Genetic Variants of Alcohol Metabolizing Enzymes and Alcohol-Related Liver Cirrhosis Risk
Abstract
:1. Introduction
2. Materials and Methods
2.1. Human Subject Cohort
2.2. Blood Samples and Genotyping
2.3. Statistical Analysis
2.4. Availability of Materials and Data
3. Results
4. Discussions
Author Contributions
Funding
Institutional Review Board Statement
Informed Consent Statement
Conflicts of Interest
References
- Griswold, M.G.; Fullman, N.; Hawley, C.; Arian, N.; Zimsen, S.R.M.; Tymeson, H.D.; Venkateswaran, V.; Tapp, A.D.; Forouzanfar, M.H.; Salama, J.S.; et al. Alcohol Use and Burden for 195 Countries and Territories, 1990-2016: A Systematic Analysis for the Global Burden of Disease Study 2016. Lancet 2018, 392, 1015–1035. [Google Scholar] [CrossRef] [Green Version]
- World Health Organization. Available online: https://www.who.int/substance_abuse/publications/global_alcohol_report/en/ (accessed on 13 November 2020).
- Lieber, C.S. Alcoholic Fatty Liver: Its Pathogenesis and Mechanism of Progression to Inflammation and Fibrosis. Alcohol 2004, 34, 1–19. [Google Scholar] [CrossRef]
- Liangpunsakul, S.; Haber, P.; McCaughan, G.W. Alcoholic Liver Disease in Asia, Europe, and North America. Gastroenterology 2016, 150, 1786–1797. [Google Scholar] [CrossRef] [Green Version]
- Stickel, F.; Moreno, C.; Hampe, J.; Morgan, M.Y. The Genetics of Alcohol Dependence and Alcohol-Related Liver Disease. J. Hepatol. 2017, 66, 195–211. [Google Scholar] [CrossRef] [Green Version]
- Teschke, R. Alcoholic Steatohepatitis (ASH) and Alcoholic Hepatitis (AH): Cascade of Events, Clinical Aspects, and Pharmacotherapy Options. Expert Opin. Pharmacother. 2018, 19, 779–793. [Google Scholar] [CrossRef] [PubMed]
- Teschke, R. Microsomal Ethanol-Oxidizing System: Success Over 50 Years and an Encouraging Future. Alcohol. Clin. Exp. Res. 2019, 43, 386–400. [Google Scholar] [CrossRef] [PubMed]
- Teschke, R. Alcoholic Liver Disease: Alcohol Metabolism, Cascade of Molecular Mechanisms, Cellular Targets, and Clinical Aspects. Biomedicines 2018, 6, 106. [Google Scholar] [CrossRef] [PubMed] [Green Version]
- Crabb, D.W.; Matsumoto, M.; Chang, D.; You, M. Overview of the Role of Alcohol Dehydrogenase and Aldehyde Dehydrogenase and Their Variants in the Genesis of Alcohol-Related Pathology. Proc. Nutr. Soc. 2004, 63, 49–63. [Google Scholar] [CrossRef] [PubMed] [Green Version]
- Lee, S.L.; Höög, J.O.; Yin, S.J. Functionality of Allelic Variations in Human Alcohol Dehydrogenase Gene Family: Assessment of a Functional Window for Protection against Alcoholism. Pharmacogenetics 2004, 14, 725–732. [Google Scholar] [CrossRef] [PubMed]
- Singal, A.K.; Bataller, R.; Ahn, J.; Kamath, P.S.; Shah, V.H. ACG Clinical Guideline: Alcoholic Liver Disease. Am. J. Gastroenterol. 2018, 113, 175–194. [Google Scholar] [CrossRef]
- Choudhary, N.S.; Duseja, A. Genetic and Epigenetic Disease Modifiers: Non-Alcoholic Fatty Liver Disease (NAFLD) and Alcoholic Liver Disease (ALD). Transl. Gastroenterol. Hepatol. 2021, 6, 2. [Google Scholar] [CrossRef]
- Chamorro, A.J.; Torres, J.L.; Mirõn-Canelo, J.A.; González-Sarmiento, R.; Laso, F.J.; Marcos, M. Systematic Review with Meta-Analysis: The I148M Variant of Patatin-like Phospholipase Domain-Containing 3 Gene (PNPLA3) Is Significantly Associated with Alcoholic Liver Cirrhosis. Aliment. Pharmacol. Ther. 2014, 40, 571–581. [Google Scholar] [CrossRef]
- Stickel, F.; Buch, S.; Lau, K.; Zu Schwabedissen, H.M.; Berg, T.; Ridinger, M.; Rietschel, M.; Schafmayer, C.; Braun, F.; Hinrichsen, H.; et al. Genetic Variation in the PNPLA3 Gene Is Associated with Alcoholic Liver Injury in Caucasians. Hepatology 2011, 53, 86–95. [Google Scholar] [CrossRef]
