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Genetic and functional insights into CDA-I prevalence and pathogenesis
- Source :
- Olijnik, A-A, Roy, N B A, Scott, C, Marsh, J A, Brown, J, Lauschke, K, Ask, K, Roberts, N, Downes, D J, Brolih, S, Johnson, E, Xella, B, Proven, M, Hipkiss, R, Ryan, K, Frisk, P, Mäkk, J, Stattin, E-L M, Sadasivam, N, McIlwaine, L, Hill, Q A, Renella, R, Hughes, J R, Gibbons, R J, Groth, A, McHugh, P J, Higgs, D R, Buckle, V J & Babbs, C 2020, ' Genetic and functional insights into CDA-I prevalence and pathogenesis ', Journal of Medical Genetics, vol. 58, pp. 185-195 . https://doi.org/10.1136/jmedgenet-2020-106880, J Med Genet, Olijnik, A A, Roy, N B A, Scott, C, Marsh, J A, Brown, J, Lauschke, K, Ask, K, Roberts, N, Downes, D J, Brolih, S, Johnson, E, Xella, B, Proven, M, Hipkiss, R, Ryan, K, Frisk, P, Mäkk, J, Stattin, E L M, Sadasivam, N, McIlwaine, L, Hill, Q A, Renella, R, Hughes, J R, Gibbons, R J, Groth, A, McHugh, P J, Higgs, D R, Buckle, V J & Babbs, C 2021, ' Genetic and functional insights into CDA-I prevalence and pathogenesis ', Journal of Medical Genetics, vol. 58, pp. 185-195 . https://doi.org/10.1136/jmedgenet-2020-106880, Olijnik, A-A, Roy, N, Scott, C, Marsh, J, Lauschke, K, Ask, K, Roberts, N, Downes, D J, Brown, J, Brolih, S, Johnson, E, Xella, B, Proven, M, Hipkiss, R, Ryan, K, Frisk, P, Makk, J, Stattin, E, Sadasivam, N, McIlwaine, L, Hill, Q A, Renella, R, Hughes, J R, Gibbons, R, Groth, A, McHugh, P J, Higgs, D R, Buckle, V J & Babbs, C 2020, ' Genetic and Functional Insights into CDA-I Prevalence and Pathogenesis ', Journal of Medical Genetics . https://doi.org/10.1136/jmedgenet-2020-106880
- Publication Year :
- 2020
-
Abstract
- BackgroundCongenital dyserythropoietic anaemia type I (CDA-I) is a hereditary anaemia caused by biallelic mutations in the widely expressed genes CDAN1 and C15orf41. Little is understood about either protein and it is unclear in which cellular pathways they participate.MethodsGenetic analysis of a cohort of patients with CDA-I identifies novel pathogenic variants in both known causative genes. We analyse the mutation distribution and the predicted structural positioning of amino acids affected in Codanin-1, the protein encoded by CDAN1. Using western blotting, immunoprecipitation and immunofluorescence, we determine the effect of particular mutations on both proteins and interrogate protein interaction, stability and subcellular localisation.ResultsWe identify six novel CDAN1 mutations and one novel mutation in C15orf41 and uncover evidence of further genetic heterogeneity in CDA-I. Additionally, population genetics suggests that CDA-I is more common than currently predicted. Mutations are enriched in six clusters in Codanin-1 and tend to affect buried residues. Many missense and in-frame mutations do not destabilise the entire protein. Rather C15orf41 relies on Codanin-1 for stability and both proteins, which are enriched in the nucleolus, interact to form an obligate complex in cells.ConclusionStability and interaction data suggest that C15orf41 may be the key determinant of CDA-I and offer insight into the mechanism underlying this disease. Both proteins share a common pathway likely to be present in a wide variety of cell types; however, nucleolar enrichment may provide a clue as to the erythroid specific nature of CDA-I. The surprisingly high predicted incidence of CDA-I suggests that better ascertainment would lead to improved patient care.
- Subjects :
- Male
0301 basic medicine
medicine.medical_specialty
Immunoprecipitation
Biology
medicine.disease_cause
Genetic analysis
Article
03 medical and health sciences
0302 clinical medicine
Molecular genetics
cell biology
Genetics
medicine
Humans
Missense mutation
Genetic Predisposition to Disease
Genetic Testing
Gene
Genetics (clinical)
Anemia, Dyserythropoietic, Congenital
Glycoproteins
Mutation
Genetic heterogeneity
Nuclear Proteins
haematology (incl Blood transfusion)
3. Good health
Genetics, Population
030104 developmental biology
Gene Expression Regulation
Multiprotein Complexes
Medical genetics
Female
clinical genetics
Transcription Factors
030215 immunology
Subjects
Details
- Language :
- English
- Database :
- OpenAIRE
- Journal :
- Olijnik, A-A, Roy, N B A, Scott, C, Marsh, J A, Brown, J, Lauschke, K, Ask, K, Roberts, N, Downes, D J, Brolih, S, Johnson, E, Xella, B, Proven, M, Hipkiss, R, Ryan, K, Frisk, P, Mäkk, J, Stattin, E-L M, Sadasivam, N, McIlwaine, L, Hill, Q A, Renella, R, Hughes, J R, Gibbons, R J, Groth, A, McHugh, P J, Higgs, D R, Buckle, V J & Babbs, C 2020, ' Genetic and functional insights into CDA-I prevalence and pathogenesis ', Journal of Medical Genetics, vol. 58, pp. 185-195 . https://doi.org/10.1136/jmedgenet-2020-106880, J Med Genet, Olijnik, A A, Roy, N B A, Scott, C, Marsh, J A, Brown, J, Lauschke, K, Ask, K, Roberts, N, Downes, D J, Brolih, S, Johnson, E, Xella, B, Proven, M, Hipkiss, R, Ryan, K, Frisk, P, Mäkk, J, Stattin, E L M, Sadasivam, N, McIlwaine, L, Hill, Q A, Renella, R, Hughes, J R, Gibbons, R J, Groth, A, McHugh, P J, Higgs, D R, Buckle, V J & Babbs, C 2021, ' Genetic and functional insights into CDA-I prevalence and pathogenesis ', Journal of Medical Genetics, vol. 58, pp. 185-195 . https://doi.org/10.1136/jmedgenet-2020-106880, Olijnik, A-A, Roy, N, Scott, C, Marsh, J, Lauschke, K, Ask, K, Roberts, N, Downes, D J, Brown, J, Brolih, S, Johnson, E, Xella, B, Proven, M, Hipkiss, R, Ryan, K, Frisk, P, Makk, J, Stattin, E, Sadasivam, N, McIlwaine, L, Hill, Q A, Renella, R, Hughes, J R, Gibbons, R, Groth, A, McHugh, P J, Higgs, D R, Buckle, V J & Babbs, C 2020, ' Genetic and Functional Insights into CDA-I Prevalence and Pathogenesis ', Journal of Medical Genetics . https://doi.org/10.1136/jmedgenet-2020-106880
- Accession number :
- edsair.doi.dedup.....028e96328f2aa1322c6bd5ccd97632f9
- Full Text :
- https://doi.org/10.1136/jmedgenet-2020-106880