单倍率不足
智力残疾
生物
小头畸形
胼胝体
微缺失综合征
神经科学
转录因子
遗传学
自闭症谱系障碍
自闭症
表型
神经发育障碍
基因
抑制因子
心理学
发展心理学
作者
J.S. Witteveen,Marjolein H. Willemsen,Thaís Caroline Dallabona Dombroski,Nick H. M. van Bakel,Willy M. Nillesen,Josephus A. van Hulten,Eric J. R. Jansen,Dave Verkaik,Hermine E. Veenstra‐Knol,Conny M.A. van Ravenswaaij‐Arts,Jolien S. Klein Wassink‐Ruiter,Marie Vincent,Albert David,Cédric Le Caignec,Jolanda Schieving,Christian Gilissen,Nicola Foulds,Patrick Rump,Tim M. Strom,Kirsten Cremer
出处
期刊:Nature Genetics
[Nature Portfolio]
日期:2016-07-11
卷期号:48 (8): 877-887
被引量:126
摘要
Numerous genes are associated with neurodevelopmental disorders such as intellectual disability and autism spectrum disorder (ASD), but their dysfunction is often poorly characterized. Here we identified dominant mutations in the gene encoding the transcriptional repressor and MeCP2 interactor switch-insensitive 3 family member A (SIN3A; chromosome 15q24.2) in individuals who, in addition to mild intellectual disability and ASD, share striking features, including facial dysmorphisms, microcephaly and short stature. This phenotype is highly related to that of individuals with atypical 15q24 microdeletions, linking SIN3A to this microdeletion syndrome. Brain magnetic resonance imaging showed subtle abnormalities, including corpus callosum hypoplasia and ventriculomegaly. Intriguingly, in vivo functional knockdown of Sin3a led to reduced cortical neurogenesis, altered neuronal identity and aberrant corticocortical projections in the developing mouse brain. Together, our data establish that haploinsufficiency of SIN3A is associated with mild syndromic intellectual disability and that SIN3A can be considered to be a key transcriptional regulator of cortical brain development.
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