Semin Liver Dis 2002; 22(4): 353-364
DOI: 10.1055/s-2002-35705
Copyright © 2002 by Thieme Medical Publishers, Inc., 333 Seventh Avenue, New York, NY 10001, USA. Tel.: +1(212) 584-4662

Genetics in Autoimmune Hepatitis

Peter T. Donaldson
  • Lecturer in Molecular Genetics, Centre for Liver Research, School of Clinical Medical Sciences, University of Newcastle, Newcastle-upon-Tyne, United Kingdom
Further Information

Publication History

Publication Date:
25 November 2002 (online)

ABSTRACT

Current hypotheses suggest that autoimmune hepatitis (AIH) is triggered by an environmental factor in a genetically susceptible host. Multiple genes may interact to produce a ``permissive gene pool'' that determines both disease risk and phenotype. Studies of type 1 AIH have focused on the major histocompatibility complex (MHC), mapping susceptibility to the DRB1 region. Three different molecular models have been proposed based on histidine at DRβ13, lysine at DRβ71, and valine at DRβ86. Although the lysine-71 model has been adapted to explain data from several other studies, the DRβ13 and DRβ86 models are exclusive to their founder populations. It is possible that all three models apply and that the different associations reflect the ``molecular footprint'' of the common environmental triggers in the different study populations. Studies outside the MHC have identified the CTLA4 A+49G, G allele as a possible second risk allele. There are many neutral polymorphisms in the genome, and further studies are currently needed to identify other disease alleles in type 1 AIH.