- Krawczyk, M.; Rau, M.; Schattenberg, R.M.; Bantel, H.; Pathil, A.; Demir, M.; Kluwe, J.; Boettler, T.; Lammert, F.; Geier, A.A. Combined Effects of the PNPLA3 Rs738409, TM6SF2 Rs58542926, and MBOAT7 Rs641738 Variants on NAFLD Severity: A Multicenter Biopsy-Based Study. J. Lipid Res. 2017, 58, 247–255. [Google Scholar] [CrossRef] [Green Version]
- Pingitore, P.; Pirazzi, C.; Mancina, R.M.; Motta, B.M.; Indiveri, C.; Pujia, A.; Montalcini, T.; Hedfalk, K.; Romeo, S. Recombinant PNPLA3 Protein Shows Triglyceride Hydrolase Activity and Its I148M Mutation Results in Loss of Function. Biochim. Biophys. Acta Mol. Cell Biol. Lipids 2014, 1841, 574–580. [Google Scholar] [CrossRef] [Green Version]
- Kumari, M.; Schoiswohl, G.; Chitraju, C.; Paar, M.; Cornaciu, I.; Rangrez, A.Y.; Wongsiriroj, N.; Nagy, H.M.; Ivanova, P.T.; Scott, S.A.; et al. Adiponutrin Functions as a Nutritionally Regulated Lysophosphatidic Acid Acyltransferase. Cell Metab. 2012, 15, 691–702. [Google Scholar] [CrossRef] [Green Version]
- He, S.; McPhaul, C.; Li, J.Z.; Garuti, R.; Kinch, L.; Grishin, N.V.; Cohen, J.C.; Hobbs, H.H. A Sequence Variation (I148M) in PNPLA3 Associated with Nonalcoholic Fatty Liver Disease Disrupts Triglyceride Hydrolysis. J. Biol. Chem. 2010, 285, 6706–6715. [Google Scholar] [CrossRef] [Green Version]
- Buch, S.; Stickel, F.; Trépo, E.; Way, M.; Herrmann, A.; Nischalke, H.D.; Brosch, M.; Rosendahl, J.; Berg, T.; Ridinger, M.; et al. A Genome-Wide Association Study Confirms PNPLA3 and Identifies TM6SF2 and MBOAT7 as Risk Loci for Alcohol-Related Cirrhosis. Nat. Genet. 2015, 47, 1443–1448. [Google Scholar] [CrossRef] [PubMed]
- Martínez, C.; Galván, S.; Garcia-Martin, E.; Ramos, M.I.; Gutiérrez-Martín, Y.; Agúndez, J.A.G. Variability in Ethanol Biodisposition in Whites Is Modulated by Polymorphisms in the ADH1B and ADH1C Genes. Hepatology 2010. [Google Scholar] [CrossRef]
- Hurley, T.D.; Edenberg, H.J. Genes Encoding Enzymes Involved in Ethanol Metabolism. Alcohol Res. Curr. Rev. 2012, 34, 339–344. [Google Scholar]
- Lieber, C.S. Alcohol and the Liver: 1994 Update. Gastroenterology 1994, 106, 1085–1105. [Google Scholar] [CrossRef]
- Takahashi, T.; Lasker, J.M.; Rosman, A.S.; Lieber, C.S. Induction of Cytochrome P-4502E1 in the Human Liver by Ethanol Is Caused by a Corresponding Increase in Encoding Messenger RNA. Hepatology 1993, 17, 236–245. [Google Scholar] [CrossRef]
- Hayashi, S.I.; Watanabe, J.; Kawajiri, K. Genetic Polymorphisms in the 5′-Flanking Region Change Transcriptional Regulation of the Human Cytochrome P450IIE1 Gene. J. Biochem. 1991, 110, 559–565. [Google Scholar] [CrossRef] [Green Version]
- Piao, Y.F.; Li, J.T.; Shi, Y. Relationship between Genetic Polymorphism of Cytochrome P450IIE1 and Fatty Liver. World J. Gastroenterol. 2003, 9, 2612–2615. [Google Scholar] [CrossRef]
- Tanaka, F.; Shiratori, Y.; Yokosuka, O.; Imazeki, F.; Tsukada, Y.; Omata, M. Polymorphism of Alcohol-Metabolizing Genes Affects Drinking Behavior and Alcoholic Liver Disease in Japanese Men. Alcohol. Clin. Exp. Res. 1997. [Google Scholar] [CrossRef]
- Tsutsumi, M.; Takada, A.; Wang, J.S. Genetic Polymorphisms of Cytochrome P4502E1 Related to the Development of Alcoholic Liver Disease. Gastroenterology 1994, 107, 1430–1435. [Google Scholar] [CrossRef]
- Wong, N.A.C.S.; Rae, F.; Simpson, K.J.; Murray, G.D.; Harrison, D.J. Genetic Polymorphisms of Cytochrome P4502E1 and Susceptibility to Alcoholic Liver Disease and Hepatocellular Carcinoma in a White Population: A Study and Literature Review, Including Meta-Analysis. J. Clin. Pathol. Mol. Pathol. 2000, 53, 88–93. [Google Scholar] [CrossRef] [Green Version]
