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Pleiotropic effects of Chr15q25 nicotinic gene cluster and the relationship between smoking, cognition and ADHD.
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Pharmacogenomics: Driving Personalized Medicine.
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Interpreting coronary artery disease GWAS results: A functional genomics approach assessing biological significance.
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Post-GWAS analysis of six substance use traits improves the identification and functional interpretation of genetic risk loci.
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Combined genetic influence of the nicotinic receptor gene cluster CHRNA5/A3/B4 on nicotine dependence.
BMC Genomics. 2018 Nov 20;19(1):826. doi: 10.1186/s12864-018-5219-3.
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Chrna5-Expressing Neurons in the Interpeduncular Nucleus Mediate Aversion Primed by Prior Stimulation or Nicotine Exposure.
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本文引用的文献

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Genetic influences on nicotinic α5 receptor (CHRNA5) CpG methylation and mRNA expression in brain and adipose tissue.
Genes Environ. 2015 Oct 1;37:14. doi: 10.1186/s41021-015-0020-x. eCollection 2015.
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Enhancer-promoter interactions are encoded by complex genomic signatures on looping chromatin.
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Pathways to smoking behaviours: biological insights from the Tobacco and Genetics Consortium meta-analysis.
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Large-scale identification of sequence variants influencing human transcription factor occupancy in vivo.
Nat Genet. 2015 Dec;47(12):1393-401. doi: 10.1038/ng.3432. Epub 2015 Oct 26.
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Genome-wide map of regulatory interactions in the human genome.
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Regulation of the apolipoprotein gene cluster by a long noncoding RNA.
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Chromatin connectivity maps reveal dynamic promoter-enhancer long-range associations.
Nature. 2013 Dec 12;504(7479):306-310. doi: 10.1038/nature12716. Epub 2013 Nov 10.
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Distinct loci in the CHRNA5/CHRNA3/CHRNB4 gene cluster are associated with onset of regular smoking.
Genet Epidemiol. 2013 Dec;37(8):846-59. doi: 10.1002/gepi.21760. Epub 2013 Nov 1.

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