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P Obermayer-Straub

Publications and source records attributed to P Obermayer-Straub.

At least 19 recordsLinked to original sources

A major CYP2D6 autoepitope in autoimmune hepatitis type 2 and chronic hepatitis C is a three-dimensional structure homologous to other cytochrome P450 autoantigens.

Liver-kidney microsomal antibodies type 1 (LKM) are a diagnostic marker for autoimmune hepatitis type 2 (AIH-2), however, LKM autoantibodies are also detected in a small percentage of patients with chronic hepatitis C. The major target of LKM antibodies as evidenced by indirect immunofluorescence is cytochrome P4502D6 (CYP2D6). Anti-CYP2D6 titers of 62 LKM positive sera, 196 sera of patients with hepatic and rheumatic diseases and 33 sera of healthy blood donors (BD) were determined by an in vitro transcription/in vitro translation assay (ITT). Twenty five out of 26 AIH-2 sera and 33/36 LKM positive hepatitis C virus (HCV) sera were anti-CYP2D6 positive by ITT and antibody titers were similar in both patient groups. Epitope mapping experiments were performed by a series of truncated CYP2D6 proteins and by single epitopes of 257-269, 321-351, 373-389 and 410-419 amino acid (aa) expressed as DHFR-fusion proteins in Escherichia coli. The major linear epitope consists of 257-269 aa. This epitope is recognized with a significantly higher prevalence (64%) in AIH-2 than in LKM sera from patients with chronic hepatitis C (24%) (p < 0.001). None of the other autoepitopes showed significant differences in the prevalence of recognition by sera from both patient groups. Minor binding sites consisted of 321-351 aa, which was recognized by less than 20% of LKM sera and in the C-terminal region of 350-494 aa, which was recognized by less than 5% of LKM sera Our study revealed an epitope of 321-379 an on CYP2D6, which was shown to be conformation dependent. It was recognized by the vast majority of LKM sera, specifically by 76% of sera from HCV positive LKM patients and also by 76% of sera from patients with AIH-2. This epitope is homologous to three-dimensional epitopes detected by autoantibodies directed against hepatic cytochromes P450s in drug induced hepatitis and to an autoepitope on CYP21B associated with adrenal failure.

Amino Acid Sequence↗

Hepatitis C and D, retroviruses and autoimmune manifestations.

Chronic infections with hepatitis C virus (HCV) are associated with various autoimmune manifestations, i.e. mixed cryoglobulinemia, membranoproliferative glomerulonephritis, autoimmune thyroid diseases, sporadic porphyria cutanea tarda and B cell lymphoma. Since exacerbation of hepatitis occurs in 5-10% of HCV patients receiving interferon-alpha treatment and may be successfully treated by immunosuppression afterwards, hepatitis C was also suspected to be associated with autoimmune hepatitis. LKM3 autoantibodies in chronic hepatitis D virus (HDV) infection and epitope recognition are discussed. Lately, endogenous and exogenous retroviruses have been investigated for the induction of autoimmune diseases. Human A type retroviral particles (HIAP), reverse transcriptase activity and anti-HIAP autoantibodies were detected in patients with Sjögren's syndrome. Anti-HIAP and anti-HIV p24 autoantibodies are seen in systemic lupus erythematosus, primary biliary cirrhosis and multiple sclerosis. Multiple sclerosis was even associated with a new human retrovirus called multiple sclerosis associated retrovirus (MSRV). In diabetes long terminal repeats (LTR) were detected in the HLA DQB1 locus, which was shown to associate with an increased risk of diabetes. A second retrovirus called IDDMK(1,2)22 was reported to code for a superantigen, which was implicated as a potential cause of diabetes. This hypothesis, however, was challenged repeatedly. Until now it is unknown whether endogenous retroviruses are aetiological agents of autoimmune diseases or an epiphenomenon, induced by coinfecting viruses (e.g. herpes viruses) and inflammatory processes.

