Literature DB >> 21278389

Deletions and rearrangements of the H19/IGF2 enhancer region in patients with Silver-Russell syndrome and growth retardation.

Karen Grønskov1, Rebecca L Poole, Johanne M D Hahnemann, Jennifer Thomson, Zeynep Tümer, Karen Brøndum-Nielsen, Rinki Murphy, Kirstine Ravn, Linea Melchior, Alma Dedic, Birgitte Dolmer, I Karen Temple, Susanne E Boonen, Deborah J G Mackay.   

Abstract

Silver-Russell syndrome (SRS) is characterised by prenatal and postnatal growth retardation, dysmorphic facial features, and body asymmetry. In 35-60% of SRS cases the paternally methylated imprinting control region (ICR) upstream of the H19 gene (H19-ICR) is hypomethylated, leading to downregulation of IGF2 and bi-allelic expression of H19. H19 and IGF2 are reciprocally imprinted genes on chromosome 11p15. The expression is regulated by the imprinted methylation of the ICR, which modulates the transcription of H19 and IGF2 facilitated by enhancers downstream of H19. A promoter element of IGF2, IGF2P0, is differentially methylated equivalently to the H19-ICR, though in a small number of SRS cases this association is disrupted--that is, hypomethylation affects either H19-ICR or IGF2P0. Three pedigrees associated with hypomethylation of IGF2P0 in the probands are presented here, two with paternally derived deletions, and one with a balanced translocation of inferred paternal origin. They all have a breakpoint within the H19/IGF2 enhancer region. One proband has severe growth retardation, the others have SRS. This is the first report of paternally derived structural chromosomal mutations in 11p15 causing SRS. These cases define a novel aetiology of the growth retardation in SRS, namely, dissociation of IGF2 from its enhancers.

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Year:  2011        PMID: 21278389     DOI: 10.1136/jmg.2010.086504

Source DB:  PubMed          Journal:  J Med Genet        ISSN: 0022-2593            Impact factor:   6.318


  14 in total

Review 1.  Silver-Russell Syndrome and Beckwith-Wiedemann Syndrome: Opposite Phenotypes with Heterogeneous Molecular Etiology.

Authors:  Katrin Õunap
Journal:  Mol Syndromol       Date:  2016-07-06

2.  No evidence for pathogenic variants or maternal effect of ZFP57 as the cause of Beckwith-Wiedemann Syndrome.

Authors:  Susanne E Boonen; Johanne M D Hahnemann; Deborah Mackay; Niels Tommerup; Karen Brøndum-Nielsen; Zeynep Tümer; Karen Grønskov
Journal:  Eur J Hum Genet       Date:  2011-08-24       Impact factor: 4.246

3.  Components of IGF-axis in growth disorders: a systematic review and patent landscape report.

Authors:  Amit Singh; Ketan Pajni; Inusha Panigrahi; Navdeep Dhoat; Sabyasachi Senapati; Preeti Khetarpal
Journal:  Endocrine       Date:  2022-05-06       Impact factor: 3.925

4.  Additional molecular findings in 11p15-associated imprinting disorders: an urgent need for multi-locus testing.

Authors:  Thomas Eggermann; Ann-Kathrin Heilsberg; Susanne Bens; Reiner Siebert; Jasmin Beygo; Karin Buiting; Matthias Begemann; Lukas Soellner
Journal:  J Mol Med (Berl)       Date:  2014-07       Impact factor: 4.599

5.  Altered DNA methylation patterns of the H19 differentially methylated region and the DAZL gene promoter are associated with defective human sperm.

Authors:  Bo Li; Jian-bo Li; Xi-feng Xiao; Ye-fei Ma; Jun Wang; Xin-xin Liang; Hong-xi Zhao; Feng Jiang; Yuan-qing Yao; Xiao-hong Wang
Journal:  PLoS One       Date:  2013-08-28       Impact factor: 3.240

6.  A novel large deletion of the ICR1 region including H19 and putative enhancer elements.

Authors:  Helen Fryssira; Stella Amenta; Deniz Kanber; Christalena Sofocleous; Evangelia Lykopoulou; Christina Kanaka-Gantenbein; Flavia Cerrato; Hermann-Josef Lüdecke; Susanne Bens; Andrea Riccio; Karin Buiting
Journal:  BMC Med Genet       Date:  2015-05-06       Impact factor: 2.103

Review 7.  Prenatal molecular testing for Beckwith-Wiedemann and Silver-Russell syndromes: a challenge for molecular analysis and genetic counseling.

Authors:  Thomas Eggermann; Frédéric Brioude; Silvia Russo; Maria P Lombardi; Jet Bliek; Eamonn R Maher; Lidia Larizza; Dirk Prawitt; Irène Netchine; Marie Gonzales; Karen Grønskov; Zeynep Tümer; David Monk; Marcel Mannens; Krystyna Chrzanowska; Malgorzata K Walasek; Matthias Begemann; Lukas Soellner; Katja Eggermann; Jair Tenorio; Julián Nevado; Gudrun E Moore; Deborah Jg Mackay; Karen Temple; Gabriele Gillessen-Kaesbach; Tsutomu Ogata; Rosanna Weksberg; Elizabeth Algar; Pablo Lapunzina
Journal:  Eur J Hum Genet       Date:  2015-10-28       Impact factor: 4.246

Review 8.  Clinical significance of copy number variations in the 11p15.5 imprinting control regions: new cases and review of the literature.

Authors:  Matthias Begemann; Sabrina Spengler; Magdalena Gogiel; Ute Grasshoff; Michael Bonin; Regina C Betz; Andreas Dufke; Isabel Spier; Thomas Eggermann
Journal:  J Med Genet       Date:  2012-07-26       Impact factor: 6.318

9.  A statistical method for single sample analysis of HumanMethylation450 array data: genome-wide methylation analysis of patients with imprinting disorders.

Authors:  Faisal I Rezwan; Louise E Docherty; Rebecca L Poole; Gabrielle A Lockett; S Hasan Arshad; John W Holloway; I Karen Temple; Deborah Jg Mackay
Journal:  Clin Epigenetics       Date:  2015-04-21       Impact factor: 6.551

Review 10.  Imprinting disorders: a group of congenital disorders with overlapping patterns of molecular changes affecting imprinted loci.

Authors:  Thomas Eggermann; Guiomar Perez de Nanclares; Eamonn R Maher; I Karen Temple; Zeynep Tümer; David Monk; Deborah J G Mackay; Karen Grønskov; Andrea Riccio; Agnès Linglart; Irène Netchine
Journal:  Clin Epigenetics       Date:  2015-11-14       Impact factor: 6.551

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