In-frame seven amino-acid duplication in arose over the last 3000 years, disrupts protein interaction and stability and is associated with gigantism.

Lou Metherell, Márta Korbonits, Mark G Thomas, David Balding, Peter J Trainer, Sian Ellard, Olaf Ansorge, Philippe Chanson, Anne-Lise Lecoq, Atik Baborie, Ajay Kumar Sinha, Daniel Du Plessis, Tara Kearney, Roberto Salvatori, Valentina Corazzini, Elizabeth C Crowne, Richard Quinton, Astrid Weber, Karen Stals, Anna-Marie Bussell, Giorgia Grassi, Plamena Gabrovska, Alessia David, Donato Iacovazzo, Yoan Diekmann, Serban Radian

Journal: European journal of endocrinology 2017;177(3):257-266

PMID: 28634279

Abstract

OBJECTIVE

Mutations in the aryl hydrocarbon receptor-interacting protein () gene are associated with pituitary adenoma, acromegaly and gigantism. Identical alleles in unrelated pedigrees could be inherited from a common ancestor or result from recurrent mutation events.

DESIGN AND METHODS

Observational, inferential and experimental study, including: mutation testing; reconstruction of 14 -region (8.3 Mbp) haplotypes; coalescent-based approximate Bayesian estimation of the time to most recent common ancestor (tMRCA) of the derived allele; forward population simulations to estimate current number of allele carriers; proposal of mutation mechanism; protein structure predictions; co-immunoprecipitation and cycloheximide chase experiments.

RESULTS

Nine European-origin, unrelated c.805_825dup-positive pedigrees (four familial, five sporadic from the UK, USA and France) included 16 affected (nine gigantism/four acromegaly/two non-functioning pituitary adenoma patients and one prospectively diagnosed acromegaly patient) and nine unaffected carriers. All pedigrees shared a 2.79 Mbp haploblock around with additional haploblocks privately shared between subsets of the pedigrees, indicating the existence of an evolutionarily recent common ancestor, the 'English founder', with an estimated median tMRCA of 47 generations (corresponding to 1175 years) with a confidence interval (9-113 generations, equivalent to 225-2825 years). The mutation occurred in a small tandem repeat region predisposed to slipped strand mispairing. The resulting seven amino-acid duplication disrupts interaction with HSP90 and leads to a marked reduction in protein stability.

CONCLUSIONS

The c.805_825dup allele, originating from a common ancestor, associates with a severe clinical phenotype and a high frequency of gigantism. The mutation is likely to be the result of slipped strand mispairing and affects protein-protein interactions and AIP protein stability.

© 2017 The authors.

Address: Johns Hopkins University School of Medicine, Baltimore, Maryland, USA.; William Harvey Research Institute, Barts and the London School of Medicine, Queen Mary University of London, London, UK.; Department of Endocrinology, C.I. Parhon National Institute of Endocrinology, 'C. Davila' University of Medicine and Pharmacy, Bucharest, Romania.; Research Department of Genetics, Evolution and Environment, University College London, London, UK.; Centre of Bioinformatics and System Biology, Department of Life Sciences, Imperial College London, London, UK.; Department of Molecular Genetics, Royal Devon and Exeter Foundation Trust, Exeter, UK.; Department of Clinical Genetics, Liverpool Women's Hospital, Liverpool, UK.; Department of Endocrinology, Newcastle-upon-Tyne Hospitals & Institute of Genetic Medicine, Newcastle University, Newcastle, UK.; Bristol Royal Hospital for Children, University Hospitals Bristol Foundation Trust, Bristol, UK.; Endocrinology and Neuropathology Unit, Salford Royal Hospital, Manchester, UK.; The Walton Centre for Neurology and Neurosurgery, Liverpool, UK.; Assistance Publique-Hôpitaux de Paris, Hôpital de Bicêtre, Service d'Endocrinologie et des Maladies de la Reproduction and Centre de Référence des Maladies Endocriniennes Rares de la Croissance, Le Kremlin-Bicêtre, France.; Inserm 1185, Fac Med Paris Sud, Univ Paris-Sud, Université Paris-Saclay, Le Kremlin-Bicêtre, France.; Neuropathology, University of Oxford, Oxford, UK.; Institute of Biomedical and Clinical Science, University of Exeter Medical School, Exeter, UK.; Department of Endocrinology, Christie Hospital, Manchester, UK.; Centre for Systems Genomics, Schools of Biosciences and of Mathematics & Statistics, University of Melbourne, Melbourne, Australia.
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