Autoimmunity↗

Identification of cyclosporine A and tacrolimus glucuronidation in human liver and the gastrointestinal tract by a differentially expressed UDP-glucuronosyltransferase: UGT2B7.

BACKGROUND/AIMS: The oral administration of the major transplant immunosuppressants cyclosporine A and tacrolimus leads to unpredictable drug levels requiring drug monitoring. Hepatic and extrahepatic metabolism of cyclosporine A and tacrolimus by cytochrome P450 proteins has been analyzed but metabolism and inactivation by glucuronidation has not been investigated. METHODS: Cyclosporine A and tacrolimus glucuronidation was measured in hepatic and gastrointestinal microsomal protein, and with 11 recombinant hepatic and extrahepatic family 1 and 2 UDP-glucuronosyltransferases. UDP-glucuronosyltransferase transcripts were determined by polymerase chain reaction. RESULTS: Significant cyclosporine and tacrolimus glucuronidation activity was present in endoplasmic reticulum from liver, duodenum, jejunum, ileum and colon, but was absent in stomach. Specific cyclosporine A glucuronidation activity was highest in liver and colon, tacrolimus glucuronidation was highest in liver. Analyses using recombinant UDPglucuronosyltransferases identified UGT2B7 as a human UDP-glucuronosyltransferase with specific activity toward cyclosporine A and tacrolimus. The hepato-gastrointestinal distribution of immunosuppressant glucuronidation activity corresponded to the differential expression pattern of UGT2B7 mRNA. CONCLUSIONS: This study provides conclusive evidence of hepatic and extrahepatic immunosuppressant glucuronidation by human UGT2B7 which was identified to be differentially expressed in the human hepatogastrointestinal tract. Hepatic and extrahepatic glucuronidation may influence the therapeutic efficacy of transplant immunosuppressants.

Administration, Oral↗

Hepatic autoantigens in patients with autoimmune polyendocrinopathy-candidiasis-ectodermal dystrophy.

BACKGROUND & AIMS: Autoimmune polyendocrinopathy-candidiasis-ectodermal dystrophy (APECED) is caused by mutations of both copies of the autoimmune regulator (AIRE) gene. It is characterized by susceptibility to mucocutaneous candidiasis and multiple autoimmune lesions. A serious disease component is hepatitis. To identify diagnostic autoantibodies for APECED hepatitis, sera from 64 patients with APECED were screened for autoantibodies established in the diagnosis of idiopathic autoimmune hepatitis, and for autoantibodies against 10 cytochrome P450s. METHODS: Screening methods were indirect immunofluorescence, Western blot, Ouchterlony gel diffusion, enzyme-linked immunosorbent assay, and immunoprecipitation. RESULTS: Anti-liver microsomal antibodies were detected in 50% of the patients with APECED hepatitis and 11% of those without hepatitis. Prevalences of antinuclear, smooth muscle, anti-liver cytosol, anti-soluble liver protein/liver pancreas, and anti-CYP2D6 autoantibodies were 9%, 6%, 3%, 0%, and 0%, respectively. CYP1A1, CYP2B6, CYP1A2, and CYP2A6 were identified as autoantigens. Thirty percent of patients with anti-CYP2A6 and 100% of patients with anti-CYP1A2 were affected by hepatitis. Despite the high specificity of anti-CYP1A2 for APECED hepatitis, its sensitivity was low (50%). Anti-CYP2A6 and anti-CYP1A2 were not detected in patients with autoimmune hepatitis (N = 68) or nonhepatitic controls (N = 81). CONCLUSIONS: Anti-CYP1A2 is a highly specific but insensitive marker for APECED hepatitis. No clinical correlation was observed for anti-CYP2A6. Autoimmune hepatitis and APECED hepatitis are characterized by different molecular targets of autoantibodies with no overlap.

Adolescent↗

Autoimmune regulator AIRE: evidence for genetic differences between autoimmune hepatitis and hepatitis as part of the autoimmune polyglandular syndrome type 1.

