Genome-Wide DNA Methylation Profiles in Community Members Exposed to the World Trade Center Disaster.
9/11
World Trade Center
environmental exposure
epigenome-wide association study
exposure assessment
methylation
pathway analysis
Journal
International journal of environmental research and public health
ISSN: 1660-4601
Titre abrégé: Int J Environ Res Public Health
Pays: Switzerland
ID NLM: 101238455
Informations de publication
Date de publication:
30 07 2020
30 07 2020
Historique:
received:
30
06
2020
revised:
22
07
2020
accepted:
25
07
2020
entrez:
6
8
2020
pubmed:
6
8
2020
medline:
2
12
2020
Statut:
epublish
Résumé
The primary goal of this pilot study was to assess feasibility of studies among local community members to address the hypothesis that complex exposures to the World Trade Center (WTC) dust and fumes resulted in long-term epigenetic changes. We enrolled 18 WTC-exposed cancer-free women from the WTC Environmental Health Center (WTC EHC) who agreed to donate blood samples during their standard clinical visits. As a reference WTC unexposed group, we randomly selected 24 age-matched cancer-free women from an existing prospective cohort who donated blood samples before 11 September 2001. The global DNA methylation analyses were performed using Illumina Infinium MethylationEpic arrays. Statistical analyses were performed using R Bioconductor package. Functional genomic analyses were done by mapping the top 5000 differentially expressed CpG sites to the Kyoto Encyclopedia of Genes and Genomes (KEGG) Pathway database. Among cancer-free subjects, we observed substantial methylation differences between WTC-exposed and unexposed women. The top 15 differentially methylated gene probes included BCAS2, OSGIN1, BMI1, EEF1A2, SPTBN5, CHD8, CDCA7L, AIDA, DDN, SNORD45C, ZFAND6, ARHGEF7, UBXN8, USF1, and USP12. Several cancer-related pathways were enriched in the WTC-exposed subjects, including endocytosis, mitogen-activated protein kinase (MAPK), viral carcinogenesis, as well as Ras-associated protein-1 (Rap1) and mammalian target of rapamycin (mTOR) signaling. The study provides preliminary data on substantial differences in DNA methylation between WTC-exposed and unexposed populations that require validation in further studies.
Identifiants
pubmed: 32751422
pii: ijerph17155493
doi: 10.3390/ijerph17155493
pmc: PMC7432006
pii:
doi:
Substances chimiques
ARHGEF7 protein, human
0
Dust
0
EEF1A2 protein, human
0
Environmental Pollutants
0
Peptide Elongation Factor 1
0
Rho Guanine Nucleotide Exchange Factors
0
Types de publication
Journal Article
Research Support, N.I.H., Extramural
Langues
eng
Sous-ensembles de citation
IM
Subventions
Organisme : NCI NIH HHS
ID : UM1 CA182934
Pays : United States
Organisme : NCI NIH HHS
ID : P30 CA016087
Pays : United States
Références
Eur J Cancer Prev. 2019 May;28(3):225-233
pubmed: 30001286
Ann N Y Acad Sci. 2006 Nov;1089:119-26
pubmed: 17261761
Oncotarget. 2017 May 9;8(19):32043-32054
pubmed: 28410191
J Occup Environ Med. 2009 May;51(5):534-41
pubmed: 19365288
Nat Rev Clin Oncol. 2018 Jul;15(7):459-466
pubmed: 29666440
Genome Res. 2000 Oct;10(10):1546-60
pubmed: 11042152
Int J Mol Sci. 2019 Feb 22;20(4):
pubmed: 30813351
J Oral Pathol Med. 2020 Jan;49(1):96-99
pubmed: 31444928
Oncogene. 2006 Sep 25;25(43):5906-11
pubmed: 16998505
J Exp Clin Cancer Res. 2019 May 28;38(1):227
pubmed: 31138311
Bioinformatics. 2014 May 15;30(10):1363-9
pubmed: 24478339
Cancer Res. 2009 Dec 1;69(23):8877-85
pubmed: 19903847
Curr Protoc Cytom. 2015 Jul 01;73:5.1.1-5.1.16
pubmed: 26132177
Environ Health Perspect. 2001 Nov;109(11):A528-36
pubmed: 11713010
Lancet. 2011 Sep 3;378(9794):898-905
pubmed: 21890054
Nat Protoc. 2009;4(1):44-57
pubmed: 19131956
Int J Oncol. 2018 Nov;53(5):1980-1996
pubmed: 30132516
Bioinformatics. 2014 Apr 1;30(7):1003-5
pubmed: 24227676
Mol Med Rep. 2019 Aug;20(2):1149-1156
pubmed: 31173217
OMICS. 2012 May;16(5):284-7
pubmed: 22455463
Biomed Rep. 2016 Mar;4(3):369-373
pubmed: 26998278
Bioinformatics. 2004 Aug 4;20 Suppl 1:i31-9
pubmed: 15262778
Am J Respir Crit Care Med. 2020 May 1;201(9):1099-1109
pubmed: 31995399
Oncogene. 2018 Aug;37(34):4679-4691
pubmed: 29755129
Hered Cancer Clin Pract. 2019 Mar 25;17:12
pubmed: 30962859
Ann Am Thorac Soc. 2016 May;13(5):577-83
pubmed: 26872108
Ann N Y Acad Sci. 2006 Sep;1076:54-79
pubmed: 17119193
MMWR Surveill Summ. 2006 Apr 7;55(2):1-18
pubmed: 16601667
Curr Opin Pediatr. 2009 Apr;21(2):243-51
pubmed: 19663042
Crit Rev Toxicol. 2015 Jul;45(6):492-530
pubmed: 26058443
Epigenetics. 2011 Jan;6(1):76-85
pubmed: 20890131
Environ Health Perspect. 2013 Jun;121(6):699-704
pubmed: 23613120
PLoS One. 2019 Jun 20;14(6):e0218030
pubmed: 31220107
J Epidemiol Community Health. 2012 Jan;66(1):8-13
pubmed: 22045849
Hered Cancer Clin Pract. 2016 Apr 19;14:9
pubmed: 27099641
Oncol Rep. 2019 Aug;42(2):688-696
pubmed: 31173263
Exp Hematol. 2019 Jun;74:42-51.e3
pubmed: 31022428
Nucleic Acids Res. 2009 Jan;37(1):1-13
pubmed: 19033363
Environ Health Perspect. 2003 Jun;111(7):972-80
pubmed: 12782501
Gastroenterology. 2014 Apr;146(4):1084-96
pubmed: 24417816
Environ Health Perspect. 2002 Jul;110(7):703-14
pubmed: 12117648
Tumour Biol. 2015 Jul;36(7):5415-23
pubmed: 25687182
Cancer Res. 2012 Feb 1;72(3):636-44
pubmed: 22144470
Ann Hum Genet. 2019 Jan;83(1):34-45
pubmed: 30203836
Epigenetics. 2012 Feb;7(2):119-30
pubmed: 22395460
Mol Cell Biol. 1999 Nov;19(11):7327-35
pubmed: 10523621
JAMA. 2012 Dec 19;308(23):2479-88
pubmed: 23288447