Down Syndrome (DS) is characterized by a wide spectrum of clinical signs, which include segmental premature aging of central nervous and immune systems. Although it is well established that the causative defect of DS is the trisomy of chromosome 21, the molecular bases of its phenotype are still largely unknown. We used the Infinium HumanMethylation450 BeadChip to investigate DNA methylation patterns in whole blood from 29 DS persons, using their relatives (mothers and unaffected siblings) as controls. This family-based model allowed us to monitor possible confounding effects on DNA methylation patterns deriving from genetic and environmental factors. Although differentially methylated regions (DMRs) displayed a genome-wide distribution, they were enriched on chromosome 21. DMRs mapped in genes involved in developmental functions, including embryonic development (HOXA family) and haematological (RUNX1 and EBF4) and neuronal (NCAM1) development. Moreover, genes involved in the regulation of chromatin structure (PRMD8, KDM2B, TET1) showed altered methylation. The data also showed that several pathways are affected in DS, including PI3K-Akt signaling. In conclusion, we identified an epigenetic signature of DS that sustains a link between developmental defects and disease phenotype, including segmental premature aging.

Identification of a DNA methylation signature in blood cells from persons with down syndrome

2015

Abstract

Down Syndrome (DS) is characterized by a wide spectrum of clinical signs, which include segmental premature aging of central nervous and immune systems. Although it is well established that the causative defect of DS is the trisomy of chromosome 21, the molecular bases of its phenotype are still largely unknown. We used the Infinium HumanMethylation450 BeadChip to investigate DNA methylation patterns in whole blood from 29 DS persons, using their relatives (mothers and unaffected siblings) as controls. This family-based model allowed us to monitor possible confounding effects on DNA methylation patterns deriving from genetic and environmental factors. Although differentially methylated regions (DMRs) displayed a genome-wide distribution, they were enriched on chromosome 21. DMRs mapped in genes involved in developmental functions, including embryonic development (HOXA family) and haematological (RUNX1 and EBF4) and neuronal (NCAM1) development. Moreover, genes involved in the regulation of chromatin structure (PRMD8, KDM2B, TET1) showed altered methylation. The data also showed that several pathways are affected in DS, including PI3K-Akt signaling. In conclusion, we identified an epigenetic signature of DS that sustains a link between developmental defects and disease phenotype, including segmental premature aging.
2015
Istituto per la Sintesi Organica e la Fotoreattivita' - ISOF
Inglese
7
2
82
93
12
http://www.scopus.com/record/display.url?eid=2-s2.0-84924940199&origin=inward
Sì, ma tipo non specificato
Aging
DNA methylation
Down syndrome
Epigenetics
Infinium human methylation 450 beadchip
The authors are grateful to Dr Daniela Follo and to the following no-profit associations: ANFFAS - Associazione Nazionale Famiglie di Persone con Disabilitb Affettiva e/o Relazionale Onlus, Macerata, Italy; CEPS Onlus - Centro Emiliano studi sociali per la trisomia 21, Bologna, Italy; and OPIMM d Opera dell Bologna, I Onlus, Bologna, Italy, who helped in the enrolment of the DS persons. The authors also particularly thank all the DS persons and their families who participated to the study. We thank Vilma Mantovani and Elena Marasco for their technical support during experimental procedure of DNA methylation analysis at CRBA (Applied Biomedical Research Center, S. Orsola-Malpighi Polyclinic, Bologna, Italy). This work was supported by the European Union's Seventh Framework Programme (grant agreement no. 259679 "IDEAL", grant agreement no. 266486 "NU-AGE", grant agreement no. 305280), by CARISBO foundation (Bologna, Italy Project: INVECCHIAMENTO PRECOCE E DECLINO NEURO-COGNITIVO NELLA SINDROME DI DOWN nr. 2007.0228), and by the Italian Ministry of Health, Progetto Ricerca Finalizzata 2008, convenzione 35: "An integrated approach to identify functional, biochemical and genetic markers for diagnostic and prognostic purposes in the elderly, in the centenarians and in people with dementia, Alzheimer's disease, mild cognitive impairment".
1
info:eu-repo/semantics/article
262
Bacalini, Maria Giulia; Bacalini, Maria Giulia; Bacalini, Maria Giulia; Gentilini, Davide; Boattini, Alessio; Giampieri, Enrico; Pirazzini, Chiara; Pi...espandi
01 Contributo su Rivista::01.01 Articolo in rivista
none
   Integrated DEsign and AnaLysis of small population group trials
   IDEAL
   FP7
   602552

   New dietary strategies addressing the specific needs of elderly population for an healthy ageing in Europe
   NU-AGE
   FP7
   266486
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/20.500.14243/333224
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