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1.
Brain Dev ; 37(6): 638-42, 2015 Jun.
Article in English | MEDLINE | ID: mdl-25457085

ABSTRACT

Vanishing white matter disease (VWM)/childhood ataxia with central hypomyelination (CACH) is an autosomal recessive leukoencephalopathy caused by mutations in one of five genes, EIF2B1-5, encoding the 5 subunits of eukaryotic translation initiation factor 2B (eIF2B). The classical phenotype is characterized by early childhood onset and chronic progressive neurological deterioration with cerebellar ataxia, spasticity, optic atrophy and epilepsy. However, the onset of disease varies from antenatal period to adulthood. Cree leukoencephalopathy (CLE) is a severe variant of VWM and caused by a homozygous mutation (R195H) in the EIF2B5 gene. The patient reported in this study developed lethargy, vomiting and seizure 3days after an oral poliovirus vaccination at the age of 4months. She presented with rapid neurological deterioration within a month of onset. Brain MRI showed abnormal white matter intensity. Whole-exome sequencing identified two heterozygous mutations in the EIF2B5 gene: a known mutation, c.584G>A (R195H, which is homozygous in CLE), and a novel mutation, c.1223T>C (I408T, which resides in the "I-patch"). Mutations in the "I-patch" encoded region of eIF2Bε may be related to an early-infantile onset phenotype. This patient exhibits an early-infantile onset and progressive disease course resembling CLE, suggesting a severe functional disruption of eIF2Bε caused by R195H as well as by I408T mutations.


Subject(s)
Brain/pathology , Leukoencephalopathies/genetics , Leukoencephalopathies/pathology , White Matter/pathology , Child, Preschool , Eukaryotic Initiation Factor-2B/genetics , Female , Humans , Japan
2.
Mol Genet Metab Rep ; 1: 133-138, 2014.
Article in English | MEDLINE | ID: mdl-27896082

ABSTRACT

Large numbers of genes are responsible for Leigh syndrome (LS), making genetic confirmation of LS difficult. We screened our patients with LS using a limited set of 21 primers encompassing the frequently reported gene for the respiratory chain complexes I (ND1-ND6, and ND4L), IV(SURF1), and V(ATP6) and the pyruvate dehydrogenase E1α-subunit. Of 18 LS patients, we identified mutations in 11 patients, including 7 in mDNA (two with ATP6), 4 in nuclear (three with SURF1). Overall, we identified mutations in 61% of LS patients (11/18 individuals) in this cohort. Sanger sequencing with our limited set of primers allowed us a rapid genetic confirmation of more than half of the LS patients and it appears to be efficient as a primary genetic screening in this cohort.

3.
Brain Dev ; 36(7): 630-3, 2014 Aug.
Article in English | MEDLINE | ID: mdl-24045174

ABSTRACT

Creatine transporter deficiency (CTD) is an example of X-linked intellectual disability syndromes, caused by mutations in SLC6A8 on Xq28. Although this is the second most frequent genetic cause of intellectual disabilities in Europe or America after Fragile X syndrome, information on the morbidity of this disease is limited in Japan. Using the HPLC screening method we have established recently, we examined samples of urine of 105 patients (73 males and 32 females) with developmental disabilities at our medical center. And we have found a family with three ID boys with a novel missense mutation in SLC6A8. This is the second report of a Japanese family case of CTD. A systematic diagnostic system of this syndrome should be established in Japan to enable us to estimate its frequency and treatment.