The mechanisms driving the immune-mediated destruction of hepatic tissues in autoimmune hepatitis (AIH) are unknown. Recently the autoimmune regulator (AIRE), a gene associated with the development of the autoimmune polyglandular syndrome type 1 (APS-1), was cloned. About 15% to 20% of APS-1 patients develop hepatitis. However, the role of AIRE mutations in AIH, primary sclerosing cholangitis (PSC), and primary biliary cirrhosis (PBC) is not known. To address this issue patients with AIH (n = 94), PSC (n = 60), and PBC (n = 30) were analyzed for the presence of mutations in exons 6, 8, and 10 of AIRE by single stranded conformation polymorphism and sequence analysis. Autoantibody patterns of patients with defects in AIRE were analyzed by indirect immunofluorescence, enzyme-linked immunosorbent assay and Western blot. Heterozygous mutations of AIRE were identified in 3 patients: a patient with PBC and a patient with AIH type 1 carried a R257X mutation, and a patient with AIH type 2, diabetes mellitus type 1 (IDDM), thyroid disease, and atrophic gastritis carried a G305S mutation in the first PHD ring finger domain of the AIRE protein. None of the 3 patients with a defective AIRE allele showed autoantibodies, which are known to associate with APS-1. These findings show a differential genetic association of autoimmune liver diseases and hepatitis in APS-1. The subgroup of patients with heterozygous mutations in AIRE does not represent patients with an incomplete APS-1 syndrome. However, the Aire gene defect showed that genes involved in the induction of immunologic tolerance provide candidates for etiologic factors in autoimmune liver diseases.

Adolescent↗

LKM3 autoantibodies in hepatitis C cirrhosis: a further phenomenon of the HCV-induced autoimmunity.

Chronic hepatitis C is frequently associated with laboratory markers-including LKM1 autoantibodies--of autoimmunity. A 62-yr-old woman with hepatitis C cirrhosis presented autoantibodies against liver and kidney microsomal proteins. By further evaluation of autoantibodies using ELISA and immunoblotting LKM1 and LKM3 autoantibodies could be revealed. The target antigen of LKM3 autoantibodies proved to be UGT-1.1 isoenzyme. In the absence of chronic hepatitis D infection or autoimmune hepatitis type 2, this is the first case that reports the occurrence of LKM3 autoantibodies in HCV-induced chronic liver disease.

Autoantibodies↗

Polymorphic gene regulation and interindividual variation of UDP-glucuronosyltransferase activity in human small intestine.

UDP-glucuronosyltransferases (UGTs) convert dietary constituents, drugs, and environmental mutagens to inactive hydrophilic glucuronides. Recent studies have shown that the expression of the UGT1 and UGT2 gene families is regulated in a tissue-specific fashion. Human small intestine represents a major site of resorption of dietary constituents and orally administered drugs and plays an important role in extrahepatic UGT directed metabolism. Expression of 13 UGT1A and UGT2B genes coupled with functional and catalytic analyses were studied using 18 small intestinal and 16 hepatic human tissue samples. Hepatic expression of UGT gene transcripts was without interindividual variation. In contrast, a polymorphic expression pattern of all the UGT genes was demonstrated in duodenal, jejunal, and ileal mucosa, with the exception of UGT1A10. To complement these studies, interindividual expression of UGT proteins and catalytic activities were also demonstrated. Hyodeoxycholic acid glucuronidation, catalyzed primarily by UGT2B4 and UGT2B7, showed a 7-fold interindividual variation in small intestinal duodenal samples, in contrast to limited variation in the presence of 4-methylumbelliferone, a substrate glucuronidated by most UGT1A and UGT2B gene products. Linkage of RNA expression patterns to protein abundance were also made with several mono-specific antibodies to the UGTs. These results are in contrast to a total absence of polymorphic variation in gene expression, protein abundance, and catalytic activity in liver. In addition, the small intestine exhibits considerable catalytic activity toward most of the different classes of substrates accepted for glucuronidation by the UGTs, which is supported by immunofluorescence analysis of UGT1A protein in the mucosal cell layer of the small intestine. Thus, tissue-specific and interindividual polymorphic regulation of UGT1A and UGT2B genes in small intestine is identified and implicated as molecular biological determinant contributing to interindividual prehepatic drug and xenobiotic metabolism in humans.

