Wnt/Beta-Catenin Pathway And Cell Adhesion Deregulation In Csde1-Related Intellectual Disability And Autism Spectrum Disorders

E El Khouri,J Ghoumid, D Haye,F Giuliano, L Drevillon, A Briand-Suleau,P De La Grange, V Nau, T Gaillon,T Bienvenu, H Jacquemin-Sablon, M Goossens, S Amselem,I Giurgea

MOLECULAR PSYCHIATRY(2021)

引用 7|浏览4
暂无评分
摘要
Among the genetic factors playing a key role in the etiology of intellectual disabilities (IDs) and autism spectrum disorders (ASDs), several encode RNA-binding proteins (RBPs). In this study, we deciphered the molecular and cellular bases of ID-ASD in a patient followed from birth to the age of 21, in whom we identified a de novo CSDE1 (Cold Shock Domain-containing E1) nonsense variation. CSDE1 encodes an RBP that regulates multiple cellular pathways by monitoring the translation and abundance of target transcripts. Analyses performed on the patient's primary fibroblasts showed that the identified CSDE1 variation leads to haploinsufficiency. We identified through RNA-seq assays the Wnt/beta-catenin signaling and cellular adhesion as two major deregulated pathways. These results were further confirmed by functional studies involving Wnt-specific luciferase and substrate adhesion assays. Additional data support a disease model involving APC Down-Regulated-1 (APCDD1) and cadherin-2 (CDH2), two components of the Wnt/beta-catenin pathway, CDH2 being also pivotal for cellular adhesion. Our study, which relies on both the deep phenotyping and long-term follow-up of a patient with CSDE1 haploinsufficiency and on ex vivo studies, sheds new light on the CSDE1-dependent deregulated pathways in ID-ASD.
更多
查看译文
关键词
Autism spectrum disorders,Biochemistry,Cell biology,Genetics,Molecular biology,Medicine/Public Health,general,Psychiatry,Neurosciences,Behavioral Sciences,Pharmacotherapy,Biological Psychology
AI 理解论文
溯源树
样例
生成溯源树,研究论文发展脉络
Chat Paper
正在生成论文摘要