- Pirmohamed, M.; Kitteringham, N.R.; Quest, L.J.; Allott, R.L.; Green, V.J.; Gilmore, I.T.; Park, B.K. Genetic Polymorphism of Cytochrome P4502e1 and Risk of Alcoholic Liver Disease in Caucasians. Pharmacogenetics 1995, 5, 351–357. [Google Scholar] [CrossRef]
- Vidal, F.; Lorenzo, A.; Auguet, T.; Olona, M.; Broch, M.; Gutiérrez, C.; Aguilar, C.; Estupiñà, P.; Santos, M.; Richart, C. Genetic Polymorphisms of ADH 2, ADH 3, CYP 4502E1 Dra-I and Pst-I, and ALDH 2 in Spanish Men: Lack of Association with Alcoholism and Alcoholic Liver Disease. J. Hepatol. 2004, 41, 744–750. [Google Scholar] [CrossRef]
- Cichoz-Lach, H.; Partycka, J.; Nesina, I.; Celiński, K.; Słomka, M. The Influence of Genetic Polymorphism of CYP2E1 on the Development of Alcohol Liver Cirrhosis. Wiad. Lek. 2006, 59, 757–761. [Google Scholar]
- Sebat, J.; Lakshmi, B.; Troge, J.; Alexander, J.; Young, J.; Lundin, P.; Månér, S.; Massa, H.; Walker, M.; Chi, M.; et al. Large-Scale Copy Number Polymorphism in the Human Genome. Science 2004, 305, 525–528. [Google Scholar] [CrossRef] [Green Version]
- Sulovari, A.; Liu, Z.; Zhu, Z.; Li, D. Genome-Wide Meta-Analysis of Copy Number Variations with Alcohol Dependence. Pharm. J. 2018, 18, 398–405. [Google Scholar] [CrossRef] [PubMed]
- Rodríguez-López, J.; Flórez, G.; Blanco, V.; Pereiro, C.; Fernández, J.M.; Fariñas, E.; Estévez, V.; Gómez-Trigo, J.; Gurriarán, X.; Calvo, R.; et al. Genome Wide Analysis of Rare Copy Number Variations in Alcohol Abuse or Dependence. J. Psychiatr. Res. 2018, 103, 212–218. [Google Scholar] [CrossRef] [PubMed]
- Ulloa, A.E.; Chen, J.; Vergara, V.M.; Calhoun, V.; Liu, J. Association between Copy Number Variation Losses and Alcohol Dependence across African American and European American Ethnic Groups. Alcohol. Clin. Exp. Res. 2014, 38, 1266–1274. [Google Scholar] [CrossRef] [Green Version]
- Agúndez, J.A.G.; Ladero, J.M.; Olivera, M.; Lozano, L.; Fernández-Arquero, M.; de la Concha, E.G.; Díaz-Rubio, M.; Benítez, J. N-Acetyltransferase 2 Polymorphism Is Not Related to the Risk of Advanced Alcoholic Liver Disease. Scand. J. Gastroenterol. 2002, 37, 99–103. [Google Scholar] [CrossRef] [PubMed]
- Oliver, J.; Agúndez, J.A.G.; Morales, S.; Fernández-Arquero, M.; Fernández-Gutierrez, B.; de la Concha, E.G.; Díaz-Rubio, M.; Martín, J.; Ladero, J.M. Polymorhisms in the Transforming Growth Factor-Β1 Gene (TGF-Β1) and the Risk of Advanced Alcoholic Liver Disease. Liver Int. 2005, 25, 935–939. [Google Scholar] [CrossRef] [PubMed]
- Agúndez, J.; Ladero, J.; Díaz-Rubio, M.; Benítez, J. Rsa I Polymorphism at the Cytochrome P4502E1 Locus Is Not Related to the Risk of Alcohol-Related Severe Liver Disease. Liver 1996, 16, 380–383. [Google Scholar] [CrossRef]
- Gullstén, H.; Agúndez, J.A.G.; Benítez, J.; Läärä, E.; Ladero, J.M.; Díaz-Rubio, M.; Fernandez-Salguero, P.; Gonzalez, F.; Rautio, A.; Pelkonen, O.; et al. CYP2A6 Gene Polymorphism and Risk of Liver Cancer and Cirrhosis. Pharmacogenetics 1997, 7, 247–250. [Google Scholar] [CrossRef]
- Ladero, J.M.; Fernández-Arquero, M.; Tudela, J.I.; Agúndez, J.A.G.; Díaz-Rubio, M.; Benítez, J.; de La Concha, E.G. Single Nucleotide Polymorphisms and Microsatellite Alleles of Tumor Necrosis Factor Alpha and Interleukin-10 Genes and the Risk of Advanced Chronic Alcoholic Liver Disease. Liver 2002, 22, 245–251. [Google Scholar] [CrossRef]
- Ladero, J.M.; Martínez, C.; García-Martin, E.; Fernández-Arquero, M.; López-Alonso, G.; de La Concha, E.G.; Díaz-Rubio, M.; Agúndez, J.A.G. Polymorphisms of the Glutathione S-Transferases Mu-1 (GSTM1) and Theta-1 (GSTT1) and the Risk of Advanced Alcoholic Liver Disease. Scand. J. Gastroenterol. 2005, 40, 348–353. [Google Scholar] [CrossRef]