Blotting, Western↗

Distribution and inducibility by 3-methylcholanthrene of family 1 UDP-glucuronosyltransferases in the rat gastrointestinal tract.

UDP-Glucuronosyltransferases (UGT) catalyze the glucuronidation of a broad spectrum of endobiotic and xenobiotic substrates. The resulting glucuronides are more hydrophilic, facilitating renal and biliary excretion. Apart from hepatic glucuronidation, high rates of gastrointestinal glucuronidation have been observed. The aim of this study was to characterize the expression of family 1 UGTs (UGT1A) in liver, kidney, and all parts of the rat gastrointestinal tract by reverse transcription polymerase reaction (RT-PCR), Northern blot, and xenobiotic induction experiments. RT-PCR experiments were performed with primers specific for all known rat UGT1A mRNAs. UGT1A1, UGT1A6, and UGT1A7 were expressed in liver, kidney, and the gastrointestinal tract. UGT1A5 transcripts were detected in liver, but not in kidney or gastrointestinal tissue. In contrast, UGT1A2 and UGT1A3 were not expressed in liver or kidney, but were detected in intestine. Low levels of UGT1A3 were detectable in duodenum and jejunum. UGT1A2 was abundantly expressed in the small intestine; expression levels in the stomach and the large intestine were low. Quantitative evaluation of RNA levels by Northern blot revealed expression in gradients, with highest UGT1A mRNA levels in duodenum and decreasing levels in the small and large intestine. Only UGT1A6 was expressed at high levels in the rectum. Rats treated with 3-methylcholanthrene (3-MC) displayed a 10-fold induction of hepatic UGT1A6 and UGT1A7 mRNAs. In gastric tissues and in intestine, induction was 4-fold and 2-fold, respectively. In contrast to the constitutive expression of UGT1A7 in kidney, UGT1A6 was inducible in the liver. Effects of 3-MC on UGT1A1 expression revealed downregulation in the liver and highly variable effects in duodenum and stomach. This study demonstrates tissue-specific expression and tissue-specific induction patterns in rat liver, kidney, and gastrointestinal tract, which may represent the physiological basis of tissue-specific glucuronidation in rats.

Animals↗

Autoimmune hepatitis.

Autoimmune hepatitis (AIH) is a rare disease, characterized by female predominance, hypergammaglobulinemia, autoantibodies, association with HLA DR3 and HLA DR4 and a good response to immunosuppression. Different subtypes of AIH may be distinguished, based on differences in the autoantibody patterns. AIH type 1 is characterized by anti-nuclear (ANA) and/or anti-smooth muscular (SMA) autoantibodies. AIH type 2 is characterized by liver/kidney microsomal autoantibodies (LKM). AIH type 3 may be distinguished by autoantibodies to soluble liver proteins (SLA) or the liver pancreas antigen (LP). AIH-2 affects predominantly pediatric patients and is characterized by a more severe clinical course, a higher frequency of relapse under immunosuppressive treatment and a more frequent progression to cirrhosis. In contrast, AIH types 1 and 3 show a higher age of onset and a better long-term response to immunosuppressive treatment. At present, the treatment of choice is prednisone alone or a combination with prednisone and azathioprine. Both treatment protocols show high survival rates. However, a rate of 13% of treatment failures and the failure to induce permanent remission in most patients underlines the urgent need to develop additional treatment regimens. A yet unknown genetic predisposition is believed to act as the underlying etiological factor in AIH. This genetic predisposition includes a few known risk factors such as the presence of HLA DR3 or HLA DR4, deletions of C4A alleles and female gender. Furthermore, it has to be postulated that defects in immunoregulatory genes exist. A model for such defects may be the autoimmune polyglandular syndrome type 1 (APS1), which results from the defects in a single gene, the autoimmune regulator type 1 (AIRE-1). Patients with APS1 suffer from mucocutaneous candidiasis and a number of organ-specific autoimmune diseases. Characteristic is a high variability in the number and character of the disease components in APS1, indicating that other genetic and environmental factors may strongly modulate the outcome of disease. Environmental factors may comprise chemical influences, such as nutritional compounds and drugs, or virus infections. Several drugs or chemicals were shown to induce hepatitis with autoimmune involvement, e.g. tienilic acid, dihydralazine and halothane. Adduct formation of an activated metabolite is believed to act as a trigger and to induce a specific immune response. Similarly, viruses were repeatedly shown to trigger autoimmune hepatitis. In virus infections, sequence similarities between viral and self-proteins may trigger autoimmune processes and the simultaneous presence of inflammatory cytokines during virus infection may further increase the risk of developing self-perpetuating autoimmune reactions which overshoot.

