Pathogenic variants in the TRIP11 gene cause a skeletal dysplasia spectrum from odontochondrodysplasia to achondrogenesis 1A
- PMID: 31903676
- DOI: 10.1002/ajmg.a.61460
Pathogenic variants in the TRIP11 gene cause a skeletal dysplasia spectrum from odontochondrodysplasia to achondrogenesis 1A
Abstract
The thyroid hormone receptor interactor 11 (TRIP11) gene encodes the Golgi microtubule-associated protein 210 (GMAP-210), a protein essential for the operation of the Golgi apparatus. It is known that null mutations in TRIP11 disrupt Golgi function and cause a lethal skeletal dysplasia known as achondrogenesis type 1A (ACG1A), however recently, hypomorphic mutations in that gene have been linked to odontochondrodysplasia (ODCD), a nonlethal skeletal dysplasia characterized by skeletal changes in the spine and in the metaphyseal regions, associated with dentinogenesis imperfecta. Here we present two patients reflecting the phenotypic spectrum related to different TRIP11 variants. The first is a female child with ODCD, for whom a homozygous in-frame splicing mutation in intron 9 of TRIP11 was identified. The mutation appears to lead to the expression of an alternative TRIP11 transcript, that may explain the less severe radiological alterations in ODCD. The second is a fetus with classical form of ACG1A, associated with typical molecular findings (frameshift) in exon 11 of TRIP11, both novel mutations. The two patients reported here represent the TRIP11 spectrum of skeletal dysplasia ranging from mild to lethal phenotypes, thereby enabling one to suggest a genotype-phenotype correlation in these diseases.
Keywords: TRIP11; achondrogenesis 1A; odontochondrodysplasia; phenotypic spectrum; splicing variant.
© 2020 Wiley Periodicals, Inc.
References
REFERENCES
-
- Abramowicz, A., & Gos, M. (2018). Splicing mutations in human genetic disorders: Examples, detection, and confirmation. Journal of Applied Genetics, 59(3), 253-268.
-
- Aigner, T., Rau, T., Niederhagn, M., Zaucke, F., Schmitz, M., Pöhls, U., … Thiel, C. T. (2007). Achondrogenesis type IA (Houston-Harris): A still-unresolved molecular phenotype. Pediatrica and Deveolpmental Pathology, 10(4), 328-334.
-
- Barron, M. J., McDonnell, S. T., Mackie, I., & Dixon, M. J. (2008). Hereditary dentine disorders: Dentinogenesis imperfecta and dentine dysplasia. Orphanet Journal of Rare Diseases, 3, 31.
-
- Bonaventure, J., Stanescu, R., Stanescu, V., Allain, J. C., Muriel, M. P., Ginisty, D., & Maroteaux, P. (1992). Type II collagen defect in two sibs with the Goldblatt syndrome, a chondrodysplasia with dentinogenesis imperfecta, and joint laxity. American Journal of Medical Genetics, 44(6), 738-753.
-
- Borochowitz, Z., Lachman, R., Adomian, G. E., Spear, G., Jones, K., & Rimoin, D. L. (1988). Achondrogenesis type I: Delineation of further heterogeneity and identification of two distinct subgroups. The Journal of Pediatrics, 112(1), 23-31.
Publication types
MeSH terms
Substances
Supplementary concepts
Grants and funding
- 424074/2016-8/Conselho Nacional de Desenvolvimento Científico e Tecnológico/International
- 590148/2011-7/Conselho Nacional de Desenvolvimento Científico e Tecnológico/International
- 2015/22145-6/Fundação de Amparo à Pesquisa do Estado de São Paulo/International
- 19300 487/2011/Fundação de Apoio à Pesquisa do Distrito Federal/International
- 402/15/Fundo de Apoio ao Ensino, à Pesquisa e Extensão, Universidade Estadual de Campinas/International
LinkOut - more resources
Full Text Sources
Molecular Biology Databases
