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1.
Czamara, D.* et al.: Integrated analysis of environmental and genetic influences on cord blood DNA methylation in new-borns. Nat. Commun. 10:2548 (2019)
2.
Wiechmann, T.* et al.: Identification of dynamic glucocorticoid-induced methylation changes at the FKBP5 locus. Clin. Epigenet. 11:83 (2019)
3.
Zannas, A.S.* et al.: Epigenetic upregulation of FKBP5 by aging and stress contributes to NF-kappa B-driven inflammation and cardiovascular risk. Proc. Natl. Acad. Sci. U.S.A. 166, 11370-11379 (2019)
4.
Dedic, N.* et al.: Cross-disorder risk gene CACNA1C differentially modulates susceptibility to psychiatric disorders during development and adulthood. Mol. Psychiatry 23, 533-543 (2018)
5.
Emeny, R.T. et al.: Anxiety associated increased CpG methylation in the promoter of Asb1: A translational approach evidenced by epidemiological and clinical studies and a murine model. Neuropsychopharmacology 43, 342-353 (2018)
6.
Felix, J.F.* et al.: Cohort profile: Pregnancy and childhood epigenetics (PACE) consortium. Int. J. Epidemiol. 47, 22-23u (2018)
7.
Liu, C.* et al.: A DNA methylation biomarker of alcohol consumption. Mol. Psychiatry 23, 422-433 (2018)
8.
Reese, S.E.* et al.: Epigenome-wide meta-analysis of DNA methylation and childhood asthma. J. Allergy Clin. Immunol. 143, 2062-2074 (2018)
9.
Zannas, A.S.* et al.: Correction: Lifetime stress accelerates epigenetic aging in an urban, African American cohort: Relevance of glucocorticoid signaling [Genome Biol., 16, 1, (2015) (266)] DOI: 10.1186/s13059-015-0828-5. Genome Biol. 19:61 (2018)
10.
Karlsoon Linner, R.* et al.: An epigenome-wide association study meta-analysis of educational attainment. Mol. Psychiatry 22, 1680-1690 (2017)
11.
Andlauer, T.F.* et al.: Novel multiple sclerosis susceptibility loci implicated in epigenetic regulation. Sci. Adv. 2:e1501678 (2016)
12.
Joehanes, R.* et al.: Epigenetic signatures of cigarette smoking. Circ. Cardiovasc. Genet. 9, 436-447 (2016)
13.
Ligthart, S.* et al.: DNA methylation signatures of chronic low-grade inflammation are associated with complex diseases. Genome Biol. 17:255 (2016)
14.
Arloth, J.* et al.: Genetic differences in the immediate transcriptome response to stress predict risk-related brain function and psychiatric disorders. Neuron 86, 1189-1202 (2015)
15.
Peters, M.J.* et al.: The transcriptional landscape of age in human peripheral blood. Nat. Commun. 6:8570 (2015)
16.
Zannas, A.S.* et al.: Lifetime stress accelerates epigenetic aging in an urban, African American cohort: Relevance of glucocorticoid signaling. Genome Biol. 16:266 (2015)
17.
Mehta, D.* et al.: Early predictive biomarkers for postpartum depression point to a role for estrogen receptor signaling. Psychol. Med. 44, 2309-2322 (2014)
18.
Menke, A.* et al.: Dexamethasone stimulated gene expression in peripheral blood is a sensitive marker for glucocorticoid receptor resistance in depressed patients. Neuropsychopharmacology 37, 1455-1464 (2012)
19.
Rietschel, M.* et al.: Genome-wide association-, replication-, and neuroimaging study implicates HOMER1 in the etiology of major depression. Biol. Psychiatry 68, 589-601 (2010)
20.
Schmidt, M.V.* et al.: Individual stress vulnerability is predicted by short-term memory and AMPA receptor subunit ratio in the hippocampus. J. Neurosci. 30, 16949-16958 (2010)