PubMed HealthSearch

Biomedical subjects

F C Arnett

Publications and source records attributed to F C Arnett.

At least 19 recordsLinked to original sources

Racial differences in the frequencies of scleroderma-related autoantibodies.

OBJECTIVE: To determine demographic differences in scleroderma-related autoantibodies. METHODS: One hundred fifty-six patients with systemic sclerosis were prospectively examined for anticentromere antibodies (ACA), anti-topoisomerase I (anti-topo I, or Scl-70), antinucleolar, and anti-U1 RNP autoantibodies. RESULTS: ACA was found in 36% of Caucasians and 4% of American blacks (P = 0.002, odds ratio [OR] 15). Anti-topo I was found in 37% of American blacks, compared with 17% of Caucasians (P = 0.04, OR 3). No significant differences in the frequencies of antinucleolar and anti-U1 RNP autoantibodies were found. CONCLUSION: These data suggest important demographic differences in scleroderma-associated autoantibodies.

Autoantibodies

Abnormal galactosylation of serum IgG in patients with systemic lupus erythematosus and members of families with high frequency of autoimmune diseases.

Gas chromatographic carbohydrate analyses of IgG from 30 patients with idiopathic systemic lupus erythematosus (SLE) revealed lower content of galactose when compared to that in 36 controls of similar ages (mean +/- SD, 3.18 +/- 0.66 vs 3.82 +/- 0.41 galactose residues/mole of IgG, P < 0.001). Abnormal galactosylation was observed in 60% of SLE patients. Analyses of IgG from 58 members of five families, characterized by a high frequency of SLE and other autoimmune diseases and serological abnormalities, and 51 controls of similar age range revealed that IgG galactose deficiency was detectable not only in some members with clinical and serological abnormalities (P < or = 0.001), but also in those without evidence of autoimmune diseases or abnormal serologies (P < or = 0.001). These data indicate that abnormal galactosylation of IgG frequently occurs in asymptomatic members of families with a high frequency of SLE and other autoimmune diseases and suggests that this abnormality may be an indicator for the development of these diseases.

Adult

Autoantibodies in patients with primary pulmonary hypertension: association with anti-Ku.

PURPOSE: Patients with primary pulmonary hypertension (PPH) frequently have Raynaud's phenomenon, serum antinuclear antibodies (ANAs), and/or pulmonary vascular lesions similar to those seen in certain connective tissue diseases, especially scleroderma. A number of relatively disease-specific autoantibodies have been described in connective tissue diseases but have not been studied in patients with PPH. Therefore, sera from PPH patients were studied for a variety of autoantibodies, seeking a possible link between this pulmonary disorder and connective tissue diseases. PATIENTS AND METHODS: Sera from 31 patients with PPH and 24 with secondary pulmonary hypertension (SPH) were studied for the following autoantibodies: anti-centromere (indirect immunofluorescence of Hep-2 cells), anti-CENP-B by immunoblotting and enzyme immunoassay (EIA) using cloned CENP-B fusion protein, anti-topoisomerase I (Scl-70), anti-Ku using immunoblotting of affinity purified antigens, anti-cardiolipin using EIA, and anti-Ro (SS-A), La (SS-B), Sm, nRNP, Jo-1, PM-Scl, and Mi-2 by counter-current immunoelectrophoresis. RESULTS: Anti-Ku antibodies were found in 23% of patients with PPH, 4% with SPH, and none of 24 normal controls (PPH versus SPH, p = 0.06: PPH versus controls, p = 0.01). Antibodies to CENP-B were found in one patient each with PPH and SPH, anti-topoisomerase I in one with SPH, and anti-Ro (SS-A) and La (SS-B) in one with PPH. Overall, 12 patients (39%) with PPH had Raynaud's phenomenon or positive ANA results, with 9 (29%) having more specific autoantibodies associated with connective tissue diseases. CONCLUSIONS: These results further suggest a link between at least a subgroup of patients with PPH and autoimmune connective tissue diseases, with anti-Ku antibodies being a possible new serologic marker.

Adult

Buschke-Ollendorff syndrome associated with elevated elastin production by affected skin fibroblasts in culture.

Buschke-Ollendorff syndrome (BOS; McKusick 16670) is an autosomal dominant connective-tissue disorder characterized by uneven osseous formation in bone (osteopoikilosis) and fibrous skin papules (dermatofibrosis lenticularis disseminata). We describe two patients in whom BOS occurred in an autosomal dominant inheritance pattern. The connective tissue of the skin lesions showed both collagen and elastin abnormalities by electron microscopy. Cultured fibroblasts from both patients produced 2-8 times more tropoelastin than normal skin fibroblasts in the presence of 10% calf serum. Involved skin fibroblasts of one patient produced up to eight times normal levels, whereas apparently uninvolved skin was also elevated more than threefold. In a second patient, whose involvement was nearly complete, elastin production was high in involved areas and less so in completely involved skin. Transforming growth factor-beta 1 (TGF beta 1), a powerful stimulus for elastin production, brought about similar relative increases in normal and BOS strains. Basic fibroblast growth factor, an antagonist of TGF beta 1-stimulated elastin production, was able to reduce elastin production in basal and TGF beta 1 stimulated BOS strains. Elastin mRNA levels were elevated in all patient strains, suggesting that Buschke-Ollendorff syndrome may result, at least in part, from abnormal regulation of extracellular matrix metabolism that leads to increased steady-state levels of elastin mRNA and elastin accumulation in the dermis.