Subject(s)
Brain Diseases, Metabolic, Inborn/diagnosis , Brain Diseases, Metabolic, Inborn/genetics , Creatine/deficiency , Developmental Disabilities/genetics , Mental Retardation, X-Linked/diagnosis , Mental Retardation, X-Linked/genetics , Nerve Tissue Proteins/genetics , Plasma Membrane Neurotransmitter Transport Proteins/deficiency , Asian People , Brain Diseases, Metabolic, Inborn/complications , Brain Diseases, Metabolic, Inborn/urine , Child , Creatine/genetics , Creatine/urine , Developmental Disabilities/complications , Humans , Male , Mental Retardation, X-Linked/complications , Mental Retardation, X-Linked/urine , Mutation, Missense , Pedigree , Plasma Membrane Neurotransmitter Transport Proteins/genetics , Plasma Membrane Neurotransmitter Transport Proteins/urine
4.
Neurology ; 81(11): 992-8, 2013 Sep 10.
Article in English | MEDLINE | ID: mdl-23935176

ABSTRACT

OBJECTIVE: We aimed to investigate the possible association between SCN2A mutations and early-onset epileptic encephalopathies (EOEEs). METHODS: We recruited a total of 328 patients with EOEE, including 67 patients with Ohtahara syndrome (OS) and 150 with West syndrome. SCN2A mutations were examined using high resolution melt analysis or whole exome sequencing. RESULTS: We found 14 novel SCN2A missense mutations in 15 patients: 9 of 67 OS cases (13.4%), 1 of 150 West syndrome cases (0.67%), and 5 of 111 with unclassified EOEEs (4.5%). Twelve of the 14 mutations were confirmed as de novo, and all mutations were absent in 212 control exomes. A de novo mosaic mutation (c.3976G>C) with a mutant allele frequency of 18% was detected in one patient. One mutation (c.634A>G) was found in transcript variant 3, which is a neonatal isoform. All 9 mutations in patients with OS were located in linker regions between 2 transmembrane segments. In 7 of the 9 patients with OS, EEG findings transitioned from suppression-burst pattern to hypsarrhythmia. All 15 of the patients with novel SCN2A missense mutations had intractable seizures; 3 of them were seizure-free at the last medical examination. All patients showed severe developmental delay. CONCLUSIONS: Our study confirmed that SCN2A mutations are an important genetic cause of OS. Given the wide clinical spectrum associated with SCN2A mutations, genetic testing for SCN2A should be considered for children with different epileptic conditions.


Subject(s)
Brain/pathology , Brain/physiopathology , Mutation/genetics , NAV1.2 Voltage-Gated Sodium Channel/genetics , Spasms, Infantile , Electroencephalography , Female , Humans , Infant , Infant, Newborn , Magnetic Resonance Imaging , Male , Spasms, Infantile/genetics , Spasms, Infantile/pathology , Spasms, Infantile/physiopathology
5.
Pediatr Neurol ; 47(3): 198-200, 2012 Sep.
Article in English | MEDLINE | ID: mdl-22883285

ABSTRACT

A 4-year-old boy presented with a sudden onset of nasal escape of fluids, nasal speech, and difficulty placing his left arm through a sleeve. Neurologic examination indicated a unilateral cranial IX and X and contralateral XI nerve palsy that was considered idiopathic. Palsy of cranial nerves IX, X, and XI is rare in childhood, and few reports have described this condition. Our patient received prednisolone for 1 week and demonstrated complete recovery within several weeks. We suggest that aggressive therapy is unnecessary for patients with idiopathic cranial polyneuropathy. The pathogenesis of this condition may involve an immunologic mechanism.


Subject(s)
Accessory Nerve Diseases/drug therapy , Accessory Nerve Diseases/pathology , Glossopharyngeal Nerve Diseases/drug therapy , Glossopharyngeal Nerve Diseases/pathology , Polyneuropathies/drug therapy , Polyneuropathies/pathology , Vagus Nerve Diseases/drug therapy , Vagus Nerve Diseases/pathology , Accessory Nerve Diseases/physiopathology , Anti-Inflammatory Agents/therapeutic use , Child, Preschool , Functional Laterality , Glossopharyngeal Nerve Diseases/physiopathology , Humans , Male , Muscle Weakness/etiology , Palatal Muscles/pathology , Paralysis/etiology , Polyneuropathies/physiopathology , Prednisolone/therapeutic use , Uvula/abnormalities , Vagus Nerve Diseases/physiopathology
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