| Literature DB >> 2443436 |
M Manns1, G Gerken, A Kyriatsoulis, C Trautwein, K Reske, K H Meyer Zum Büschenfelde.
Abstract
Antimitochondrial antibodies from patients with primary biliary cirrhosis react with different mitochondrial polypeptides as demonstrated by Western blots. The IgG fractions of a patient with primary biliary cirrhosis Stage I reacting exclusively with a pair of polypeptides at 48,000 daltons (p 48) on Western blot and from a patient with Stage III primary biliary cirrhosis reacting exclusively with a single 62,000 dalton polypeptide (p 62) were labeled with 125I; two radioimmunoassays were established detecting antimitochondrial antibodies against p 62 and p 48, respectively. Autologous sera blocked the assay, but the two reference sera did not block each other. Fourteen of 40 patients with primary biliary cirrhosis reacted with p 62, 6/40 with p 48 and 20 sera with both antigens. Sera from 200 patients with various hepatic and nonhepatic diseases were negative for anti-p 62 and anti-p 48. This collection of sera included 5 patients with nonhepatic autoimmune disorders, 3 with drug-induced pseudolupus syndrome and 2 with syphilis II, which were positive for antimitochondrial antibodies by immunofluorescence. Mitochondrial autoantigens p 62 and p 48 were both localized on mitoplasts, presumably inner mitochondrial membranes; they were thermolabile, trypsin- and chymotrypsin-sensitive, but resistant to DNAase, RNAase and neuraminidase treatments. In cesium chloride density gradients, p 62 floated at 1.28 gm per cm3 and p 48 at 1.30 gm per cm3. Thus, radioimmunoassays have been developed that specifically detect two distinct primary biliary cirrhosis-specific subtypes of antimitochondrial antibodies: anti-p 62 and anti-p 48. All primary biliary cirrhosis sera were positive for at least one of these antimitochondrial antibodies subtypes.(ABSTRACT TRUNCATED AT 250 WORDS)Entities:
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Year: 1987 PMID: 2443436 DOI: 10.1002/hep.1840070517
Source DB: PubMed Journal: Hepatology ISSN: 0270-9139 Impact factor: 17.425