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zadetkov: 187
1.
  • A Peroxisomal Disorder of S... A Peroxisomal Disorder of Severe Intellectual Disability, Epilepsy, and Cataracts Due to Fatty Acyl-CoA Reductase 1 Deficiency
    Buchert, Rebecca; Tawamie, Hasan; Smith, Christopher ... American journal of human genetics, 11/2014, Letnik: 95, Številka: 5
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    Rhizomelic chondrodysplasia punctata (RCDP) is a group of disorders with overlapping clinical features including rhizomelia, chondrodysplasia punctata, coronal clefts, cervical dysplasia, congenital ...
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2.
  • Adaptor Protein Complex 4 D... Adaptor Protein Complex 4 Deficiency Causes Severe Autosomal-Recessive Intellectual Disability, Progressive Spastic Paraplegia, Shy Character, and Short Stature
    JAMRA, Rami Abou; PHILIPPE, Orianne; MUNNICH, Arnold ... American journal of human genetics, 06/2011, Letnik: 88, Številka: 6
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    Intellectual disability inherited in an autosomal-recessive fashion represents an important fraction of severe cognitive-dysfunction disorders. Yet, the extreme heterogeneity of these conditions ...
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3.
  • Mutations in MBOAT7, Encodi... Mutations in MBOAT7, Encoding Lysophosphatidylinositol Acyltransferase I, Lead to Intellectual Disability Accompanied by Epilepsy and Autistic Features
    Johansen, Anide; Rosti, Rasim O.; Musaev, Damir ... American journal of human genetics, 10/2016, Letnik: 99, Številka: 4
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    The risk of epilepsy among individuals with intellectual disability (ID) is approximately ten times that of the general population. From a cohort of >5,000 families affected by neurodevelopmental ...
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4.
  • Autosomal-Recessive Intelle... Autosomal-Recessive Intellectual Disability with Cerebellar Atrophy Syndrome Caused by Mutation of the Manganese and Zinc Transporter Gene SLC39A8
    Boycott, Kym M.; Beaulieu, Chandree L.; Kernohan, Kristin D. ... American journal of human genetics, 12/2015, Letnik: 97, Številka: 6
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    Manganese (Mn) and zinc (Zn) are essential divalent cations used by cells as protein cofactors; various human studies and animal models have demonstrated the importance of Mn and Zn for development. ...
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5.
  • Null mutation in PGAP1 impa... Null mutation in PGAP1 impairing Gpi-anchor maturation in patients with intellectual disability and encephalopathy
    Murakami, Yoshiko; Tawamie, Hasan; Maeda, Yusuke ... PLoS genetics, 05/2014, Letnik: 10, Številka: 5
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    Many eukaryotic cell-surface proteins are anchored to the membrane via glycosylphosphatidylinositol (GPI). There are at least 26 genes involved in biosynthesis and remodeling of GPI anchors. ...
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6.
  • Hypomorphic Mutations in PG... Hypomorphic Mutations in PGAP2, Encoding a GPI-Anchor-Remodeling Protein, Cause Autosomal-Recessive Intellectual Disability
    Hansen, Lars; Tawamie, Hasan; Murakami, Yoshiko ... American journal of human genetics, 04/2013, Letnik: 92, Številka: 4
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    PGAP2 encodes a protein involved in remodeling the glycosylphosphatidylinositol (GPI) anchor in the Golgi apparatus. After synthesis in the endoplasmic reticulum (ER), GPI anchors are transferred to ...
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7.
  • Pontocerebellar hypoplasia ... Pontocerebellar hypoplasia due to bi-allelic variants in MINPP1
    Appelhof, Bart; Wagner, Matias; Hoefele, Julia ... European journal of human genetics : EJHG, 03/2021, Letnik: 29, Številka: 3
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    Pontocerebellar hypoplasia (PCH) describes a group of rare heterogeneous neurodegenerative diseases with prenatal onset. Here we describe eight children with PCH from four unrelated families ...
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8.
  • The genetic landscape of in... The genetic landscape of intellectual disability and epilepsy in adults and the elderly: a systematic genetic work-up of 150 individuals
    Zacher, Pia; Mayer, Thomas; Brandhoff, Frank ... Genetics in medicine, 08/2021, Letnik: 23, Številka: 8
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    Genetic diagnostics of neurodevelopmental disorders with epilepsy (NDDE) are predominantly applied in children, thus limited information is available regarding adults or elderly. We investigated 150 ...
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9.
  • De novo variants in neurodevelopmental disorders with epilepsy
    Heyne, Henrike O; Singh, Tarjinder; Stamberger, Hannah ... Nature genetics, 07/2018, Letnik: 50, Številka: 7
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    Epilepsy is a frequent feature of neurodevelopmental disorders (NDDs), but little is known about genetic differences between NDDs with and without epilepsy. We analyzed de novo variants (DNVs) in ...
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10.
  • Novel congenital disorder o... Novel congenital disorder of O-linked glycosylation caused by GALNT2 loss of function
    Zilmer, Monica; Edmondson, Andrew C; Khetarpal, Sumeet A ... Brain (London, England : 1878), 04/2020, Letnik: 143, Številka: 4
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    Congenital disorders of glycosylation are a growing group of rare genetic disorders caused by deficient protein and lipid glycosylation. Here, we report the clinical, biochemical, and molecular ...
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zadetkov: 187

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