Literature DB >> 33425807

Case Report: A de novo CTNNB1 Nonsense Mutation Associated With Neurodevelopmental Disorder, Retinal Detachment, Polydactyly.

Zhongling Ke1, Yanhui Chen1.   

Abstract

CTNNB1 gene mutation was firstly reported related to intellectual disability in 2012, to explore the clinical phenotype and genotype characteristics of CTNNB1 mutation, we collected and analyzed the clinical data of a child with a neurodevelopmental disorder caused by a mutation of CTNNB1. The child had dysmorphic features, microcephaly, hypotonia, polydactyly, retinal detachment, and neurodevelopmental disorder, with a de novo mutation of CTNNB1 c.1603C > T, p.R535X. The patient was diagnosed as Neurodevelopmental disorder with spastic diplegia and visual defects (NEDSDV) and was given rehabilitation training. After 4 months of rehabilitation training, she improved in gross motor function. We found that CTNNB1 mutation can cause neurodevelopmental disorder, which could be accompanied by retinal detachment and polydactyly. The retinal detachment had only been reported in two Asian patients, and we firstly reported the phenotype of polydactyly in the CTNNB1 mutation. This report not only helps to expand the clinical phenotype spectrum of the CTNNB1 gene mutation but also prompts a new insight into genetic diagnosis in patients with a neurodevelopmental disorder, retinal detachment, and polydactyly.
Copyright © 2020 KE and CHEN.

Entities:  

Keywords:  CTNNB1 gene; case report; neurodevolpmental disorder; polydactyly; retinal detachment

Year:  2020        PMID: 33425807      PMCID: PMC7793974          DOI: 10.3389/fped.2020.575673

Source DB:  PubMed          Journal:  Front Pediatr        ISSN: 2296-2360            Impact factor:   3.418


  2 in total

1.  The extended clinical and genetic spectrum of CTNNB1-related neurodevelopmental disorder.

Authors:  Seungbok Lee; Se Song Jang; Soojin Park; Jihoon G Yoon; Soo Yeon Kim; Byung Chan Lim; Jong Hee Chae
Journal:  Front Pediatr       Date:  2022-07-22       Impact factor: 3.569

2.  Exome Sequencing Reveals Novel Variants and Expands the Genetic Landscape for Congenital Microcephaly.

Authors:  Mateusz Dawidziuk; Tomasz Gambin; Ewelina Bukowska-Olech; Dorota Antczak-Marach; Magdalena Badura-Stronka; Piotr Buda; Edyta Budzynska; Jennifer Castaneda; Tatiana Chilarska; Elzbieta Czyzyk; Anna Eckersdorf-Mastalerz; Jolanta Fijak-Moskal; Dorota Gieruszczak-Bialek; Ewelina Glodek-Brzozowska; Alicja Goszczanska-Ciuchta; Malgorzata Grzeszykowska-Podymniak; Barbara Gurda; Anna Jakubiuk-Tomaszuk; Ewa Jamroz; Magdalena Janeczko; Dominika Jedlińska-Pijanowska; Marta Jurek; Dagmara Karolewska; Adela Kazmierczak; Teresa Kleist; Iwona Kochanowska; Malgorzata Krajewska-Walasek; Katarzyna Kufel; Anna Kutkowska-Kaźmierczak; Agata Lipiec; Dorota Maksym-Gasiorek; Anna Materna-Kiryluk; Hanna Mazurkiewicz; Michał Milewski; Tatsiana Pavina-Guglas; Aleksandra Pietrzyk; Renata Posmyk; Antoni Pyrkosz; Mariola Rudzka-Dybala; Ryszard Slezak; Marzena Wisniewska; Zofia Zalewska-Miszkurka; Elzbieta Szczepanik; Ewa Obersztyn; Monika Bekiesinska-Figatowska; Pawel Gawlinski; Wojciech Wiszniewski
Journal:  Genes (Basel)       Date:  2021-12-18       Impact factor: 4.096

  2 in total

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