CUX2, BRAP and ALDH2 are associated with metabolic traits in people with excessive alcohol consumption

被引:0
作者
I-Chun Chen
Po-Hsiu Kuo
Albert C. Yang
Shih-Jen Tsai
Tung-Hsia Liu
Hung-Jen Liu
Tsuo-Hung Lan
Hong-Ming Chen
Huang-Nan Huang
Ren-Hua Chung
Yu-Li Liu
机构
[1] Taichung Veterans General Hospital,Department of Psychiatry
[2] National Chung Hsing University,Ph.D. Program in Translational Medicine
[3] National Chung Hsing University,Rong Hsing Research Center For Translational Medicine
[4] National Taiwan University,Institute of Epidemiology and Preventive Medicine, College of Public Health
[5] National Taiwan University,Department of Public Health, College of Public Health
[6] Beth Israel Deaconess Medical Center,Division of Interdisciplinary Medicine and Biotechnology
[7] Harvard Medical School,Institute of Brain Science
[8] National Yang-Ming University,Division of Psychiatry
[9] National Yang-Ming University,Department of Psychiatry
[10] Taipei Veterans General Hospital,Center for Neuropsychiatric Research
[11] National Health Research Institutes,Institute of Molecular Biology
[12] National Chung Hsing University,Faculty of Medicine
[13] National Yang-Ming University,Department of Applied Mathematics
[14] Tunghai University,Division of Biostatistics and Bioinformatics, Institute of Population Health Sciences
[15] National Health Research Institutes,Graduate Institute of Clinical Medical Science
[16] China Medical University,undefined
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Scientific Reports | / 10卷
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摘要
Molecular mechanisms that prompt or mitigate excessive alcohol consumption could be partly explained by metabolic shifts. This genome-wide association study aims to identify the susceptibility gene loci for excessive alcohol consumption by jointly measuring weekly alcohol consumption and γ-GT levels. We analysed the Taiwan Biobank data of 18,363 Taiwanese people, including 1945 with excessive alcohol use. We found that one or two copies of the G allele in rs671 (ALDH2) increased the risk of excessive alcohol consumption, while one or two copies of the C allele in rs3782886 (BRAP) reduced the risk of excessive alcohol consumption. To minimize the influence of extensive regional linkage disequilibrium, we used the ridge regression. The ridge coefficients of rs7398833, rs671 and rs3782886 were unchanged across different values of the shrinkage parameter. The three variants corresponded to posttranscriptional activity, including cut-like homeobox 2 (a protein coded by CUX2), Glu504Lys of acetaldehyde dehydrogenase 2 (a protein encoded by ALDH2) and Glu4Gly of BRCA1-associated protein (a protein encoded by BRAP). We found that Glu504Lys of ALDH2 and Glu4Gly of BRAP are involved in the negative regulation of excessive alcohol consumption. The mechanism underlying the γ-GT-catalytic metabolic reaction in excessive alcohol consumption is associated with ALDH2, BRAP and CUX2. Further study is needed to clarify the roles of ALDH2, BRAP and CUX2 in the liver–brain endocrine axis connecting metabolic shifts with excessive alcohol consumption.
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