Mutations in chromatin modifier genes are frequently associated with neurodevelopmental diseases. We herein demonstrate that the chromodomain helicase DNA-binding protein 7 (Chd7), frequently associated with CHARGE syndrome, is indispensable for normal cerebellar development. Genetic inactivation of Chd7 in cerebellar granule neuron progenitors leads to cerebellar hypoplasia in mice, due to the impairment of granule neuron differentiation, induction of apoptosis and abnormal localization of Purkinje cells, which closely recapitulates known clinical features in the cerebella of CHARGE patients. Combinatory molecular analyses reveal that Chd7 is required for the maintenance of open chromatin and thus activation of genes essential for granule ...
Tight regulation of gene expression is dependent on interactions of transcription factors and chroma...
Background Mutations in the chromodomain helicase DNA binding protein 7 gene (CHD7) lead to CHARGE s...
Mutations in the gene encoding the ATP dependent chromatin‐remodeling factor, CHD7 are the major cau...
Feng, Weijun et al.Mutations in chromatin modifier genes are frequently associated with neurodevelop...
The mechanisms underlying the neurodevelopmental deficits associated with CHARGE syndrome, which inc...
SummaryChromatin factors that regulate neurogenesis in the central nervous system remain to be explo...
The mechanisms underlying the neurodevelopmental deficits associated with CHARGE syndrome, which inc...
Normal tissue development and maintenance require precise timing and correct localization of gene ex...
Abstract A mutation in the chromatin remodeler chromodomain helicase DNA-binding 7 (CHD7) gene cause...
Heterozygous loss of function mutations in CHD7 (chromodomain helicase DNA-binding protein 7) lead t...
Mutations in CHD7 are the major cause of CHARGE syndrome, an autosomal dominant disorder with an est...
In this issue of Cell Stem Cell, Feng et al. (2013) report that the gene mutated in human CHARGE syn...
Mutations in the chromodomain helicase DNA binding protein 7 gene (CHD7) lead to CHARGE syndrome, an...
Layman WS, Hurd EA, Martin DM. Chromodomain proteins in development: lessons from CHARGE syndrome.In...
Tight regulation of gene expression is dependent on interactions of transcription factors and chroma...
Background Mutations in the chromodomain helicase DNA binding protein 7 gene (CHD7) lead to CHARGE s...
Mutations in the gene encoding the ATP dependent chromatin‐remodeling factor, CHD7 are the major cau...
Feng, Weijun et al.Mutations in chromatin modifier genes are frequently associated with neurodevelop...
The mechanisms underlying the neurodevelopmental deficits associated with CHARGE syndrome, which inc...
SummaryChromatin factors that regulate neurogenesis in the central nervous system remain to be explo...
The mechanisms underlying the neurodevelopmental deficits associated with CHARGE syndrome, which inc...
Normal tissue development and maintenance require precise timing and correct localization of gene ex...
Abstract A mutation in the chromatin remodeler chromodomain helicase DNA-binding 7 (CHD7) gene cause...
Heterozygous loss of function mutations in CHD7 (chromodomain helicase DNA-binding protein 7) lead t...
Mutations in CHD7 are the major cause of CHARGE syndrome, an autosomal dominant disorder with an est...
In this issue of Cell Stem Cell, Feng et al. (2013) report that the gene mutated in human CHARGE syn...
Mutations in the chromodomain helicase DNA binding protein 7 gene (CHD7) lead to CHARGE syndrome, an...
Layman WS, Hurd EA, Martin DM. Chromodomain proteins in development: lessons from CHARGE syndrome.In...
Tight regulation of gene expression is dependent on interactions of transcription factors and chroma...
Background Mutations in the chromodomain helicase DNA binding protein 7 gene (CHD7) lead to CHARGE s...
Mutations in the gene encoding the ATP dependent chromatin‐remodeling factor, CHD7 are the major cau...