Autoantibodies↗

Target proteins in human autoimmunity: cytochromes P450 and UDP- glucuronosyltransferases.

Cytochromes P450 (CYPs) and UDP-glucuronosyltransferases (UGTs) are targets of autoantibodies in several hepatic and extrahepatic autoimmune diseases. Autoantibodies directed against hepatic CYPs and UGTs were first detected by indirect immunofluorescence as antiliver and/or kidney microsomal antibodies. In autoimmune hepatitis (AIH) type 2, liver and/or kidney microsomal (LKM) type 1 autoantibodies are detected and are directed against CYP2D6. About 10% of AIH-2 sera further contain LKM-3 autoantibodies directed against family 1 UGTs. Chronic infections by hepatitis C virus and hepatitis delta virus may induce several autoimmune phenomena, and multiple autoantibodies are detected. Anti-CYP2D6 autoantibodies are detected in up to 4% of patients with chronic hepatitis C, and anti-CYP2A6 autoantibodies are detected in about 2% of these patients. In contrast, 14% of patients with chronic hepatitis delta virus infections generate anti-UGT autoantibodies. In a small minority of patients, certain drugs are known to induce immune-mediated, idiosyncratic drug reactions, also known as 'druginduced hepatitis'. Drug-induced hepatitis is often associated with autoantibodies directed against hepatic CYPs or other hepatic proteins. Typical examples are tienilic acid-induced hepatitis with anti-CYP2C9, dihydralazine hepatitis with anti-CYP1A2, halothane hepatitis with anti-CYP2E1 and anticonvulsant hepatitis with anti-CYP3A. Recent data suggest that alcoholic liver disease may be induced by mechanisms similar to those that are active in drug-induced hepatitis. Autoantibodies directed against several CYPs are further detected in sera from patients with the autoimmune polyglandular syndrome type 1. Patients with autoimmune polyglandular syndrome type 1 with hepatitis often develop anti-CYP1A2; patients with adrenal failure develop anti-CYP21, anti- CYP11A1 or CYP17; and patients with gonadal failure develop anti-CYP11A1 or CYP17. In idiopathic Addison disease, CYP21 is the major autoantigen.

Autoantibodies↗

Epitope mapping of cytochrome P4502D6 autoantigen in patients with chronic hepatitis C during alpha-interferon treatment.

