With advances in genetic testing and improved access to such advances, whole exome sequencing is becoming a first‐line investigation in clinical work‐up of children with developmental delay/intellectual disability (ID). As a result, the need to understand the importance of genetic variants and its effect on the clinical phenotype is increasing. Here, we report on the largest cohort of patients with HNRNPU variants. These 21 patients follow on from the previous study published by Yates et al. in 2017 from our group predominantly identified from the Deciphering Developmental Disorders study that reported seven patients with HNRNPU variants. All the probands reported here have a de novo loss‐of‐function variant. These probands have craniofacia...
In genome-wide screening studies for de novo mutations underlying autism and intellectual disability...
HNRNPU encodes a multifunctional RNA-binding protein that plays critical roles in regulating pre-mRN...
Pathogenic variants in genes encoding subunits of the spliceosome are the cause of several human dis...
With advances in genetic testing and improved access to such advances, whole exome sequencing is bec...
With advances in genetic testing and improved access to such advances, whole exome sequencing is bec...
With advances in genetic testing and improved access to such advances, whole exome sequencing is bec...
Pathogenic variants in heterogeneous nuclear ribonucleoprotein U (HNRNPU) results in a novel neurode...
Exome sequencing in the context of developmental disorders is a useful technique, but variants found...
Exome sequencing in the context of developmental disorders is a useful technique, but variants found...
Background: With the increasing number of genomic sequencing studies, hundreds of genes have been im...
Pathogenic variants in HNRNPH1 were first reported in 2018. The reported individual, a 13 year old b...
hnRNP-U deficiency is caused by pathogenic variants in HNRNPU, which encodes the heterogeneous nucle...
Pathogenic variants in genes encoding subunits of the spliceosome are the cause of several human dis...
Heterogeneous nuclear ribonucleoproteins (hnRNPs) are RNA binding proteins, which aid in maturation,...
In genome-wide screening studies for de novo mutations underlying autism and intellectual disability...
HNRNPU encodes a multifunctional RNA-binding protein that plays critical roles in regulating pre-mRN...
Pathogenic variants in genes encoding subunits of the spliceosome are the cause of several human dis...
With advances in genetic testing and improved access to such advances, whole exome sequencing is bec...
With advances in genetic testing and improved access to such advances, whole exome sequencing is bec...
With advances in genetic testing and improved access to such advances, whole exome sequencing is bec...
Pathogenic variants in heterogeneous nuclear ribonucleoprotein U (HNRNPU) results in a novel neurode...
Exome sequencing in the context of developmental disorders is a useful technique, but variants found...
Exome sequencing in the context of developmental disorders is a useful technique, but variants found...
Background: With the increasing number of genomic sequencing studies, hundreds of genes have been im...
Pathogenic variants in HNRNPH1 were first reported in 2018. The reported individual, a 13 year old b...
hnRNP-U deficiency is caused by pathogenic variants in HNRNPU, which encodes the heterogeneous nucle...
Pathogenic variants in genes encoding subunits of the spliceosome are the cause of several human dis...
Heterogeneous nuclear ribonucleoproteins (hnRNPs) are RNA binding proteins, which aid in maturation,...
In genome-wide screening studies for de novo mutations underlying autism and intellectual disability...
HNRNPU encodes a multifunctional RNA-binding protein that plays critical roles in regulating pre-mRN...
Pathogenic variants in genes encoding subunits of the spliceosome are the cause of several human dis...