- Ayuso, P.; Agúndez, J.A.G.; Alonso-Navarro, H.; Martínez, C.; Benito-León, J.; Ortega-Cubero, S.; Lorenzo-Betancor, O.; Pastor, P.; López-Alburquerque, T.; García-Martín, E.; et al. Heme Oxygenase 1 and 2 Common Genetic Variants and Risk for Essential Tremor. Medicine 2015, 94, e968. [Google Scholar] [CrossRef]
- Purcell, S.; Neale, B.; Todd-Brown, K.; Thomas, L.; Ferreira, M.A.R.; Bender, D.; Maller, J.; Sklar, P.; de Bakker, P.I.W.; Daly, M.J.; et al. PLINK: A Tool Set for Whole-Genome Association and Population-Based Linkage Analyses. Am. J. Hum. Genet. 2007, 81, 559–575. [Google Scholar] [CrossRef] [Green Version]
- Sepanlou, S.G.; Safiri, S.; Bisignano, C.; Ikuta, K.S.; Merat, S.; Saberifiroozi, M.; Poustchi, H.; Tsoi, D.; Colombara, D.V.; Abdoli, A.; et al. The Global, Regional, and National Burden of Cirrhosis by Cause in 195 Countries and Territories, 1990–2017: A Systematic Analysis for the Global Burden of Disease Study 2017. Lancet Gastroenterol. Hepatol. 2020, 5, 245–266. [Google Scholar] [CrossRef] [Green Version]
- Edenberg, H.J. The Genetics of Alcohol Metabolism: Role of Alcohol Dehydrogenase and Aldehyde Dehydrogenase Variants. Alcohol Res. Health 2007, 30, 5–13. [Google Scholar] [PubMed]
- Borràs, E.; Coutelle, C.; Rosell, A.; Fernández-Muixi, F.; Broch, M.; Crosas, B.; Hjelmqvist, L.; Lorenzo, A.; Gutiérrez, C.; Santos, M.; et al. Genetic Polymorphism of Alcohol Dehydrogenase in Europeans: The ADH2*2 Allele Decreases the Risk for Alcoholism and Is Associated with ADH*3. Hepatology 2000, 31, 984–989. [Google Scholar] [CrossRef] [PubMed]
- Lorenzo, A.; Auguet, T.; Vidal, F.; Broch, M.; Olona, M.; Gutiérrez, C.; López-Dupla, M.; Sirvent, J.J.; Quer, J.C.; Santos, M.; et al. Polymorphisms of Alcohol-Metabolizing Enzymes and the Risk for Alcoholism and Alcoholic Liver Disease in Caucasian Spanish Women. Drug Alcohol Depend. 2006, 84, 195–200. [Google Scholar] [CrossRef]
- Rodrigo, L.; Alvarez, V.; Rodriguez, M.; Pérez, R.; Alvarez, R.; Coto Garcia, E. N-Acetyltransferase-2, Glutathione S-Transferase M1, Alcohol Dehydrogenase, and Cytochrome P450IIE1 Genotypes in Alcoholic Liver Cirrhosis: A Case-Control Study. Scand. J. Gastroenterol. 1999, 34, 303–307. [Google Scholar] [CrossRef] [PubMed]
- He, L.; Deng, T.; Luo, H.S. Genetic Polymorphism in Alcohol Dehydrogenase 2 (ADH2) Gene and Alcoholic Liver Cirrhosis Risk. Int. J. Clin. Exp. Med. 2015, 8, 7786–7793. [Google Scholar]
- Gene [ADH1B]. National Center for Biotechnology Information. Bethesda, MD, USA, (NCBI). Available online: https://www.ncbi.nlm.nih.gov/SNP/snp_ref.cgi?locusId=125 (accessed on 17 November 2020).
- Li, D.; Zhao, H.; Gelernter, J. Strong Association of the Alcohol Dehydrogenase 1B Gene (ADH1B) with Alcohol Dependence and Alcohol-Induced Medical Diseases. Biol. Psychiatry 2011, 70, 504–512. [Google Scholar] [CrossRef] [Green Version]
- Osier, M.; Pakstis, A.J.; Kidd, J.R.; Lee, J.F.; Yin, S.J.; Ko, H.C.; Edenberg, H.J.; Lu, R.B.; Kidd, K.K. Linkage Disequilibrium at the ADH2 and ADH3 Loci and Risk of Alcoholism. Am. J. Hum. Genet. 1999, 64, 1147–1157. [Google Scholar] [CrossRef] [Green Version]
- Bierut, L.J.; Goate, A.M.; Breslau, N.; Johnson, E.O.; Bertelsen, S.; Fox, L.; Agrawal, A.; Bucholz, K.K.; Grucza, R.; Hesselbrock, V.; et al. ADH1B Is Associated with Alcohol Dependence and Alcohol Consumption in Populations of European and African Ancestry. Mol. Psychiatry 2012, 17, 445–450. [Google Scholar] [CrossRef] [PubMed]
- Gene [ADH1C]. National Center for Biotechnology Information. Bethesda, MD, USA, (NCBI). Available online: https://www.ncbi.nlm.nih.gov/SNP/snp_ref.cgi?locusId=126 (accessed on 19 November 2020).
