The Influence of ADH1B, ALDH2 Activities and Their Combination on Drinking Behaviors of Korean Young Adults

ADH1B와 ALDH2 활성 조합이 젊은 한국인의 음주 행동에 미치는 영향

  • Park, Jae-Young (Department of Neuropsychiatry, Chungbuk National University College of Medicine and Research Institute, Chungbuk National University) ;
  • Kim, Sie-Kyeong (Department of Neuropsychiatry, Chungbuk National University College of Medicine and Research Institute, Chungbuk National University) ;
  • Lee, Sang-Ick (Department of Neuropsychiatry, Chungbuk National University College of Medicine and Research Institute, Chungbuk National University)
  • 박재영 (충북대학교 의과대학 신경정신과학교실, 의학연구소) ;
  • 김시경 (충북대학교 의과대학 신경정신과학교실, 의학연구소) ;
  • 이상익 (충북대학교 의과대학 신경정신과학교실, 의학연구소)
  • Published : 2010.02.28

Abstract

Objectives : It is well-known that Korean people show distinctive drinking behaviors depending on the gene polymorphisms of alcohol metabolizing enzymes. This study examined the gene polymorphisms of ALDH2 and ADH1B and their combination on the drinking behaviors of Korean young adults. Methods : Through a follow-up survey performed for a cohort consisting of 551 university freshmen for six years, the authors attempted to identify genetic factors affecting drinking behaviors. In 2000, drinking behaviors and scores of CAGE questionnaires were assessed and ALDH2 gene polymorphism was determined with PCR-RFLP. In 2006(n= 150), AUDIT-K was assessed in addition to the above and gene polymorphism of ADH1B was determined through SNaPshot$^{TM}$ method. Results : While ALDH2*2 allele was associated with increased degree of drinking in 2000 and 2006. When both enzymes were active, the possibility to be classified into the risk group for alcohol dependence such as AUDIT-K(>12), and CAGE(>2) was high. Conclusion : The ALDH2 genotype had a significant effect on drinking behavior and degree of drinking during early adulthood. However, the combination of the active form of ADH1B and the active form of ALDH2 can be risk factor for problem drinking.

