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Discovery of four recessive developmental disorders using probabilistic genotype and phenotype matching among 4,125 families

Authors :
Lelliott C
Wendy D Jones
Helen V. Firth
Sebastian S. Gerety
Daniel A. King
Ajith Kumar
Mary O'Regan
Diana Rajan
Nicola Foulds
Judith A. Goodship
Jenny Lord
Angela F. Brady
Dominic J. McMullan
James Whitworth
Cecilia W. Lo
Morad Ansari
Emma Hobson
David R. FitzPatrick
Nadia Akawi
Jeremy F. McRae
Alejandro Sifrim
Peter D. Turnpenny
Shelagh Joss
Deborah Osio
Tomas W Fitzgerald
Caroline F. Wright
Audrey Smith
Richard Francis
Melissa Lees
Elena Prigmore
Charu Deshpande
Jeffrey C. Barrett
Trevor Cole
Stephen Clayton
Meena Balasubramanian
Nikolai Klena
Moira Blyth
George C. Gabriel
Elisabeth Rosser
Ganesh J. Swaminathan
Matthew E. Hurles
Virginia Piombo
Source :
Nature genetics, Akawi, N, McRae, J, Ansari, M, Balasubramanian, M, Blyth, M, Brady, A F, Clayton, S, Cole, T, Deshpande, C, Fitzgerald, T W, Foulds, N, Francis, R, Gabriel, G, Gerety, S S, Goodship, J, Hobson, E, Jones, W D, Joss, S, King, D, Klena, N, Kumar, A, Lees, M, Lelliott, C, Lord, J, McMullan, D, O'Regan, M, Osio, D, Piombo, V, Prigmore, E, Rajan, D, Rosser, E, Sifrim, A, Smith, A, Swaminathan, G J, Turnpenny, P, Whitworth, J, Wright, C F, Firth, H V, Barrett, J C, Lo, C W & FitzPatrick, D R & Hurles, M E 2015, ' Discovery of four recessive developmental disorders using probabilistic genotype and phenotype matching among 4,125 families ', Nature Genetics, vol. 47, no. 11, pp. 1363-1369 . https://doi.org/10.1038/ng.3410
Publication Year :
2015
Publisher :
Springer Science and Business Media LLC, 2015.

Abstract

Discovery of most autosomal recessive disease-associated genes has involved analysis of large, often consanguineous multiplex families or small cohorts of unrelated individuals with a well-defined clinical condition. Discovery of new dominant causes of rare, genetically heterogeneous developmental disorders has been revolutionized by exome analysis of large cohorts of phenotypically diverse parent-offspring trios. Here we analyzed 4,125 families with diverse, rare and genetically heterogeneous developmental disorders and identified four new autosomal recessive disorders. These four disorders were identified by integrating Mendelian filtering (selecting probands with rare, biallelic and putatively damaging variants in the same gene) with statistical assessments of (i) the likelihood of sampling the observed genotypes from the general population and (ii) the phenotypic similarity of patients with recessive variants in the same candidate gene. This new paradigm promises to catalyze the discovery of novel recessive disorders, especially those with less consistent or nonspecific clinical presentations and those caused predominantly by compound heterozygous genotypes.

Details

ISSN :
15461718 and 10614036
Volume :
47
Database :
OpenAIRE
Journal :
Nature Genetics
Accession number :
edsair.doi.dedup.....24c91d0a6e441a9572fcf0cadca49592