- Way, M.; McQuillin, A.; Saini, J.; Ruparelia, K.; Lydall, G.J.; Guerrini, I.; Ball, D.; Smith, I.; Quadri, G.; Thomson, A.D.; et al. Genetic Variants in or near Adh1b and Adh1c Affect Susceptibility to Alcohol Dependence in a British and Irish Population. Addict. Biol. 2015, 20, 594–604. [Google Scholar] [CrossRef]
- Yamauchi, M.; Maezawa, Y.; Mizuhara, Y.; Ohata, M.; Hirakawa, J.; Nakajima, H.; Toda, G. Polymorphisms in Alcohol Metabolizing Enzyme Genes and Alcoholic Cirrhosis in Japanese Patients: A Multivariate Analysis. Hepatology 1995, 22, 1136–1142. [Google Scholar] [CrossRef]
- Chao, Y.-C.; Liou, S.-R.; Chung, Y.-Y.; Tang, H.-S.; Hsu, C.-T.; Li, T.-K.; Yin, S.-J. Polymorphism of Alcohol and Aldehyde Dehydrogenase Genes and Alcoholic Cirrhosis in Chinese Patients. Hepatology 1994, 19, 360–366. [Google Scholar] [CrossRef] [PubMed]
- García-Martín, E.; Martínez, C.; Serrador, M.; Alonso-Navarro, H.; Navacerrada, F.; Agúndez, J.A.G.; Jiménez-Jiménez, F.J. Alcohol Dehydrogenase 2 Genotype and Risk for Migraine. Headache 2010, 50, 85–91. [Google Scholar] [CrossRef]
- García-Martín, E.; Diez-Fairen, M.; Pastor, P.; Gómez-Tabales, J.; Alonso-Navarro, H.; Alvarez, I.; Cárcel, M.; Aguilar, M.; Agúndez, J.A.G.; Jiménez-Jiménez, F.J. Association between the Missense Alcohol Dehydrogenase Rs1229984T Variant with the Risk for Parkinson’s Disease in Women. J. Neurol. 2019, 266, 346–352. [Google Scholar] [CrossRef] [PubMed]
- Jiménez-Jiménez, F.J.; Alonso-Navarro, H.; García-Martín, E.; Agúndez, J.A.G. Alcohol Consumption and Risk for Parkinson’s Disease: A Systematic Review and Meta-Analysis. J. Neurol. 2019, 266, 1821–1834. [Google Scholar] [CrossRef] [PubMed]
- Jiménez-Jiménez, F.J.; Gómez-Tabales, J.; Alonso-Navarro, H.; Zurdo, M.; Turpín-Fenoll, L.; Millán-Pascual, J.; Adeva-Bartolomé, T.; Cubo, E.; Navacerrada, F.; Rojo-Sebastián, A.; et al. Association between the Rs1229984 Polymorphism in the Alcohol Dehydrogenase 1B Gene and Risk for Restless Legs Syndrome. Sleep 2017, 40. [Google Scholar] [CrossRef]
- Grove, J.; Brown, A.S.J.M.; Daly, A.K.; Bassendine, M.F.; James, O.F.W.; Day, C.P. The RsaI Polymorphism of CYP2E1 and Susceptibility to Alcoholic Liver Disease in Caucasians: Effect on Age of Presentation and Dependence on Alcohol Dehydrogenase Genotype. Pharmacogenetics 1998, 8, 335–342. [Google Scholar] [CrossRef]
- Khan, A.J.; Ruwali, M.; Choudhuri, G.; Mathur, N.; Husain, Q.; Parmar, D. Polymorphism in Cytochrome P450 2E1 and Interaction with Other Genetic Risk Factors and Susceptibility to Alcoholic Liver Cirrhosis. Mutat. Res. Fundam. Mol. Mech. Mutagenesis 2009, 664, 55–63. [Google Scholar] [CrossRef] [PubMed]
- Henrichsen, C.N.; Chaignat, E.; Reymond, A. Copy Number Variants, Diseases and Gene Expression. Hum. Mol. Genet. 2009, 18, R1–R8. [Google Scholar] [CrossRef] [PubMed] [Green Version]
- García-Bañuelos, J.; Panduro, A.; Gordillo-Bastidas, D.; Gordillo-Bastidas, E.; Muñoz-Valle, J.F.; Gurrola-Díaz, C.M.; Sánchez-Enríquez, S.; Ruiz-Madrigal, B.; Bastidas-Ramírez, B.E. Genetic Polymorphisms of Genes Coding to Alcohol-Metabolizing Enzymes in Western Mexicans: Association of CYP2E1*c2/CYP2E1*5B Allele with Cirrhosis and Liver Function. Alcohol. Clin. Exp. Res. 2012, 36, 425–431. [Google Scholar] [CrossRef] [PubMed]