Keywords

References

  1. Schuckit MA. Genetics on the risk for alcoholism. Am J Addict 2000;9:103-112. https://doi.org/10.1080/10550490050173172
  2. Chen WJ, Loh EW, Hsu YP, Chen CC , Yu JM, Cheng AT. Alcohol-metabolising genes and alcoholism among Taiwanese Han men: Independent effect of ADH2, ADH3 and ALDH2. Br J Psychiatry 1996;168:762-767. https://doi.org/10.1192/bjp.168.6.762
  3. Higuchi S, Matsushita S, Muramatsu T, Murayama M, Hayashida M. Alcohol and aldehyde dehydrogenase genotypes and drinking behavior in Japanese. Alcohol Clin Exp Res 1996;20:493-497. https://doi.org/10.1111/j.1530-0277.1996.tb01080.x
  4. Duranceaux NC, Schuckit MA, Luczak SE, Eng MY, Carr LG, Wall TL. Ethnic differences in level of response to alcohol between Chinese Americans and Korean Americans. J Stud Alcohol Drugs 2008;69:227-234. https://doi.org/10.15288/jsad.2008.69.227
  5. Hendershot CS, Collins SE, George WH, Wall TL, McCarthy DM, Liang T, et al. Association of ALDH2 and ADH1B genotypes with alcohol-related phe-notypes in Asian young adults. Alcohol Clin Exp Res 2009;33:839-847. https://doi.org/10.1111/j.1530-0277.2009.00903.x
  6. Hendershot CS, MacPherson L, Myers MG, Carr LG , Wall TL. Psychosocial, cultural and genetic influences on alcohol use in Asian American youth. J Stud Alcohol 2005;66:185-195. https://doi.org/10.15288/jsa.2005.66.185
  7. Hurley TD, Edenberg HJ, Li T. Pharmacogenomics: the search for individualized therapies. Weinheim. Germany:WileyVCH;2002.
  8. Edenberg HJ. The Genentics of alcohol metabolism:role of alcohol dehydrogenase and aldehyde dehydroganse variants. Alcohol Res Health 2007;30:5-13.
  9. Whitfield JB, Nightingale BN, Bucholz KK, Madden PAF, Heath AC, Martin NG. ADH genotypes and alcohol use and dependence in Europeans. Alcohol Clin Exp Res 1998;22:1463-1469. https://doi.org/10.1111/j.1530-0277.1998.tb03936.x
  10. Carr LG , Goroud T, Stewart T, Castelluccio P, Edenberg HJ, Li TK. Influence of ADH1B polymorphism on alcohol use and its subjective effects in a Jewish population. Am J Med Genet 2002;112:138-143.
  11. Wall TL, Shea SH, Luczak SE, Cook TA, Carr LG . Genetics associations of alcohol dehydrogenase with alcohol use disorders and endophenotypes in white college students. J Abnorm Psychol 2005;114:456-465. https://doi.org/10.1037/0021-843X.114.3.456
  12. Luczak SE, Wall TL, Cook TA, Shea SH, Carr LG . ALDH2 status and conduct disorder mediate the relation-ship between ethnicity and alcohol dependence in Chinese, Korean, and White American college students. J Abnorm Psychol 2004;113:271-278. https://doi.org/10.1037/0021-843X.113.2.271
  13. Chai YG, Oh DY, Chung EK, Kim GS, Kim L, Lee YS, et al. Alcohol and aldehyde dehydrogenase polymorphisms in men with type I and Type II alcoholism. Am J Psychiatry 2005;162:1003-1005. https://doi.org/10.1176/appi.ajp.162.5.1003
  14. Kim D, Choi I, Park BL, Lee B, Ham B, Yoon S. et al. Major genetic components underlying alcoholism in Korean population. Hum Mol Genet 2008;17:854-858. https://doi.org/10.1093/hmg/ddm357
  15. Kim BL, Lee SI, Kim H, Shin CJ, Sohn JW, Chi KH, et al. Effects of psychosocial factors and genotypes of aldehyde dehydrogenase II and tryptophan hydroxylase on the alcohol use in freshmen of a university. Korean J Psychopharmacol 2004;15:361-370.
  16. Kim SK, Lee SK, Kim MK, Lee SI. The genetic and psychosocial factors affecting the change of drinking behavior of male college students. J Korean Neuropsychiatr Assoc 2007;46:357-364.
  17. Kim SK, Lee SI. Effects of ALDH2 genotypes and psychosocial stress on the change of drinking behavior in college students. J Korean Academy of Addiction Psychiatry 2008;12:29-36.
  18. Chungbuk National University, Ministry of Health and Welfare. A Prospective study on the genetic and psychosocial effects on the change of alcohol drinking behavior or new college students. Report of Health Promotion Fund Research Project;2000.
  19. Ewing JA. Detecting alcoholism: The CAGE questionnaire. JAMA 1984;252:1905-1907. https://doi.org/10.1001/jama.252.14.1905
  20. Lee BO, Lee CH, Lee PG , Choi MJ, Namkoong K. Development of Korean version of alcohol use disorders identification test(AUDIT-K): Its reliability and validity. J Korean Academy of Addiction Psychiatry 2000;4:83-92.
  21. Mayfield D, McLeod G , Hall P. The CAGE questionnaire: validation of a new alcoholism screening instrument. Am J Psychiatry 1974;131:1121-1123.
  22. Ehrig T, Li TK. Metabolism of alcohol and metabolic consequences. In: Tabakoff B, Hoffmann PL, editors, Biological aspects of alcoholism, WHO expert series on neuroscience volume 4. Seattle: Hogrefe and Huber Publishers;1995. p.23-48.
  23. Bosron WF, Magnes LJ, Li TK. Kinetic and electophoretic properties of native and recombined isoenzymes of human liver alcohol dehydrogenase. Biochemistry 1983;22:1852-1857. https://doi.org/10.1021/bi00277a017
  24. Piasecki TM, Sher KJ, Slutske WS, Jackson KM. Hangover frequency and risk for alcohol use disorders: evidence from a longitudinal high-risk study. J Abnorm Psychol 2005;114:223-234. https://doi.org/10.1037/0021-843X.114.2.223
  25. Shea SH, Wall TL, Carr LG , Li TK. ADH2 and alcohol-related phenotypes in Ashkenazic Jewish American college students. Behav Genet 2001;31:231-239. https://doi.org/10.1023/A:1010261713092
  26. Luczak SE, Glatt SJ, Wall TL. Meta-analyses of ALDH2 and ADH1B with alcohol dependence in Asians. Psychol Bull 2006;132:607-621. https://doi.org/10.1037/0033-2909.132.4.607