Blotting, Southern

Association of polar amino acids at position 26 of the HLA-DQB1 first domain with the anticentromere autoantibody response in systemic sclerosis (scleroderma).

HLA class II alleles (detected by DNA typing) were determined in 116 Caucasians with systemic sclerosis positive and negative for anticentromere autoantibodies (ACA). Significantly increased frequencies of HLA-DR5(DRw11) (P = 0.009) and the Dw13(DRB1*0403, *0407) subtypes of DR4 (probability corrected, Pc = 0.005) were seen in ACA positive patients, and HLA-DR1 and DRw8 were also increased. These findings appeared to reflect linkage disequilibrium of DR5(DRw11) and many DR4(Dw13) haplotypes with HLA-DQw7 and DR1 with DQw5. In fact, the presence of a DQB1 allele having a polar glycine or tyrosine at position 26 of the DQB1 first domain versus a hydrophobic leucine accounted for 100% of ACA positive Caucasian systemic sclerosis patients compared to 69% of the ACA negative SS patients (P = 0.0008) and 71% of Caucasian controls (P = 0.0003) as well as all 7 ACA patients of non-Caucasian background. Furthermore, the genotype frequency of DQB1 alleles lacking leucine at position 26 was 73% in ACA positive SS patients, compared to 42% of ACA negative patients (P = 1.2 x 10(-5)) and 38% of controls (P = 5.8 x 10(-7)). These data, then, suggest that the second hypervariable region of the HLA-DQB1 chain may form the candidate epitope associated with the ACA response.

Alleles

Association of amino acid sequences in the HLA-DQB1 first domain with antitopoisomerase I autoantibody response in scleroderma (progressive systemic sclerosis).

Previous studies in Caucasians with progressive systemic sclerosis (PSS) have suggested associations of antitopoisomerase I (antitopo I) autoantibodies with either serologically defined HLA-DR2 or DR5. To better define class II HLA associations with the antitopo I response, 161 PSS patients (132 Caucasians and 29 American blacks) were studied for antitopo I autoantibodies by immunodiffusion and immunoblotting, and their HLA-DRB1, DRB3, DQA1, and DQB1 alleles were determined by restriction fragment length polymorphic analysis and DNA oligotyping. Among Caucasians with antitopo I, HLA-DR5(DRB1*1101-*1104), DRB3*0202 and DQw3 (DQw7,8,9) were significantly increased in frequency. In American blacks, however, only HLA-DQB1*0301(DQw7) was significantly increased. The presence of HLA-DQB1*0301(DQw7) and other HLA-DQB1 alleles bearing the uncharged polar amino acid residue tyrosine at position 30 of the outermost domain was found in all antitopo I-positive Caucasian PSS patients compared with 66% of antitopo I-negative PSS patients (pc = 0.007) and 70% of normal controls (pc = 0.008), as well as all antitopo I-positive black patients. The association with HLA-DQB1 was independent of HLA-DR5(DRB1*1101-*1104) or any other HLA-DRB1, DRB3, or DQA1 alleles. Alternative or additional candidate epitopes for this autoimmune response include alanine at position 38 and threonine at position 77 of these same DQB1 alleles. These data suggest that genetic predisposition to the antitopo I response in PSS is associated most closely with the HLA-DQB1 locus.

Alleles

Genetics of systemic lupus erythematosus.

Systemic lupus erythematosus (SLE) is a complex autoimmune disease in which multiple genes appear to play important roles in pathogenesis. Hereditary deficiencies, both complete and partial, of several components of the complement system clearly predispose to lupus. HLA class II alleles appear to mediate specific autoantibodies, many of which are pathogenic. Modern molecular techniques are now providing insight into the specific major histocompatibility complex class II polymorphisms that are associated with different autoantibodies in SLE. Other genetic systems also may be important.

Complement System Proteins

The immunogenetics of Sjögren's syndrome.

The fact that patients with SS, either primary or associated with another connective tissue disease, show a striking tendency toward familial aggregation of SS, other autoimmune disease and autoantibodies suggest a role for genetic factors in the pathogenesis of this disease. What these factors are is as yet not known; however, it is clear that autoantibodies found in high frequency in SS, specifically anti-Ro and anti-La, are associated with HLA class II alleles, found at the HLA-DQA1 and DQB1 loci, which have in common the presence of specific amino acid residues that are found in the second hypervariable region of the first (outermost) domain. Additional roles for T-lymphocyte receptor and immunoglobulin genes are also suggested. Family studies, however, indicate the presence of an additional autosomal dominant gene(s), not linked to HLA or immunoglobulin heavy or light chain genes, in predisposition to SS. Identification of this additional genetic factor(s) should provide important clues in the pathogenesis of SS.