REFERENCES

  • 1 Dennis C, Gallagher R, Campbell P. Theme issue on the human genome.  Nature . 2001;  409 813-958
  • 2 Czaja A J, Donaldson P T. Genetic susceptibilities for immune expression and liver cell injury in autoimmune hepatitis.  Immunol Rev . 2000;  174 250-259
  • 3 Cardon L R, Bell J I. Association study designs for complex disease.  Nature Reviews . 2001;  2 91-99
  • 4 Becker K G, Simon R M, Bailey-Wilson J E. Clustering of non-major histocompatibility complex susceptibility loci in human autoimmune diseases.  Proc Natl Acad Sci USA . 1998;  95 9979-9984
  • 5 Anonymous. Freely associating.  Nat Genet . 1999;  22 1-2
  • 6 Risch N J. Searching for genetic determinants in the new millennium.  Nature . 2000;  405 847-856
  • 7 Todd J A. Interpretation of results from genetic studies of multifactorial disease.  Lancet . 1999;  354(Suppl 1) 15-16
  • 8 Todd J A. Tackling common disease.  Nature . 2001;  411 537-539
  • 9 Donaldson P, Agarwal K, Craggs A. HLA and interleukin-1 gene polymorphisms in primary biliary cirrhosis associations with disease progression and disease susceptibility.  Gut . 2001;  48 397-402
  • 10 Milner C M, Campbell D R, Trowsdale J. Molecular genetics of the human major histocompatibility complex. In: Warrens A, Lechler R, eds. HLA in Health and Disease New York: Academic Press 2000: 35-50
  • 11 Eren E, Travers P. The structure of the major histocompatibility complex and its molecular interactions. In: Warrens A, Lechler R, eds. HLA in Health and Disease New York: Academic Press 2000: 23-34
  • 12 Baker R J, Warrens A N. The biology of major histocompatibility complex molecules. In: Warrens A, Lechler R, eds. HLA in Health and Disease New York: Academic Press 2000: 51-72
  • 13 Chen A P, Purcell A W, McCluskey J. The biology of major histocompatibility complex molecules. II: Antigen processing and presentation. In: Warrens A, Lechler R, eds. HLA in Health and Disease New York: Academic Press 2000: 73-106
  • 14 Briggs D C, Donaldson P T, Hayes P. A major histocompatibility complex Class III allotype C4B2 associated with primary biliary cirrhosis.  Tissue Antigens . 1987;  29 141-145
  • 15 Manns M P, Bremm A, Schneider P M. HLA DRw8 and complement C4 deficiency as risk factors in primary biliary cirrhosis.  Gastroenterology . 1991;  101 1367-1373
  • 16 Fanning G C, Bunce M, Black C M. Polymerase chain reaction haplotyping using &3acute; mismatches in the forward and reverse primers: application to the biallelic polymorphisms of tumour necrosis factor and lymphotoxin-α.  Tissue Antigens . 1997;  50 23-31
  • 17 Price P, Witt C, Allcock R. The genetic basis for the association of the 8.1 ancestral haplotype (A1, B8, DR3) with multiple immunopathological diseases.  Immunol Rev . 1999;  167 257-274
  • 18 Tilg H, Diehl A M. Cytokines in alcoholic and non-alcoholic steatohepatitis.  N Engl J Med . 2000;  343 1467-1476
  • 19 Groh V, Bahram S, Bauer S. Cell stress regulated human major histocompatibility complex class I gene-regulated in gastrointestinal epithelium.  Proc Natl Acad Sci USA . 1996;  93 12445-12450
  • 20 Bauer S, Groh V, Wu J. Activation of NK cells and T cells by NKG2D, a receptor for stress inducible MICA.  Science . 1999;  285 727-729
  • 21 Norris S, Doherty D G, McEntee G. Natural T cells in the human liver: cytotoxic lymphocytes with dual T cell and natural killer cell phenotype and function are phenotypically heterogeneous and include Vα24JαQ and γδ T cell receptor bearing cells.  Hum Immunol . 1999;  60 20-31
  • 22 Perez V L, Parijs L V, Biuckians A. Induction of peripheral T cell tolerance in vivo requires CTLA-4 engagement.  Immunity . 1997;  6 411-417
  • 23 McCoy K D, Le Gros G. The role of CTLA-4 in the regulation of T cell immune responses.  Immunol Cell Biol . 1999;  77 1-10
  • 24 Johnson G CL, Esposito L, Barratt B J. Haplotype tagging for the identification of common disease genes.  Nat Genet . 2001;  29 233-237
  • 25 Kristiansen O P, Larsen Z M, Pocoit F. CTLA-4 in autoimmune diseases-a general susceptibility gene to autoimmunity?.  Genes and Immunity . 2000;  1 170-184
  • 26 Bidwell J, Keen L, Gallagher G. Cytokine gene polymorphism in human disease: on-line databases.  Genes and Immunity . 1999;  1 3-19
  • 27 The International SNP Map Working group. A map of the human genome sequence variation containing 1.42 million single nucleotide polymorphisms.  Nature . 2001;  409 928-933
  • 28 Dinarello C A. Biological basis for interleukin-1 in disease.  Blood . 1996;  87 2095-2147
  • 29 Laurincova B. Interleukin-1 family: from genes to human disease.  Acta Univ Palacki Olomuc Fac Med . 2000;  143 19-29
  • 30 Bergholdt R, Larsen Z M, Andersen N A. Characterisation of new polymorphisms in the 5'UTR of the human interleukin-1 receptor type 1 (IL1R1) gene: linkage to type 1 diabetes and correlation to IL-1R1 plasma level.  Genes and Immunity . 2000;  1 495-500