- Kim, M.S.; Lee, D.H.; Kang, H.S.; Park, H.S.; Jung, S.; Lee, J.W.; Kwon, K.S.; Kim, P.S.; Kim, H.G.; Shin, Y.W.; et al. Genetic Polymorphisms of Alcohol-Metabolizing Enzymes and Cytokines in Patients with Alcohol Induced Pancreatitis and Alcoholic Liver Cirrhosis. Korean J. Gastroenterol. Taehan Sohwagi Hakhoe Chi 2004, 43, 355–363. [Google Scholar] [PubMed]
- Trépo, E.; Gustot, T.; Degré, D.; Lemmers, A.; Verset, L.; Demetter, P.; Ouziel, R.; Quertinmont, E.; Vercruysse, V.; Amininejad, L.; et al. Common Polymorphism in the PNPLA3/Adiponutrin Gene Confers Higher Risk of Cirrhosis and Liver Damage in Alcoholic Liver Disease. J. Hepatol. 2011, 55, 906–912. [Google Scholar] [CrossRef]
Variable | Cirrhosis Patients (N = 164) | Controls (N = 272) | p-Value |
---|---|---|---|
Age (mean ± SD), years | 55.83 ± 10.32 | 23.67 ± 7.38 | 0.000 |
Sex (male/female) | 145/19 | 81/191 | 0.000 |
Alcohol consumption (mean ± SD), g/day | 129.24 ± 62.72 | 2.14 ± 5.34 | 0.000 |
Gene | Variant | Consequence |
---|---|---|
ADH1B | CNV | Deletion/Duplication |
ADH1B | rs1229984 | His48Arg |
ADH1B | rs1041969 | Asn57Lys |
ADH1B | rs6413413 | Thr60Ser |
ADH1B | rs2066702 | Arg370Cys |
ADH1B | CNV | Deletion/Duplication |
ADH1C | rs35385902 | Arg48His |
ADH1C | rs283413 | Gly78X |
ADH1C | rs34195308 | Pro166Ser |
ADH1C | rs1693482 | Arg272Gln |
ADH1C | rs35719513 | Pro352Thr |
ADH1C | CNV | Deletion/Duplication |
CYP2E1 | rs3813867 | Upstream in promoter region |
CYP2E1 | CNV | Deletion/Duplication |
Gene | Variant (SVN id) | Cirrhosis Patients: Number of DNA Samples, (Frequencies for Non-Mutated; Heterozygous; Homozygous) | Controls: Number of DNA Samples, (Frequencies for Non-Mutated; Heterozygous; Homozygous) | Intergroup Comparison OR (95% CI) with Covariates, P; Pa; Pc |
ADH1B | rs1229984 | 151 (0.967, 0.033, 0.000) | 250 (0.880, 0.112, 0.008) | 0.08 (0.01–0.58), 0.003; 0.008; 0.037 |
ADH1B | rs1041969 | 128 (1.000, 0.000, 0.000) | 259 (1.000, 0.000, 0.000) | -- |
ADH1B | rs6413413 | 135 (0.993, 0.007, 0.000) | 258 (0.988, 0.012, 0.000) | 1.66 (0.00–7.15 × 105), 0.685; 0.938; 1.000 |
ADH1B | rs2066702 | 157 (1.000, 0.000, 0.000) | 250 (1.000, 0.000, 0.000) | -- |
ADH1C | rs35385902 | 160 (1.000, 0.000, 0.000) | 229 (1.000, 0.000, 0.000) | -- |
ADH1C | rs283413 | 152 (0.987, 0.013, 0.000) | 240 (0.929, 0.071, 0.000) | 0.07 (0.01–0.69), 0.005; 0.015; 0.037 |
ADH1C | rs34195308 | 149 (1.000, 0.000, 0.000) | 253 (1.000, 0.000, 0.000) | -- |
ADH1C | rs1693482 | 122 (0.377, 0.533, 0.090) | 250 (0.400, 0.448, 0.152) | 0.92 (0.42–2.03), 0.778; 0.843; 1.000 |
ADH1C | rs35719513 | 145 (1.000, 0.000, 0.000) | 245 (1.000, 0.000, 0.000) | -- |
CYP2E1 | rs3813867 | 154 (0.941, 0.052, 0.007) | 250 (0.944, 0.052, 0.004) | 0.43 (0.09–2.12), 0.854; 0.301; 0.501 |
Gene | Variant (Structural Variants) | Cirrhosis Patients: Number of Samples, (Frequencies for One, Two and Three Gene Copies) | Controls: Number of Samples, (Frequencies for One, Two and Three Gene Copies) | Intergroup Comparison OR for CNV Carriers (95% CI), P; Pa, Pc |
