longley, M.A., Lewis, R.A., Weisz-Hubshman, M., Bekheirnia, M.R., Bekheirnia, N., Massingham, L., Zech, M., Wagner, M., Engels, H., Cremer, K., Mangold, E., Peters, S., Trautmann, J., Mester, J.L., Guillen Sacoto, M.J., Person, R., McDonnell, P.P., Cohen, S.R., Lusk, L., Cohen, A.S.A., Le Pichon, J.B., Pastinen, T., Zhou, D., Engleman, K., Racine, C., Faivre, L., Moutton, S., Denommé-Pichon, A.S., Koh, H.Y., Poduri, A., Bolton, J., Knopp, C., Julia Suh, D.S., Maier, A., Toosi, M.B., Karimiani, E.G., Maroofian, R., Schaefer, G.B., Ramakumaran, V., Vasudevan, P., Prasad, C., Osmond, M., Schuhmann, S., Vasileiou, G., Russ-Hall, S., Scheffer, I.E., Carvill, G.L., Mefford, H., Undiagnosed Diseases Network, , Bacino, C.A., Lee, B.H., Chao, H.T. (2024). A syndromic neurodevelopmental disorder caused by rare variants in PPFIA3.  Am. J. Hum. Genet. 111(1): 96--118.
FlyBase ID
FBrf0258489
Publication Type
Research paper
Abstract
PPFIA3 encodes the protein-tyrosine phosphatase, receptor-type, F-polypeptide-interacting-protein-alpha-3 (PPFIA3), which is a member of the LAR-protein-tyrosine phosphatase-interacting-protein (liprin) family involved in synapse formation and function, synaptic vesicle transport, and presynaptic active zone assembly. The protein structure and function are evolutionarily well conserved, but human diseases related to PPFIA3 dysfunction are not yet reported in OMIM. Here, we report 20 individuals with rare PPFIA3 variants (19 heterozygous and 1 compound heterozygous) presenting with developmental delay, intellectual disability, hypotonia, dysmorphisms, microcephaly or macrocephaly, autistic features, and epilepsy with reduced penetrance. Seventeen unique PPFIA3 variants were detected in 18 families. To determine the pathogenicity of PPFIA3 variants in vivo, we generated transgenic fruit flies producing either human wild-type (WT) PPFIA3 or five missense variants using GAL4-UAS targeted gene expression systems. In the fly overexpression assays, we found that the PPFIA3 variants in the region encoding the N-terminal coiled-coil domain exhibited stronger phenotypes compared to those affecting the C-terminal region. In the loss-of-function fly assay, we show that the homozygous loss of fly Liprin-α leads to embryonic lethality. This lethality is partially rescued by the expression of human PPFIA3 WT, suggesting human PPFIA3 function is partially conserved in the fly. However, two of the tested variants failed to rescue the lethality at the larval stage and one variant failed to rescue lethality at the adult stage. Altogether, the human and fruit fly data reveal that the rare PPFIA3 variants are dominant-negative loss-of-function alleles that perturb multiple developmental processes and synapse formation.
PubMed ID
PubMed Central ID
PMC10806447 (PMC) (EuropePMC)
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Secondary IDs
    Language of Publication
    English
    Additional Languages of Abstract
    Parent Publication
    Publication Type
    Journal
    Abbreviation
    Am. J. Hum. Genet.
    Title
    American Journal of Human Genetics
    Publication Year
    1949-
    ISBN/ISSN
    0002-9297
    Data From Reference