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1.
J Intellect Disabil Res ; 64(12): 956-969, 2020 12.
Article in English | MEDLINE | ID: mdl-33034087

ABSTRACT

BACKGROUND: Ultrarare Marshall-Smith and Malan syndromes, caused by changes of the gene nuclear factor I X (NFIX), are characterised by intellectual disability (ID) and behavioural problems, although questions remain. Here, development and behaviour are studied and compared in a cross-sectional study, and results are presented with genetic findings. METHODS: Behavioural phenotypes are compared of eight individuals with Marshall-Smith syndrome (three male individuals) and seven with Malan syndrome (four male individuals). Long-term follow-up assessment of cognition and adaptive behaviour was possible in three individuals with Marshall-Smith syndrome. RESULTS: Marshall-Smith syndrome individuals have more severe ID, less adaptive behaviour, more impaired speech and less reciprocal interaction compared with individuals with Malan syndrome. Sensory processing difficulties occur in both syndromes. Follow-up measurement of cognition and adaptive behaviour in Marshall-Smith syndrome shows different individual learning curves over time. CONCLUSIONS: Results show significant between and within syndrome variability. Different NFIX variants underlie distinct clinical phenotypes leading to separate entities. Cognitive, adaptive and sensory impairments are common in both syndromes and increase the risk of challenging behaviour. This study highlights the value of considering behaviour within developmental and environmental context. To improve quality of life, adaptations to environment and treatment are suggested to create a better person-environment fit.


Subject(s)
Abnormalities, Multiple/epidemiology , Abnormalities, Multiple/physiopathology , Bone Diseases, Developmental/epidemiology , Bone Diseases, Developmental/physiopathology , Craniofacial Abnormalities/epidemiology , Craniofacial Abnormalities/physiopathology , Intellectual Disability/epidemiology , Intellectual Disability/physiopathology , Mental Disorders/epidemiology , Septo-Optic Dysplasia/epidemiology , Septo-Optic Dysplasia/physiopathology , Speech Disorders/epidemiology , Adaptation, Psychological , Adolescent , Adult , Child , Child, Preschool , Comorbidity , Cross-Sectional Studies , Female , Follow-Up Studies , Humans , Male , Mental Disorders/physiopathology , Netherlands/epidemiology , Phenotype , Speech Disorders/physiopathology , Syndrome , Young Adult
2.
Neurology ; 69(5): 442-7, 2007 Jul 31.
Article in English | MEDLINE | ID: mdl-17664403

ABSTRACT

BACKGROUND: Lissencephaly is a neuronal migration disorder leading to absent or reduced gyration and a broadened but poorly organized cortex. The most common form of lissencephaly is isolated, referred as classic or type 1 lissencephaly. Type 1 lissencephaly is mostly associated with a heterozygous deletion of the entire LIS1 gene, whereas intragenic heterozygous LIS1 mutations or hemizygous DCX mutations in males are less common. METHODS: Eighteen unrelated patients with type 1 lissencephaly were clinically and genetically assessed. In addition, patients with subcortical band heterotopia (n = 1) or lissencephaly with cerebellar hypoplasia (n = 2) were included. RESULTS: Fourteen new and seven previously described LIS1 mutations were identified. We observed nine truncating mutations (nonsense, n = 2; frameshift, n = 7), six splice site mutations, five missense mutations, and one in-frame deletion. Somatic mosaicism was assumed in three patients with partial subcortical band heterotopia in the occipital-parietal lobes or mild pachygyria. We report three mutations in exon 11, including a frameshift which extends the LIS1 protein, leading to type 1 lissencephaly and illustrating the functional importance of the WD domains at the C terminus. Furthermore, we present two patients with novel LIS1 mutations in exon 10 associated with lissencephaly with cerebellar hypoplasia type a. CONCLUSION: In contrast to previous reports, our data suggest that neither type nor position of intragenic mutations in the LIS1 gene allows an unambiguous prediction of the phenotypic severity. Furthermore, patients presenting with mild cerebral malformations such as subcortical band heterotopia or cerebellar hypoplasia should be considered for genetic analysis of the LIS1 gene.


Subject(s)
1-Alkyl-2-acetylglycerophosphocholine Esterase/genetics , Cerebral Cortex/abnormalities , Genetic Predisposition to Disease/genetics , Microtubule-Associated Proteins/genetics , Mutation/genetics , Nervous System Malformations/genetics , Adolescent , Adult , Cell Movement/genetics , Cerebellum/abnormalities , Cerebral Cortex/metabolism , Cerebral Cortex/physiopathology , Child , Child, Preschool , Choristoma/genetics , Choristoma/metabolism , DNA Mutational Analysis , Female , Genetic Markers/genetics , Genetic Testing , Genotype , Humans , Infant , Male , Nervous System Malformations/metabolism , Nervous System Malformations/physiopathology , Penetrance , Phenotype
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