ADH1A | CNV | 158 (0.038, 0.962, 0.000) | 229 (0.004, 0.996, 0.000) | 0.04 (0.00–46.94), 0.013; 0.236; 0.944 |
ADH1B | CNV | 156 (0.000, 0.994, 0.006) | 231 (0.000, 1.000, 0.000) | 22.07 (0.00–1.56 × 105), 0.177; 0.334; 0.668 |
ADH1C | CNV | 154 (0.006, 0.994, 0.006) | 232 (0.022, 0.978, 0.000) | 0.17 (0.00–9.03), 0.336; 0.442; 0.589 |
CYP2E1 | CNV | 157 (0.000, 1.000, 0.000) | 236 (0.008, 0.987, 0.004) | 1.13 (0.00–2.84 × 1010), 0.633; 0.992; 0.992 |
Univariate Logistic Regression | Multivariate Logistic Regression | ||||||
---|---|---|---|---|---|---|---|
Gene | Variant (SVN Id) | p Value | β Value (95% CI) | B | p Value | β Value (95% CI) | B |
ADH1A | CNV | 0.043 | 0.11 (0.01–0.93) | −2.20 | 0.924 | - | |
ADH1B | rs1229984 | 0.012 | 0.31 (0.12–0.77) | −1.18 | 0.023 | 0.01 (0.13–0.72) | −2.34 |
ADH1B | rs6413413 | 0.695 | 0.63 (0.06-6.16) | −0.45 | |||
ADH1B | CNV | 1.0 | - | - | |||
ADH1C | rs283413 | 0.021 | 0.175 (0.04–0.77) | −1.74 | 0.090 | ||
ADH1C | rs1693482 | 0.788 | 1.04 (0.76–1.43) | 0.043 | |||
ADH1C | CNV | 0.377 | 2.70 (0.30–24.35) | 0.992 | |||
CYP2E1 | rs3813867 | 1.0 | - | - | |||
CYP2E1 | CNV | 0.641 | 1.79 (0.15–20.55) | 0.581 | |||
Sex | - | <0.001 | 17.99 (10.44–31.01) | 2.89 | <0.001 | 13.38 (3.98–44.95) | 2.59 |
Age | - | <0.001 | 1.27 (1.21–1.33) | 0.24 | <0.001 | 1.25 (1.18–1.33) | 0.23 |
Haplotype Variant (SVN Id) | Genotype | Cirrhosis Patients: Number of Total DNA Samples, (Frequency for Haplotype) | Controls: Number of Total DNA Samples, (Frequency for Haplotype) | Haplotype Association Analysis OR (95% CI), P; Pa; Pc |
---|---|---|---|---|
rs1229984-rs6413413-rs283413-rs1693482 | A-A-G-A | 108 (0.349) | 228 (0.332) | 1.09 (0.48–2.49), 0.464; 0.838; 0.690 |
rs1229984-rs6413413-rs283413-rs1693482 | A-A-T-G | 108 (0.006) | 228 (0.018) | 0.63 (0.03–13.35), 0.179; 0.764; 0.690 |
rs1229984-rs6413413-rs283413-rs1693482 | G-A-G-G | 108 (0.013) | 228 (0.036) | 0.55 (0.05–5.65), 0.081; 0.616; 0.682 |
rs1229984-rs6413413-rs283413-rs1693482 | A-A-G-G | 108 (0.631) | 228 (0.614) | 1.61 (0.71–3.64), 0.393; 0.253; 0.420 |
rs1229984-rs6413413-rs283413 | A-A-T | 119 (0.007) | 230 (0.026) | 0.37 (0.03–4.07), 0.069; 0.417; 0.539 |
rs1229984-rs6413413-rs283413 | G-A-G | 119 (0.015) | 230 (0.047) | 0.27 (0.03–2.27), 0.023; 0.229; 0.420 |
rs1229984-rs6413413-rs283413 | A-A-G | 119 (0.978) | 230 (0.926) | 7.66 (1.56–37.51), 0.002; 0.012; 0.078 |
rs1229984-rs6413413-rs1693482 | G-A-A | 111 (0.003) | 254 (0.014) | 3.08 × 10−5 (0.0–0.06), 0.072; 0.007;0.078 |
rs1229984-rs6413413-rs1693482 | A-A-A | 111 (0.347) | 254 (0.33) | 1.03 (0.52–2.05), 0.62; 0.933; 0.723 |
rs1229984-rs6413413-rs1693482 | G-A-G | 111 (0.013) | 254 (0.042) | 0.08 (0.01–1.04), 0.039; 0.054; 0.114 |
rs1229984-rs6413413-rs1693482 | A-A-G | 111 (0.636) | 254 (0.613) | 1.53 (0.68–3.44), 0.517; 0.303; 0.440 |
rs1229984-rs283413-rs1693482 | G-G-A | 110 (0.004) | 228 (0.019) | 4.45 × 10−4 (0.00–0.18), 0.076; 0.011; 0.078; |
rs1229984-rs283413-rs1693482 | A-G-A | 110 (0.350) | 228 (0.324) | 1.13 (0.50–2.57), 0.346; 0.771; 0.690 |
