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zadetkov: 161
31.
  • CACNA1I gain-of-function mu... CACNA1I gain-of-function mutations differentially affect channel gating and cause neurodevelopmental disorders
    El Ghaleb, Yousra; Schneeberger, Pauline E; Fernández-Quintero, Monica L ... Brain, 08/2021, Letnik: 144, Številka: 7
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    T-type calcium channels (Cav3.1 to Cav3.3) regulate low-threshold calcium spikes, burst firing and rhythmic oscillations of neurons and are involved in sensory processing, sleep, and hormone and ...
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32.
  • Lessons learned from additi... Lessons learned from additional research analyses of unsolved clinical exome cases
    Eldomery, Mohammad K; Coban-Akdemir, Zeynep; Harel, Tamar ... Genome medicine, 03/2017, Letnik: 9, Številka: 1
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    Given the rarity of most single-gene Mendelian disorders, concerted efforts of data exchange between clinical and scientific communities are critical to optimize molecular diagnosis and novel disease ...
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33.
  • Ketogenic diet ameliorates ... Ketogenic diet ameliorates axonal defects and promotes myelination in Pelizaeus–Merzbacher disease
    Stumpf, Sina K.; Berghoff, Stefan A.; Trevisiol, Andrea ... Acta neuropathologica, 07/2019, Letnik: 138, Številka: 1
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    Pelizaeus–Merzbacher disease (PMD) is an untreatable and fatal leukodystrophy. In a model of PMD with perturbed blood–brain barrier integrity, cholesterol supplementation promotes myelin membrane ...
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34.
  • Truncating SRCAP variants o... Truncating SRCAP variants outside the Floating-Harbor syndrome locus cause a distinct neurodevelopmental disorder with a specific DNA methylation signature
    Rots, Dmitrijs; Chater-Diehl, Eric; Dingemans, Alexander J.M. ... American journal of human genetics, 06/2021, Letnik: 108, Številka: 6
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    Truncating variants in exons 33 and 34 of the SNF2-related CREBBP activator protein (SRCAP) gene cause the neurodevelopmental disorder (NDD) Floating-Harbor syndrome (FLHS), characterized by short ...
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35.
  • Single substitution in H3.3... Single substitution in H3.3G34 alters DNMT3A recruitment to cause progressive neurodegeneration
    Khazaei, Sima; Chen, Carol C.L.; Andrade, Augusto Faria ... Cell, 03/2023, Letnik: 186, Številka: 6
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    Germline histone H3.3 amino acid substitutions, including H3.3G34R/V, cause severe neurodevelopmental syndromes. To understand how these mutations impact brain development, we generated H3.3G34R/V/W ...
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  • Development of the “Hamburg... Development of the “Hamburg Best Practice Guidelines for ICV−Enzyme Replacement therapy (ERT) in CLN2 Disease” Based on 6 Years Treatment Experience in 48 Patients
    Schwering, Christoph; Kammler, Gertrud; Wibbeler, Eva ... Journal of child neurology, 07/2021, Letnik: 36, Številka: 8
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    Intracerebroventricular enzyme replacement therapy (ICV-ERT) for CLN2 disease represents the first approved treatment for neuronal ceroid lipofuscinosis (NCL) diseases. It is the first treatment ...
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37.
  • Evaluation of Children with... Evaluation of Children with SMA Type 1 Under Treatment with Nusinersen within the Expanded Access Program in Germany
    Pechmann, Astrid; Langer, Thorsten; Schorling, David ... Journal of neuromuscular diseases, 2018, Letnik: 5, Številka: 2
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    Spinal muscular atrophy (SMA) is a neuromuscular disorder characterized by muscle weakness and muscle atrophy. Nusinersen acts as a splicing modifier and has recently been approved for intrathecal ...
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38.
  • Cognitive function in SMA p... Cognitive function in SMA patients with 2 or 3 SMN2 copies treated with SMN-modifying or gene addition therapy during the first year of life
    Steffens, Paula; Weiss, Deike; Perez, Anna ... European journal of paediatric neurology, 07/2024, Letnik: 51
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    Spinal muscular atrophy (SMA) is a neuromuscular disease, causing progressive muscle weakness due to loss of lower motoneurons. Since 2017, three therapies, two modifying gene transcription and one ...
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  • Biallelic loss-of-function ... Biallelic loss-of-function variants of SLC12A9 cause lysosome dysfunction and a syndromic neurodevelopmental disorder
    Accogli, Andrea; Park, Young N.; Lenk, Guy M. ... Genetics in medicine, 20/May , Letnik: 26, Številka: 5
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    Pathogenic variants of FIG4 generate enlarged lysosomes and neurological and developmental disorders. To identify additional genes regulating lysosomal volume, we carried out a genome-wide activation ...
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