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  • Epigenetic regulation of au... Epigenetic regulation of autophagy-related genes: Implications for neurodevelopmental disorders
    Lewerissa, Elly I.; Nadif Kasri, Nael; Linda, Katrin Autophagy, 01/2024, Volume: 20, Issue: 1
    Journal Article
    Peer reviewed
    Open access

    Macroautophagy/autophagy is an evolutionarily highly conserved catabolic process that is important for the clearance of cytosolic contents to maintain cellular homeostasis and survival. Recent ...
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  • SCN1A-deficient excitatory ... SCN1A-deficient excitatory neuronal networks display mutation-specific phenotypes
    van Hugte, Eline J H; Lewerissa, Elly I; Wu, Ka Man ... Brain, 12/2023, Volume: 146, Issue: 12
    Journal Article
    Peer reviewed
    Open access

    Dravet syndrome is a severe epileptic encephalopathy, characterized by (febrile) seizures, behavioural problems and developmental delay. Eighty per cent of patients with Dravet syndrome have a ...
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  • Imbalanced autophagy causes... Imbalanced autophagy causes synaptic deficits in a human model for neurodevelopmental disorders
    Linda, Katrin; Lewerissa, Elly I.; Verboven, Anouk H. A. ... Autophagy, 02/2022, Volume: 18, Issue: 2
    Journal Article
    Peer reviewed
    Open access

    Macroautophagy (hereafter referred to as autophagy) is a finely tuned process of programmed degradation and recycling of proteins and cellular components, which is crucial in neuronal function and ...
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  • Histone Methylation by the ... Histone Methylation by the Kleefstra Syndrome Protein EHMT1 Mediates Homeostatic Synaptic Scaling
    Benevento, Marco; Iacono, Giovanni; Selten, Martijn ... Neuron, 07/2016, Volume: 91, Issue: 2
    Journal Article
    Peer reviewed
    Open access

    Homeostatic plasticity, a form of synaptic plasticity, maintains the fine balance between overall excitation and inhibition in developing and mature neuronal networks. Although the synaptic ...
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  • Loss-of-function variants i... Loss-of-function variants in the schizophrenia risk gene SETD1A alter neuronal network activity in human neurons through the cAMP/PKA pathway
    Wang, Shan; Rhijn, Jon-Ruben van; Akkouh, Ibrahim ... Cell reports (Cambridge), 05/2022, Volume: 39, Issue: 5
    Journal Article
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    Open access

    Heterozygous loss-of-function (LoF) mutations in SETD1A, which encodes a subunit of histone H3 lysine 4 methyltransferase, cause a neurodevelopmental syndrome and increase the risk for schizophrenia. ...
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  • Neuronal network activity a... Neuronal network activity and connectivity are impaired in a conditional knockout mouse model with PCDH19 mosaic expression
    Giansante, Giorgia; Mazzoleni, Sara; Zippo, Antonio G ... Molecular psychiatry, 03/2023
    Journal Article
    Peer reviewed
    Open access

    Mutations in PCDH19 gene, which encodes protocadherin-19 (PCDH19), cause Developmental and Epileptic Encephalopathy 9 (DEE9). Heterogeneous loss of PCDH19 expression in neurons is considered a key ...
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  • The epilepsy-associated pro... The epilepsy-associated protein PCDH19 undergoes NMDA receptor-dependent proteolytic cleavage and regulates the expression of immediate-early genes
    Gerosa, Laura; Mazzoleni, Sara; Rusconi, Francesco ... Cell reports, 05/2022, Volume: 39, Issue: 8
    Journal Article
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    Open access

    Protocadherin-19 (PCDH19) is a synaptic cell-adhesion molecule encoded by X-linked PCDH19, a gene linked with epilepsy. Here, we report a synapse-to-nucleus signaling pathway through which PCDH19 ...
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  • ANK2 loss-of-function varia... ANK2 loss-of-function variants are associated with epilepsy, and lead to impaired axon initial segment plasticity and hyperactive network activity in hiPSC-derived neuronal networks
    Teunissen, Maria W A; Lewerissa, Elly; van Hugte, Eline J H ... Human molecular genetics, 07/2023, Volume: 32, Issue: 14
    Journal Article
    Peer reviewed
    Open access

    Abstract Purpose To characterize a novel neurodevelopmental syndrome due to loss-of-function (LoF) variants in Ankyrin 2 (ANK2), and to explore the effects on neuronal network dynamics and ...
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