rs1229984-rs283413-rs1693482 | A-T-G | 110 (0.005) | 228 (0.017) | 0.54 (0.02–11.87), 0.132; 0.697; 0.690 |
rs1229984-rs283413-rs1693482 | G-G-G | 110 (0.011) | 228 (0.033) | 0.66 (0.06–7.1), 0.059; 0.730; 0.690 |
rs1229984-rs283413-rs1693482 | A-G-G | 110 (0.630) | 228 (0.607) | 1.64 (0.72–3.75), 0.344; 0.242; 0.420 |
rs6413413-rs283413-rs1693482 | A-G-A | 113 (0.349) | 228 (0.336) | 1.01 (0.48–2.14), 0.664; 0.979; 0.734 |
rs6413413-rs283413-rs1693482 | A-T-G | 113 (0.007) | 228 (0.025) | 0.05 (0.00–0.96), 0.067; 0.047; 0.114 |
rs6413413-rs283413-rs1693482 | A-G-G | 113 (0.645) | 228 (0.639) | 1.43 (0.64–3.20), 0.745; 0.384; 0.525 |
rs6413413-rs283413 | A-T | 124 (0.008) | 230 (0.037) | 0.09 (0.01–0.85), 0.036; 0.035; 0.106 |
rs6413413-rs283413 | A-G | 124 (0.992) | 230 (0.963) | 9.39 (1.15–76.49), 0.041; 0.036; 0.106 |
rs6413413-rs1693482 | A-A | 117 (0.348) | 254 (0.344) | 0.91 (0.41–2.00), 0.924; 0.807; 0.690 |
rs6413413-rs1693482 | A-G | 117 (0.652) | 254 (0.656) | 1.1 (0.50–2.42), 0.917; 0.813; 0.690 |
rs1229984-rs6413413 | G-A | 125 (0.016) | 258 (0.056) | 0.09 (0.01–0.68), 0.021; 0.019; 0.078 |
rs1229984-rs6413413 | A-A | 125 (0.984) | 258 (0.943) | 9.84 (1.43–67.57), 0.027; 0.020; 0.078 |
rs283413-rs1693482 | G-A | 115 (0.355) | 228 (0.346) | 1.08 (0.46–2.55), 0.741; 0.861; 0.690 |
rs283413-rs1693482 | T-G | 115 (0.007) | 228 (0.024) | 0.06 (0.00–1.05), 0.104; 0.054; 0.114 |
rs283413-rs1693482 | G-G | 115 (0.638) | 228 (0.630) | 1.34 (0.60–3.00), 0.729; 0.477; 0.555 |
rs1229984-rs283413 | A-T | 138 (0.007) | 230 (0.027) | 0.39 (0.03–4.40), 0.074; 0.447; 0.547 |
rs1229984-rs283413 | G-G | 138 (0.014) | 230 (0.054) | 0.31 (0.04–2.56), 0.024; 0.276; 0.428 |
rs1229984-rs283413 | A-G | 138 (0.978) | 230 (0.919) | 6.92 (1.39–34.35), 0.001; 0.018; 0.078 |
Publisher’s Note: MDPI stays neutral with regard to jurisdictional claims in published maps and institutional affiliations. |
© 2021 by the authors. Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (https://creativecommons.org/licenses/by/4.0/).
Share and Cite
Ayuso, P.; García-Martín, E.; Cornejo-García, J.A.; Agúndez, J.A.G.; Ladero, J.M. Genetic Variants of Alcohol Metabolizing Enzymes and Alcohol-Related Liver Cirrhosis Risk. J. Pers. Med. 2021, 11, 409. https://doi.org/10.3390/jpm11050409
Ayuso P, García-Martín E, Cornejo-García JA, Agúndez JAG, Ladero JM. Genetic Variants of Alcohol Metabolizing Enzymes and Alcohol-Related Liver Cirrhosis Risk. Journal of Personalized Medicine. 2021; 11(5):409. https://doi.org/10.3390/jpm11050409
Chicago/Turabian StyleAyuso, Pedro, Elena García-Martín, José A. Cornejo-García, José A. G. Agúndez, and José María Ladero. 2021. "Genetic Variants of Alcohol Metabolizing Enzymes and Alcohol-Related Liver Cirrhosis Risk" Journal of Personalized Medicine 11, no. 5: 409. https://doi.org/10.3390/jpm11050409
APA StyleAyuso, P., García-Martín, E., Cornejo-García, J. A., Agúndez, J. A. G., & Ladero, J. M. (2021). Genetic Variants of Alcohol Metabolizing Enzymes and Alcohol-Related Liver Cirrhosis Risk. Journal of Personalized Medicine, 11(5), 409. https://doi.org/10.3390/jpm11050409