  • 31 Eskdale J, Keijsers V, Huizinga T. Microsatellites and single nucleotide polymorphisms (SNP) combine to form four major haplotype families at the human interleukin-10 (IL-10) locus.  Genes and Immunity . 1999;  1 151-155
  • 32 Mackay I R, Morris P J. Association of autoimmune active hepatitis with HL-A1, 8.  Lancet . 1972;  ii 793-795
  • 33 Czaja A J, Manns M P, McFarlane I G. Autoimmune hepatitis: the investigational and clinical challenges.  Hepatology . 2000;  31 1194-1200
  • 34 Donaldson P T, Manns M P. Immunogenetics of liver disease. In: Bircher J, Benhamou J-P, McIntyre N, et al, eds. Oxford Textbook of Clinical Hepatology Oxford: Oxford University Press 1999: 173-188
  • 35 Oplez G, Votgen A GM, Summerskill W HJ, Schalm S W, Terasaki P I. HLA determinant in chronic active liver disease: a possible relation of HLA-Dw3 to prognosis.  Tissue Antigens . 1977;  9 36-40
  • 36 Lepage V, Degos F, Carella M. HLA-Cw7 and HBS Ag negative chronic active hepatitis.  Tissue Antigens . 1981;  18 105-107
  • 37 Williams M R, Martin S, Falchuk K R. Increased frequency of HLA-DRw4 in chronic active hepatitis.  Vox Sang . 1978;  35 366-369
  • 38 Mackay I R, Tait B D. HLA associations with autoimmune type chronic active hepatitis: identification of B8-DRw3 haplotype by family studies.  Gastroenterology . 1980;  79 95-98
  • 39 Donaldson P T, Doherty D G, Hayllar K M. Susceptibility to autoimmune chronic active hepatitis: human leukocyte antigens DR4 and A1-B8-DR3 are independent risk factors.  Hepatology . 1991;  13 701-706
  • 40 Doherty D G, Donaldson P T, Underhill J A. Allelic sequence variation in the HLA class II genes and proteins in patients with autoimmune hepatitis.  Hepatology . 1994;  19 609-615
  • 41 Strettell M DJ, Donaldson P T, Thompson L J. Allelic basis for HLA-encoded susceptibility to type 1 autoimmune hepatitis.  Gastroenterology . 1997;  112 2028-2035
  • 42 Strettell M DJ, Thomson L J, Donaldson P T. HLA-C genes and susceptibility to type I autoimmune hepatitis.  Hepatology . 1997;  26 1203-1206
  • 43 Cookson S, Constantini P K, Clare M. Frequency and nature of cytokine gene polymorphisms in type 1 autoimmune hepatitis.  Hepatology . 1999;  30 851-856
  • 44 Manabe K, Donaldson P T, Underhill J A. HLA A1-B8-DR3-DQ2-DPB1*0401 extended haplotype in autoimmune hepatitis.  Hepatology . 1993;  18 1334-1337
  • 45 Ota M, Seki T, Kiyosawa K. A possible association between basic amino acids at position 13 of DRB1 chains and autoimmune hepatitis.  Immunogenetics . 1992;  36 49-55
  • 46 Fainboim L, Marcos Y, Pando M. Chronic active autoimmune hepatitis in children: strong association with a particular HLA-DR6 (DRB1*1301) haplotype.  Hum Immunol . 1994;  41 146-150
  • 47 Vazquez-Garcia M N, Alaez C, Olivo A. MHC class II sequences of susceptibility and protection in Mexicans with autoimmune hepatitis.  J Hepatol . 1998;  28 985-990
  • 48 Pando M, Lariba J, Fernadez G C. Paediatric and adult forms of type 1 autoimmune hepatitis in Argentina: evidence for differential genetic predisposition.  Hepatology . 1999;  30 1374-1380
  • 49 Stern L J, Brown J H, Jardetsky T S. Crystal structure of human class II MHC protein HLA-DR1 complexed with influenza virus peptide.  Nature . 1994;  368 215-221
  • 50 Brown J H, Jardetzky T S, Gorga J C. Three-dimensional structure of the human class II histocompatibility antigen HLA-DR1.  Nature . 1993;  304 33-39
  • 51 Nepom G T. A unified hypothesis for the complex genetics of HLA associations with IDDM.  Diabetes . 1990;  39 1153-1157
  • 52 Sheehy M J. HLA and insulin-dependent diabetes: a protective perspective.  Diabetes . 1992;  41 123-129
  • 53 Busch R, Hill C M, Hayball J D. Effect of natural polymorphism at residue 86 of the HLA-DR beta chain on peptide binding.  J Immunol . 1998;  113 244-251
  • 54 Doherty D G, Penzotti J E, Koelle D M. Structural basis of specificity and degeneracy of T cell recognition: pluriallelic restriction of T cell responses to a peptide antigen involves both specific and promiscuous interactions between the T cell receptor, peptide, and HLA-DR.  J Immunol . 1998;  161 3527-3535
  • 55 Nepom G T. HLA and rheumatoid arthritis. In: Warrens A, Lechler R, eds. HLA in Health and Disease New York: Academic Press 2000: 181-186
  • 56 Donaldson P T, Norris S. Immunogenetics in PSC.  Ballieres Clin Gastroenterol . 2001;  15 611-627
  • 57 Mieli-Vergani G, Vergani D. Sclerosing cholangitis in the paediatric patient.  Ballieres Clin Gastroenterol . 2001;  15 681-690
  • 58 Fainboim L, Velasco M CC, Marcos C Y. Protracted, but not acute, hepatitis A virus infection is strongly associated with HLA-DRB1*1301, a marker for paediatric autoimmune hepatitis.  Hepatology . 2001;  33 1512-1517
  • 59 Tapia-Conyer R, Santos J I, Cavalcanti A M. Hepatitis A in Latin America: a changing epidemiologic pattern.  Am J Trop Med Hyg . 1999;  61 825-829
