Functional characterization of a novel non-coding mutation “Ghent +49A > G” in the iron-responsive element of L-ferritin causing hereditary hyperferritinaemia-cataract syndrome

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作者
Stijn Van de Sompele
Lucie Pécheux
Jorge Couso
Audrey Meunier
Mayka Sanchez
Elfride De Baere
机构
[1] Ghent University Hospital,Department of Medical Genetics
[2] Centre Hospitalier Universitaire Saint-Pierre,Department of Pediatrics
[3] Germans Trias and Pujol Research Institute (PMPPC-IGTP),Program of Predictive and Personalized Medicine of Cancer
[4] Campus Can Ruti,Iron metabolism: regulation and diseases group
[5] Josep Carreras Leukaemia Research Institute (IJC),Department of Ophthalmology
[6] Campus ICO - Germans Trias i Pujol,undefined
[7] Centre Hospitalier Universitaire Saint-Pierre,undefined
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Scientific Reports | / 7卷
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摘要
Hereditary hyperferritinaemia-cataract syndrome (HHCS) is a rare disorder usually caused by heterozygous mutations in the iron-responsive element (IRE) in the 5′ untranslated region (5′UTR) of the L-ferritin gene (FTL), disturbing the binding of iron regulatory proteins (IRPs) and the post-transcriptional regulation of ferritin expression. Here, the proband of a consanguineous family displayed moderate bilateral cataracts and elevated serum ferritin in the absence of iron overload. The parents and siblings showed variable degrees of mild bilateral cataracts combined with elevated levels of circulating ferritin. Sequencing of FTL identified a novel 5′UTR mutation c.-151A > G, also named “Ghent +49A > G”. The zygosity of the mutation, occurring in homozygous and heterozygous state in the proband and other affected family members respectively, correlated well with severity of ophthalmological and hematological manifestations. The substitution is expected to impair the secondary structure of the upper IRE stem. Functional characterization of +49A > G by electrophoretic mobility shift assays demonstrated a reduced binding affinity for IRP1 compared to the wild-type IRE of FTL. Overall, we have expanded the repertoire of deleterious biallelic FTL IRE mutations in HHCS with this novel +49A > G mutation, the zygosity of which correlated well with the disease expression.
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[1]  
Craig JE(2003)Hereditary Hyperferritinemia-Cataract Syndrome: Prevalence, Lens Morphology, Spectrum of Mutations, and Clinical Presentations Arch Ophthalmol 121 1753-1761
[2]  
Beaumont C(1995)Mutation in the iron responsive element of the L ferritin mRNA in a family with dominant hyperferritinaemia and cataract Nat Genet 11 444-446
[3]  
Girelli D(1995)A linkage between hereditary hyperferritinaemia not related to iron overload and autosomal dominant congenital cataract Br J Haematol 90 931-934
[4]  
Platteau E(2012)Age-dependent ocular phenotype in hereditary hyperferritinaemia cataract syndrome (HHCS) Acta Ophthalmol 90 e239-e240
[5]  
Hoornaert K(2004)Regulated secretion of glycosylated human ferritin from hepatocytes Blood 103 2369-2376
[6]  
Moens K(2001)Clinical, biochemical and molecular findings in a series of families with hereditary hyperferritinaemia-cataract syndrome Br J Haematol 115 334-340
[7]  
Leroy BP(2004)Clinical features and molecular analysis of seven British kindreds with hereditary hyperferritinaemia cataract syndrome Eur J Hum Genet 12 790-796
[8]  
Ghosh S(1998)IRP-1 binding to ferritin mRNA prevents the recruitment of the small ribosomal subunit by the cap-binding complex eIF4F Mol Cell 2 383-388
[9]  
Hevi S(1999)Clinical Severity and Thermodynamic Effects of Iron-responsive Element Mutations in Hereditary Hyperferritinemia-Cataract Syndrome The Journal of biological chemistry 274 26439-26447
[10]  
Chuck SL(2000)The lens in hereditary hyperferritinaemia cataract syndrome contains crystalline deposits of L-ferritin Br J Ophthalmol 84 697-700