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  • Mutations in the HECT domai... Mutations in the HECT domain of NEDD4L lead to AKT-mTOR pathway deregulation and cause periventricular nodular heterotopia
    Broix, Loïc; Jagline, Hélène; Ivanova, Ekaterina ... Nature genetics, 11/2016, Volume: 48, Issue: 11
    Journal Article
    Peer reviewed
    Open access

    Neurodevelopmental disorders with periventricular nodular heterotopia (PNH) are etiologically heterogeneous, and their genetic causes remain in many cases unknown. Here we show that missense ...
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  • Ciliogenesis and cell cycle... Ciliogenesis and cell cycle alterations contribute to KIF2A-related malformations of cortical development
    Broix, Loïc; Asselin, Laure; Silva, Carla G ... Human molecular genetics, 01/2018, Volume: 27, Issue: 2
    Journal Article, Web Resource
    Peer reviewed
    Open access

    Abstract Genetic findings reported by our group and others showed that de novo missense variants in the KIF2A gene underlie malformations of brain development called pachygyria and microcephaly. ...
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  • TUBG1 missense variants und... TUBG1 missense variants underlying cortical malformations disrupt neuronal locomotion and microtubule dynamics but not neurogenesis
    Ivanova, Ekaterina L; Gilet, Johan G; Sulimenko, Vadym ... Nature communications, 05/2019, Volume: 10, Issue: 1
    Journal Article
    Peer reviewed
    Open access

    De novo heterozygous missense variants in the γ-tubulin gene TUBG1 have been linked to human malformations of cortical development associated with intellectual disability and epilepsy. Here, we ...
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  • Conditional switching of KI... Conditional switching of KIF2A mutation provides new insights into cortical malformation pathogeny
    Gilet, Johan G; Ivanova, Ekaterina L; Trofimova, Daria ... Human molecular genetics, 03/2020, Volume: 29, Issue: 5
    Journal Article
    Peer reviewed
    Open access

    Abstract By using the Cre-mediated genetic switch technology, we were able to successfully generate a conditional knock-in mouse, bearing the KIF2A p.His321Asp missense point variant, identified in a ...
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  • CD44 expressed by myeloid c... CD44 expressed by myeloid cells promotes glioma invasion
    Ivanova, Ekaterina L.; Costa, Barbara; Eisemann, Tanja ... Frontiers in oncology, 08/2022, Volume: 12
    Journal Article
    Peer reviewed
    Open access

    Glioblastoma multiforme (GBM) is one of the most common and malignant brain tumors in adulthood with a median survival of only 15 months. This poor prognosis is related to GBM’s ability to ...
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  • Homozygous Truncating Varia... Homozygous Truncating Variants in TBC1D23 Cause Pontocerebellar Hypoplasia and Alter Cortical Development
    Ivanova, Ekaterina L.; Mau-Them, Frédéric Tran; Riazuddin, Saima ... American journal of human genetics, 09/2017, Volume: 101, Issue: 3
    Journal Article
    Peer reviewed
    Open access

    Pontocerebellar hypoplasia (PCH) is a heterogeneous group of rare recessive disorders with prenatal onset, characterized by hypoplasia of pons and cerebellum. Mutations in a small number of genes ...
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  • A Set of Cell Lines Derived... A Set of Cell Lines Derived from a Genetic Murine Glioblastoma Model Recapitulates Molecular and Morphological Characteristics of Human Tumors
    Costa, Barbara; Fletcher, Michael N C; Boskovic, Pavle ... Cancers, 01/2021, Volume: 13, Issue: 2
    Journal Article
    Peer reviewed
    Open access

    Glioblastomas (GBM) are the most aggressive tumors affecting the central nervous system in adults, causing death within, on average, 15 months after diagnosis. Immunocompetent in-vivo models that ...
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  • Activation of Wnt/β-catenin... Activation of Wnt/β-catenin signaling is critical for the tumorigenesis of choroid plexus
    Hoa Ho, Kim; Trapp, Marleen; Guida, Catello ... Neuro-oncology (Charlottesville, Va.), 08/2024
    Journal Article
    Peer reviewed

    Abstract Background Choroid plexus (ChP) is the secretory epithelial structure located in brain ventricles. Choroid plexus tumors (CPTs) are rare neoplasms predominantly occurring in young patients ...
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  • ZMIZ1 Variants Cause a Synd... ZMIZ1 Variants Cause a Syndromic Neurodevelopmental Disorder
    Carapito, Raphael; Ivanova, Ekaterina L.; Morlon, Aurore ... American journal of human genetics, 02/2019, Volume: 104, Issue: 2
    Journal Article
    Peer reviewed
    Open access

    ZMIZ1 is a coactivator of several transcription factors, including p53, the androgen receptor, and NOTCH1. Here, we report 19 subjects with intellectual disability and developmental delay carrying ...
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