Amino Acid Sequence

Specific amino acid residues in the second hypervariable region of HLA-DQA1 and DQB1 chain genes promote the Ro (SS-A)/La (SS-B) autoantibody responses.

In order to define the HLA-DR and DQ alleles, as well as the specific DQA1 and DQB1 chain genes involved in the anti-Ro/La autoantibody responses, RFLP analysis and sequence-specific oligonucleotide typing was carried out on 58 Caucasians and 48 American blacks with SLE or Sjögren's syndrome and anti-Ro antibodies. Among both Caucasian and black patients, the highest relative risk for the anti-Ro response (both with and without accompanying anti-La) was conferred by heterozygosity for the DQw2.1 (in linkage disequilibrium with HLA-DR3) and DQw6 (a subtype of DQw1) alleles compared with either 269 normal race-matched controls or 80 anti-Ro negative SLE/Sjögren's syndrome patients. Analysis of individual DQA1 and DQB1 chain alleles revealed that DQA1*0501 and DQB1*0201 were most frequent, followed by DQA1 and DQB1 alleles comprising DQw6. In patients not possessing DQw2.1 and/or DQw6 alleles, HLA-DQB1*0302 and HLA-DQA1*0401 (especially in blacks) were significantly increased. Nucleotide sequence analysis of these associated alleles showed that 100% of patients with anti-Ro had a glutamine residue at position 34 of the outermost domain of the DQA1 chain and/or a leucine at position 26 of the outermost domain of the DQB1 chain. Patients with anti-Ro plus La were more likely to have all four of their DQA1/DQB1 chains containing these amino acid residues than either anti-Ro-negative SLE patients or controls. These data implicate specific amino acid residues on both DQA1 and DQB1 chains located in the floor of the Ag binding cleft of the HLA-DQA1:B1 heterodimer and further suggest a role for "gene dosage" in the anti-Ro (+/- La) autoantibody response.

Alleles

Quantitative and antigenic differences in complement component C4 between American blacks and whites.

A population of 98 healthy Black Americans was studied in order to determine normal ranges for total C4, C4A and C4B. Mean total C4 in Blacks measured by an enzymelinked immunoassay (EIA) was 44 +/- 12.8 mg/dl which was significantly different (p less than 0.001) from Caucasian levels of 31.7 +/- 11.5 mg/dl. The difference in total C4 was due to increased levels of C4B in Blacks (means = 24.4 mg/dl) as compared to Whites (means = 15.7 mg/dl; p less than 0.001). These results remained significantly different even when 8 samples having the C4A 91 phenotype were excluded. Since EIAs using monoclonal antibodies with Ch 1 specificity may yield false results, C4 allotyping is recommended when quantitating C4A and C4B levels in Blacks.

Alleles

Molecular analysis of major histocompatibility complex alleles associated with the lupus anticoagulant.

Autoantibodies to phospholipids (APA) occur frequently in systemic lupus erythematosus (SLE) and other autoimmune disorders and predispose to intravascular thromboses. Major histocompatibility complex (MHC) class II alleles (HLA-DR and DQ) were determined by restriction fragment length polymorphisms (RFLP) in 20 patients with APA (lupus anticoagulant). HLA-DQw7 (DQB1*0301), linked to HLA-DR5 and -DR4 haplotypes, occurred in 70% and was significantly increased compared to 139 race-matched normal controls (P = 0.002, P corrected [pc] = 0.05, odds ratio [OR] = 5.1). Moreover, the frequency of HLA-DQw7 was significantly higher in SLE patients with APA as compared with patients without APA but with other autoantibodies, including anti-Ro and La (P = 0.0001, pc = 0.002, OR = 10.7), anti-Ro alone (P = 0.001, pc = 0.02, OR = 11.2), anti-dsDNA (P = 0.001, pc = 0.02, OR = 7.1), and possibly anti-Sm (P = 0.04, pc = NS, OR = 6.8) and anti-nRNP (U1-RNP) (P = 0.01, pc = NS, OR = 7.8). The DQB1*0301 allele of DQw7 showed the strongest association, while the frequencies of the DQA1*0301 (45%) and DQA1*0501 (50%) alleles did not differ from the controls. Among the HLA-DQB1*0301 (DQw7) negative patients, all possessed HLA-DQw8 (DQB1*0302) and/or HLA-DQw6 (DQB1*0602 or DQB1*0603) alleles. The HLA-DQB1*0301 chain shares an identical seven amino acid sequence with DQB1*0302, *0602, and *0603 chains in the third hypervariable region of the HLA-DQ molecule. This candidate "epitope" may play a role in mediating an autoimmune response to APA.

Alleles

Diagnosing rheumatoid arthritis: current criteria.

Rheumatoid arthritis is a chronic, systemic inflammatory connective tissue disorder with major effects on the articular system. Causative mechanisms remain unknown, and no specific diagnostic tests are available. Descriptive criteria form the basis of disease classification and diagnosis. Either the 1987 American College of Rheumatology criteria for classification of rheumatoid arthritis or the new rheumatoid arthritis classification tree may be used to diagnose and classify this disease.

Arthritis, Rheumatoid