BACKGROUND/AIMS: Cytochrome P450 2D6 (CYP2D6) has been documented as the major target antigen of liver kidney microsomal autoantibodies type-1 (anti-LKM-1) in both autoimmune hepatitis type-2 (AIH-2) and hepatitis C (HCV). In HCV/anti-LKM-1-positive patients, the choice between alpha-interferon (alpha-IFN) or immunosuppression may be difficult. This study was conducted to evaluate the course and outcome of alpha-IFN therapy in HCV/anti-LKM-1-positive and -negative patients and the alterations in these autoantibody titers by the indirect immunofluorescence and a novel radioligand assay. Epitope mapping was also performed to screen for a potential shift in anti-LKM-1 binding towards small linear epitopes, which are more often detected in AIH-2 patients. METHODS: Twenty-one patients with HCV infection received alpha-IFN. Seven patients were anti-LKM-1 positive (study group) and 14 patients were anti-LKM-1 negative (disease control group). Anti-CYP2D6 detection was based on immunoprecipitation of [35S]-methionine-labeled CYP2D6 recombinant protein (rCYP2D6) produced by in vitro transcription/translation. RESULTS: Four out of seven (57%) patients in the study group and 5/14 (36%) in the disease control group initially responded, but subsequently relapsed. During follow-up, alanine aminotransferase significantly increased in the study group compared to the disease control group (p<0.01). A slight increase, followed by a plateau of autoantibody titers was recorded by the radioligand assay and by indirect immunofluorescence during therapy and follow-up in most cases. In one patient, however, gamma-globulins and anti-LKM-1 titers increased, reaching very high levels (1:40 960). alpha-IFN was interrupted and immunosuppression was started. HCV/anti-CYP2D6 positive sera recognized CYP2D6 expressed in E. coli and two truncated proteins (aa 250-494 and 321-494). Two out of seven sera, in addition reacted with a small linear epitope of aa 257-269 (one of which also reacted with a C-terminal domain of aa 350-494). CONCLUSIONS: A rather mild deterioration in liver disease was observed in only 1/7 HCV/anti-LKM-1-positive patients during alpha-IFN treatment. This patient showed high anti-CYP2D6 titers before the initiation of therapy, a sharp increase in anti-LKM-1 titers during treatment, and reactivities to a small linear epitope and an infrequently recognized C-terminal domain of CYP2D6. After switching to immunosuppressive treatment, a complete and sustained response was recorded. Further prospective studies from many centers are needed to define whether these features have general, clinical significance or not.

Adolescent↗

Development of cytochrome P450 2D6-specific LKM-autoantibodies following liver transplantation for Wilson's disease -- possible association with a steroid-resistant transplant rejection episode.

BACKGROUND/AIMS: Antibodies to cytochrome P450 2D6, also known as LKM1-autoantibodies, are characteristic for a subgroup of patients with autoimmune hepatitis, but can also occasionally be found in hepatitis C. We observed the occurrence of LKM1-autoantibodies 4 months after liver transplantation for Wilson's disease, in close association with a steroid-resistant rejection episode, in the absence of evidence for autoimmune hepatitis or hepatitis C. METHODS: Sera from several time points prior to and following transplantation were tested for LKM-reactivity by immunofluorescence, ELISA and Western blotting. Antigen specificity was confirmed by Western blotting analysis on different cytochrome P450 isoenzymes. The absence of viral hepatitis C and hepatitis G virus infection was confirmed by polymerase chain reaction. The serum of the organ donor was also tested. RESULTS: All the sera prior to transplantation and up to 4 months after transplantation were LKM-negative by all assay systems used. In the course of a steroid-resistant rejection episode at this time, the patient developed LKM antibodies at high titre (70% in inhibition ELISA) and has remained positive since (now more than 4 years). Reactivity was exclusively to the cytochrome isoenzyme 2D6. Hepatitis C infection never occurred, but hepatitis G was transiently present many years prior to transplantation. The donor serum was negative for all autoantibodies and for hepatitis C and G virus infection. DISCUSSION: We here describe a patient developing LKM1-autoantibodies without evidence of autoimmune or viral hepatitis. The close temporal association with a transplant rejection episode suggests immunological mechanisms of rejection together with hepatocellular injury as a pathogenetic mechanism.

