FOXP1 haploinsufficiency: Phenotypes beyond behavior and intellectual disability?
Angela MyersChristèle du SouichConnie L YangLior BorovikJill MwenifumboRosemarie RuppsCauses StudyAnna LehmanElizabeth M J LeePublished in: American journal of medical genetics. Part A (2017)
The forkhead box (FOX) transcription factors have roles in development, carcinogenesis, metabolism, and immunity. In humans FOXP1 mutations have been associated with language and speech defects, intellectual disability, autism spectrum disorder, facial dysmorphisms, and congenital anomalies of the kidney and urinary tract. In mice, Foxp1 plays critical roles in development of the spinal motor neurons, lymphocytes, cardiomyocytes, foregut, and skeleton. We hypothesized therefore that mutations of FOXP1 affect additional tissues in some humans. Supporting this hypothesis, we describe two individuals with novel variants of FOXP1 (NM_032682.5:c.975-2A>C and NM_032682.5:c.1574G>A) and additional features. One had a lung disease resembling neuroendocrine cell hyperplasia of infancy (NEHI), and the second had a skeletal disorder with undertubulation of the long bones and relapsing-remitting fevers associated with flushing and edema. Although attribution of these traits to mutation of FOXP1 requires ascertainment of additional patients, we hypothesize that the variable expression of these additional features might arise by means of stochastic developmental variation.
Keyphrases
- intellectual disability
- regulatory t cells
- autism spectrum disorder
- transcription factor
- multiple sclerosis
- attention deficit hyperactivity disorder
- dendritic cells
- end stage renal disease
- spinal cord
- urinary tract
- photodynamic therapy
- poor prognosis
- chronic kidney disease
- ejection fraction
- gene expression
- newly diagnosed
- binding protein
- disease activity
- prognostic factors
- peritoneal dialysis
- single cell
- dna methylation
- cell therapy
- adipose tissue
- spinal cord injury
- working memory
- copy number
- genome wide
- physical activity
- long non coding rna
- mesenchymal stem cells
- endothelial cells