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Bi-allelic Loss-of-Function Mutations in the NPR-C Receptor Result in Enhanced Growth and Connective Tissue Abnormalities
- Source :
- American journal of human genetics, 103(2), 288-295. Cell Press, The American journal of human genetics, American Journal of Human Genetics, 103(2), 288-295. CELL PRESS, American Journal of Human Genetics, 103(2), 288-295
- Publication Year :
- 2018
-
Abstract
- The natriuretic peptide signaling pathway has been implicated in many cellular processes, including endochondral ossification and bone growth. More precisely, different mutations in the NPR-B receptor and the CNP ligand have been identified in individuals with either short or tall stature. In this study we show that the NPR-C receptor (encoded by NPR3) is also important for the regulation of linear bone growth. We report four individuals, originating from three different families, with a phenotype characterized by tall stature, long digits, and extra epiphyses in the hands and feet. In addition, aortic dilatation was observed in two of these families. In each affected individual, we identified a bi-allelic loss-of-function mutation in NPR3. The missense mutations (c.442T>C [p.Ser148Pro] and c.1088A>T [p.Asp363Val]) resulted in intracellular retention of the NPR-C receptor and absent localization on the plasma membrane, whereas the nonsense mutation (c.1524delC [p.Tyr508*]) resulted in nonsense-mediated mRNA decay. Biochemical analysis of plasma from two affected and unrelated individuals revealed a reduced NTproNP/NP ratio for all ligands and also high cGMP levels. These data strongly suggest a reduced clearance of natriuretic peptides by the defective NPR-C receptor and consequently increased activity of the NPR-A/B receptors. In conclusion, this study demonstrates that loss-of-function mutations in NPR3 result in increased NPR-A/B signaling activity and cause a phenotype marked by enhanced bone growth and cardiovascular abnormalities.
- Subjects :
- 0301 basic medicine
Male
medicine.medical_specialty
Adolescent
Nonsense mutation
Cardiovascular Abnormalities
OVERGROWTH
Loss of Heterozygosity
Biology
medicine.disease_cause
Short stature
DISEASE
03 medical and health sciences
Internal medicine
Report
Genetics
medicine
Missense mutation
Humans
Receptor
Child
SHORT STATURE
Endochondral ossification
Cyclic GMP
Genetics (clinical)
HETEROZYGOUS MUTATIONS
Bone growth
Mutation
Bone Development
ATRIAL-NATRIURETIC-PEPTIDE
Natriuretic Peptide, C-Type
TRANSLOCATION
030104 developmental biology
Endocrinology
MYOCARDIAL-INFARCTION
Connective Tissue
Female
OVEREXPRESSION
Human medicine
medicine.symptom
Signal transduction
HUMAN HEIGHT
SYSTEM
Signal Transduction
Subjects
Details
- Language :
- English
- ISSN :
- 00029297
- Database :
- OpenAIRE
- Journal :
- American journal of human genetics, 103(2), 288-295. Cell Press, The American journal of human genetics, American Journal of Human Genetics, 103(2), 288-295. CELL PRESS, American Journal of Human Genetics, 103(2), 288-295
- Accession number :
- edsair.doi.dedup.....5cf0b0a118aa5baa059c384d2cd66be1