Adult↗

Two cytochromes P450 are major hepatocellular autoantigens in autoimmune polyglandular syndrome type 1.

BACKGROUND & AIMS: Liver disease has been described in 10%-15% of patients with autoimmune polyglandular syndrome type 1 (APS-1). After the discovery of cytochrome P450 1A2 (CYP1A2) as a hepatocellular autoantigen in liver-kidney microsomal autoantibody (LKM)-positive patients with APS-1, the investigation of antiliver antibodies was extended to 11 Sardinian patients with APS-1. METHODS: Indirect immunofluorescence and Western blotting analysis were performed to study the antiliver antibodies. RESULTS: Immunofluorescence revealed LKM antibodies in 3 patients with APS-1, 1 of whom died of fulminant hepatitis. Western blotting showed a liver microsomal protein band of approximately 51 kilodaltons in the LKM-positive sera of these 3 patients. Western blotting performed with recombinant cytochrome P450 enzymes allowed the identification of CYP2A6 as a specific target antigen. CONCLUSIONS: LKM antibodies in APS-1 sera are specifically directed against CYP1A2 or CYP2A6, but their diagnostic and prognostic significance for liver disease remain to be determined.

Adult↗

Autoimmune polyglandular syndromes.

Autoimmune polyglandular syndrome type 1 (APS1) is characterized by a variable combination of disease components: (1) mucocutaneous candidiasis; (2) autoimmune tissue destruction; (3) ectodermal dystrophy. The disease is caused by mutations in a single gene called APECED (autoimmune polyendocrinopathy-candidiasis-ectodermal-dystrophy) or AIRE (autoimmune regulator) coding for a putative transcription factor featuring two zinc-finger (PHD-finger) motifs. APS1 shows a penetrance of 100%, lack of female preponderance and lack of association with HLA-DR. Typically, onset of APS1 occurs in childhood and multiple autoimmune manifestations evolve throughout lifetime. Organ-specific autoantibodies associated with hypoparathyroidism, adrenal and gonadal failures, IDDM, hepatitis and vitiligo are discussed, and autoantibody patterns in APS1 patients are compared with autoantibodies in APS type 2 (APS2). APS2 is characterized by adult onset adrenal failure associated with IDDM and/or hyperthyroidism. APS2 is believed to be polygenic, characterized by dominant inheritance and association with HLA DR3.

Adrenal Insufficiency↗

Cytochromes P450 and uridine triphosphate-glucuronosyltransferases: model autoantigens to study drug-induced, virus-induced, and autoimmune liver disease.