  • 60 Czaja A J, Carpenter H A, Santrach P J. Significance of HLA DR4 in type 1 autoimmune hepatitis.  Gastroenterology . 1993;  105 1502-1507
  • 61 Czaja A J, Strettell M DJ, Thomson L J. Associations between alleles of the major histocompatibility complex and type 1 autoimmune hepatitis.  Hepatology . 1997;  25 317-323
  • 62 Seki T, Ota M, Furuta S. HLA class II molecules and autoimmune hepatitis susceptibility in Japanese patients.  Gastroenterology . 1992;  103 1041-1047
  • 63 Czaja A J, Rakela J, Hay J E. Clinical and prognostic implications of human leukocyte antigen B8 in corticosteroid-treated severe autoimmune chronic active hepatitis.  Gastroenterology . 1990;  98 1587-1593
  • 64 Sanchez-Urdazpal L, Czaja A J, van Hoek B. Prognostic features and role of liver transplantation in severe corticosteroid-treated autoimmune chronic active hepatitis.  Hepatology . 1992;  15 215-221
  • 65 Czaja A J, Donaldson P T, Lohse A W. Antibodies to soluble liver antigen/liver pancreas and HLA risk factors for type 1 AIH.  Am J Gastroenterol . 2002;  97 413-419
  • 66 Czaja A J, Carpenter H A, Santrach P J. Genetic predispositions for the immunological features of chronic active hepatitis.  Hepatology . 1993;  18 816-822
  • 67 Doherty D G, Underhill J A, Donaldson P T. Polymorphism in the human complement C4 genes and susceptibility to autoimmune hepatitis.  Autoimmunity . 1994;  18 243-249
  • 68 Cookson S, Constantini P K, Clare M. Frequency and nature of cytokine gene polymorphisms in type 1 autoimmune hepatitis.  Hepatology . 1999;  30 851-856
  • 69 Bittencourt L P, Palacios S A, Cancado E LR. Autoimmune hepatitis in Brazilian patients is not linked to tumour necrosis factor a polymorphisms at position -308.  J Hepatol . 2001;  35 24-28
  • 70 Norris S, Kondeatis E, Collins R. Mapping MHC-encoded susceptibility and resistance in primary sclerosing cholangitis: the role of MICA polymorphism.  Gastroenterology . 2001;  120 1475-1482
  • 71 Stephens H AF. MICA and MICB genes: can the enigma of their polymorphism be resolved.  Trends in Immunology . 2001;  22 378-385
  • 72 Wiencke K, Spurkland A, Schrumpf E, Boberg K M. Primary sclerosing cholangitis is associated to an extended B8-DR3 haplotype including particular MICA and MICB alleles.  Hepatology . 2001;  34 625-630
  • 73 Manabe K, Hibberd M L, Donaldson P T. T-cell receptor constant germline gene polymorphisms and susceptibility to autoimmune hepatitis.  Gastroenterology . 1994;  106 1321-1325
  • 74 Whittingham S, Mathews J D, Schanfield M S. Interaction of HLA and Gm in autoimmune chronic active hepatitis.  Clin Exp Immunol . 1981;  43 80-86
  • 75 Yanagawa T, Hidaka Y, Guimaraes V. CTLA-4 gene polymorphism associated with Graves' disease in a Caucasian population.  J Clin Endocrinol Metabol . 1995;  80 41-45
  • 76 Kouki T, Sawai Y, Gardine C A. CTLA-4 gene polymorphism at position 49 in exon 1 reduces the inhibitory function of CTLA-4 and contributes to the pathogenesis of Graves' disease.  J Immunol . 2000;  165 6606-6611
  • 77 Van der Auwera J B, Vandewalle C L, Schuit F C. CTLA-4 gene polymorphism confers susceptibility to insulin-dependent diabetes mellitus (IDDM) independently from age and from other genetic or immune disease markers.  Clin Exp Immunol . 1997;  110 98-103
  • 78 Agarwal K, Jones D EJ, Daly A K. CTLA-4 gene polymorphism confers susceptibility to primary biliary cirrhosis.  J Hepatol . 2000;  32 538-541
  • 79 Agarwal K, Czaja A J, Jones D EJ. CTLA-4 polymorphisms and susceptibility to type 1 autoimmune hepatitis.  Hepatology . 2000;  31 49-53
  • 80 Czaja A J, Cookson S, Constantini P K. Cytokine polymorphisms associated with clinical features and treatment outcome in type 1 autoimmune hepatitis.  Gastroenterology . 1999;  117 645-652
  • 81 Donaldson P T, Norris S, Constantini P K, Harrison P, Williams R. The interleukin-1 and interleukin-10 gene polymorphisms in primary sclerosing cholangitis: no associations with disease susceptibility/resistance.  J Hepatol . 2000;  32 882-886
  • 82 Zappala F, Grove J, Watt F E. No evidence for involvement of the interleukin-10 -592 promoter polymorphism in genetic susceptibility to primary biliary cirrhosis.  J Hepatol . 1998;  28 820-823
  • 83 Hampe J, Cuthbert A, Croucher P JP. Association between insertion mutation in NOD2 gene and Crohn's disease in German and British populations.  Lancet . 2001;  357 1925-1928
  • 84 Hugot J-P, Chamaillard M, Zouali H. Association of NOD2 leucine-rich repeat variants with susceptibility to Crohn's disease.  Nature . 2001;  411 599-603
  • 85 Ogura Y, Bonen D K, Inohara N. A frameshift mutation in NOD2 associated with susceptibility to Crohn's disease.  Nature . 2001;  411 603-606
  • 86 Beutler B. Autoimmunity and apoptosis: the Crohn's connection.  Immunity . 2001;  15 5-14
  • 87 Rust C, Gores G J. Apoptosis and liver disease.  Am J Med . 2000;  108 567-574
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