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1.
Am J Med Genet A ; 188(8): 2331-2338, 2022 08.
Article in English | MEDLINE | ID: mdl-35686685

ABSTRACT

The recent finding that some patients with fetal akinesia deformation sequence (FADS) carry variants in the TUBB2B gene has prompted us to add to the existing literature a first description of two fetal FADS cases carrying TUBA1A variants. Hitherto, only isolated cortical malformations have been described with TUBA1A mutation, including microlissencephaly, lissencephaly, central pachygyria and polymicrogyria-like cortical dysplasia, generalized polymicrogyria cortical dysplasia, and/or the "simplified" gyral pattern. The neuropathology of our fetal cases shows several common features of tubulinopathies, in particular, the dysmorphism of the basal ganglia, as the most pathognomonic sign. The cortical ribbon anomalies were extremely severe and concordant with the complex cortical malformation. In conclusion, we broaden the phenotypic spectrum of TUBA1A variants, to include FADS.


Subject(s)
Arthrogryposis , Lissencephaly , Malformations of Cortical Development , Polymicrogyria , Arthrogryposis/diagnosis , Arthrogryposis/genetics , Humans , Lissencephaly/genetics , Malformations of Cortical Development/genetics , Mutation , Tubulin/genetics
2.
Taiwan J Obstet Gynecol ; 61(2): 382-384, 2022 Mar.
Article in English | MEDLINE | ID: mdl-35361407

ABSTRACT

OBJECTIVE: Uniparental disomy (UPD) is one of the common causes of imprinting disorders, which can have an impact on gene expression according to the origin of the parental chromosome. Paternal UPD14 leads to Kagami-Ogata syndrome (KOS), which has a more severe phenotype than maternal UPD14, also called Temple syndrome. Small supernumerary marker chromosomes (SSMCs) are defined as structural chromosomal abnormalities that may be inherited or come from micronucleus-mediated chromothripsis. The association of UPD and SSMC is very rare but not fortuitous and several mechanisms can explain this phenomenon. CASE REPORT: We report the first prenatal case of paternal isodisomy for chromosome 14 associated with a de novo SSMC originating from chromosome 15 and revealed by KOS. The mechanism could be a chromothripsis mediated by trisomy rescue. CONCLUSION: Regarding this case, in relation to a de novo SSMC, it could be important to extend the research of UPD to other acrocentric chromosomes if ultrasound signs are evocative.


Subject(s)
Chromosomes, Human, Pair 15 , Uniparental Disomy , Chromosomes , Chromosomes, Human, Pair 14 , Female , Genetic Markers , Humans , Pregnancy , Uniparental Disomy/genetics
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