Enzymes of phase I (cytochromes P450) and phase II (UDP [uridine diphosphate]-glucuronosyltransferases) of drug metabolism are targets of autoimmunity in the following chronic liver diseases of different etiology: 1)autoimmune hepatitis (AIH); 2) hepatitis associated with the autoimmune polyendocrine syndrome type 1 (APS-1); 3) virus-induced autoimmunity; and 4) drug-induced hepatitis. AIH is diagnosed by the following: the absence of infection with hepatitis viruses; the presence of a threshold of relevant factors, including circulating autoantibodies, hypergammaglobulinemia, female sex (female/male ratio 4:1), human leukocyte antigen (HLA) B8, DR3, or DR4; and benefit from immunosuppression. Patients with autoimmune hepatitis type 2 (AIH-2) are characterized by antibodies directed against liver and kidney microsomes, by an early onset of autoimmune hepatitis, which is a more aggressive course of the disease, and by a higher prevalence of autoimmunity directed against other organs. The major target of autoimmunity in patients with AIH-2 is cytochrome P450 2D6. Epitope mapping experiments revealed four short linear epitopes on cytochrome P450 2D6, recognized by liver/kidney microsomal autoantibodies type 1 (LKM-1) in patients with AIH-2. In addition, about 10% of the patient sera contain autoantibodies that detect a conformational epitope on UDP-glucuronosyltransferases (UGTs) of family 1. Presently, LKM-1 autoantibodies are used as diagnostic markers for AIH-2. It is unclear whether these autoantibodies have a pathogenetic role. Hepatitis is found in some patients with APS-1. Presumably this also is an autoimmune liver disease. APS-1 patients with hepatitis may develop autoantibodies directed against microsomal P450 enzymes of the liver; however, these autoantibodies do not recognize cytochrome P450 2D6, but they do recognize cytochrome P450 1A2. Autoimmunity in patients with APS-1 usually is directed against several organs simultaneously, and several organ specific autoantibodies may exist. Interestingly, APS-1 patients may produce various anti-cytochrome P450 antibodies. In addition to the hepatic anti-cytochrome P450, 1A2 autoantibodies are directed against steroidogenic cytochromes P450, namely P450 c21, P450 scc, and P450 c17. These autoantibodies correlate with adrenal and ovarian failure and often these steroidal cell autoantibodies precede the manifestation of adrenal or ovarian dysfunction. Whether anti-P450 1A2 autoantibodies have a similar predictive value is not yet known. LKM autoantibodies are further found in association with chronic hepatitis C and D. In chronic hepatitis C, the major target of LKM autoantibodies is cytochrome P450 2D6. Predominantly, conformational epitopes are recognized by LKM-1 sera of patients with chronic hepatitis C. In 13% of patients with chronic hepatitis D, LKM-3 autoantibody is detectable. The target proteins are UGTs of family 1 and in a minority of sera UGTs of family 2. The epitopes are conformational. All hepatic diseases discussed earlier have in common that autoimmunity, which is directed against enzymes of drug metabolizing multigene families. Each disease is characterized by a specific pattern of autoantibodies, with apparently little overlap. For example, LKM-1 autoantibodies, which are directed against P450 2D6, seem to overlap between AIH and chronic hepatitis C. However, a close examination of these autoantibodies shows differences between LKM-1 autoantibodies from patients with chronic hepatitis C and with AIH. In AIH, LKM autoantibodies are more homogenous, titers are higher, and major autoepitopes on cytochrome P450 2D6 are small and linear. LKM autoantibodies in viral hepatitis C are more heterogeneous and there are multiple epitopes, many of which are conformational. These differences indicate the different mechanisms that are involved in the generation of autoimmunity. (ABSTRACT TRUNCATED)

Amino Acid Sequence↗

Differences in the regulation of cytochrome P450 family members during liver regeneration.

BACKGROUND/AIMS: Cytochrome P450 enzymes (P450s) metabolise endogenous substances and a vast variety of drugs. Little is known about the regulation of P450s during pathophysiological conditions in the liver. Therefore we studied the regulation of P450 1A1, 1A2, 2E1 and 3A during liver regeneration after two-thirds hepatectomy. METHODS: Partial hepatectomy or sham surgery was performed in Sprague-Dawley rats. At different time points after surgery, microsomal proteins were isolated and the RNA was prepared. Northern blot analysis, Western blot analysis and enzyme assays for the different P450s were performed. RESULTS: Northern blot analysis showed a transient downregulation of cytochromes P450 1A2 and 2E1 after hepatectomy, while the expression of cytochrome P450 3A remained unaffected. Western blot analysis of microsomal proteins showed that changes of the mRNA levels are not reflected in the protein level, most likely because the half-life of the P450 proteins in hepatocytes is long, and thus a transient mRNA downregulation has little impact on the total amount of protein detected. Differences in the regulation of the enzymatic activities were found for P450 1A2 and 2E1. Interestingly, the metabolic activity of cytochrome P450 2E1 decreased dramatically post-hepatectomy, while the P450 2A1 activity remained unchanged. CONCLUSIONS: Regulatory mechanisms were found on the RNA level and by post-translational mechanisms which downregulate P450 expression and activity during liver regeneration. These results indicate prolonged half-life of drugs during hepatocyte proliferation, and thus also have important implications for therapy in humans.

Animals↗