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Biomedical subjects

E M Tan

Publications and source records attributed to E M Tan.

At least 19 recordsLinked to original sources

Antinuclear autoantibodies in women with silicone breast implants.

Clinical syndromes resembling autoimmune diseases have been reported in women who have had breast augmentation procedures. To see whether there is a humoral immune response in these diseases that is similar to the immune response in their idiopathic counterparts, we assessed the immunological specificity of antinuclear antibodies (ANAs) and certain epidemiological features in 24 patients, all of whom (with 1 exception) had received silicone gel breast implants. ANA specificities were identified by indirect immunofluorescence, immunodiffusion, western blot analysis, and immunoprecipitation of radiolabelled intracellular proteins. Of 11 patients who had symptoms and signs that met criteria for defined autoimmune diseases, 7 had scleroderma or subsets of this disorder and the others had systemic lupus erythematosus, rheumatoid arthritis, or overlapping autoimmune diseases. High ANA titres were present in 10 of these 11 patients and the ANA specificities were similar to those found in the idiopathic forms of the corresponding autoimmune diseases. Trauma, with resultant rupture of implants, accelerated onset of symptoms. 13 other patients had autoimmune disorders of a less clearly defined nature and low titres of ANAs whose specificities could not be identified. ANAs are associated with the development of autoimmune complications in women with silicone breast implants. Further studies are needed to see whether this relation is one of cause and effect and whether ANAs might be early serological markers preceding development of autoimmune symptoms.

Academies and Institutes

Influence of free thiol group(s) on autoantibody-defined epitope of proliferating cell nuclear antigen.

Proliferating cell nuclear Ag (PCNA) is an intranuclear protein involved in DNA replication directed by DNA polymerase delta and is the target Ag of autoantibodies in some patients with SLE. There is evidence that the epitope on PCNA recognized by human autoantibodies is conformation-dependent and is not a continuous peptide sequence. Thimerosal, a mercury-containing sulfhydryl blocking compound, markedly reduced or abolished the reactivity of this autoantibody-defined PCNA epitope. The thimerosal effect was observed in various Ag-detecting systems including indirect immunofluorescence, immunodiffusion, immunoprecipitation, and flow cytometry. The mechanism of the thimerosal effect appeared to be mediated through free but not readily accessible sulfhydryl group or groups. The sulfhydryl-modification by thimerosal could be reversed by competition with thiol-containing compounds. Experimentally induced mAb to PCNA generated by immunization with purified PCNA have been shown to recognize epitopes that are continuous peptide sequences and these epitopes were not affected by thimerosal. It has been shown that the human autoantibody-defined epitope is related to the function of PCNA because autoantibodies are able to inhibit DNA polymerase delta directed DNA replication, whereas experimentally induced antibodies are not. These studies show that certain sulfhydryl groups in PCNA have a role in determining the antigenicity of the epitope recognized by autoantibody and raise the possibility that certain sulfhydryl groups might also be associated with its function.

Autoantibodies

Antibodies in rabbits immunized with cationized IgG react with histones H3 and H4.

OBJECTIVE: Rabbits immunized with cationized rabbit IgG develop antinuclear antibodies. This study was aimed at identifying the reactive antigens. METHODS: Rabbits were immunized with homotypic or allotypic IgG that were physicochemically altered to produce positively charged dimethylpropanamide (polycationic) side chains. RESULTS: Seven of 11 rabbits injected with cationized IgG produced antinuclear antibodies detected by indirect immunofluorescence. By enzyme-linked immunosorbent assay, these were IgG antibodies reacting with histone (H3-H4)2 tetramer and with individual histone polypeptides H3 and H4. The antihistone antibodies were absorbed by cationized IgG but not by normal IgG. CONCLUSION: Cationized IgG appears to possess antigenic determinants of sufficient similarity to produce antibody responses cross-reactive with histones H3 and H4.

Animals

Nucleolar antigens and autoantibodies in hepatocellular carcinoma and other malignancies.

Patients with hepatocellular carcinoma (HCC), gastrointestinal, lung, and ovarian cancers were shown to have autoantibodies to nuclear and nucleolar antigens as detected by immunofluorescence on cell substrates. The frequency of antinuclear antibodies (ANAs) was significantly higher (P less than 0.001) in patients with HCC (57/184 = 31%) than in patients with chronic hepatitis or liver cirrhosis (25/187 = 13%). Although a range of fluorescence patterns was observed, a higher percentage of nucleolar fluorescence was detected in HCC, and three of these nucleolar antigens were identified. They were NOR-90, nucleolus organizer region doublet polypeptides of 93 and 89 kDa involved in RNA polymerase I transcription; fibrillarin, a 34 kDa protein of the nucleolar U3 ribonucleoprotein particle which is engaged in preribosomal RNA processing; and nucleophosmin/protein B23, a 37 kDa polypeptide which is associated with ribosome maturation and cellular proliferation. All these antigens are nucleolar components that are engaged in some aspect of ribosome biosynthesis. Since autoantibodies to these nucleolar antigens have also been found in systemic autoimmune diseases, they do not represent autoimmune reactions unique to cancer but might reflect reaction pathways related to immune responses that are antigen-driven. The ANA response in HCC appears to be dynamic reactions to this antigen-drive since some patients with chronic liver disease showed seroconversion to ANA positivity, marked increase in titer and/or change in antibody specificity preceding or coincident with clinical detection of HCC. These changes in ANA showed a close temporal relationship with transformation from long-established chronic liver disease to HCC.

Antibodies, Neoplasm

Update on autoantibodies to intracellular antigens in systemic rheumatic diseases.

Autoantibodies to nuclear and intercellular antigens have been established as important diagnostic and specific markers for many of the systemic rheumatic diseases. Diseases that have demonstrated specific markers and profiles of autoantibodies include systemic lupus erythematosus, scleroderma, Sjörgren's syndrome, mixed connective tissue disease, drug-induced lupus, and dermatomyositis/polymyositis. The study of molecular biology of the various autoantigens and autoantibodies has led to a better understanding of function and tissue pathogenesis. The clinical diagnostic significance of the various autoantigens and autoantibodies to nuclear and intracellular antigens is discussed in this article.

Antibodies, Antinuclear

Human autoantibody to RNA polymerase I transcription factor hUBF. Molecular identity of nucleolus organizer region autoantigen NOR-90 and ribosomal RNA transcription upstream binding factor.

In dividing eukaryotic cells, nucleoli disperse before mitosis and reform in daughter cells at sites of ribosomal RNA (rRNA) gene clusters that are at the secondary constrictions of chromosomes, called nucleolus organizer regions (NORs). In this study, cDNA clones for a NOR autoantigen (NOR-90) were selected using a specific human autoantibody probe and were subsequently identified to encode an alternative form of the reported human upstream binding factor (hUBF). Results from immunoprecipitation showed that anti-NOR-90 antibodies recognized both forms of hUBF/NOR-90. Our data therefore showed that UBF, a critical factor in the regulation of rRNA transcription, was tightly bound to NOR during mitosis even when rRNA synthesis was thought to be minimal. Furthermore, we identified a nucleolar transcription factor as a novel target for human autoimmune response.

Amino Acid Sequence

Endothelial cell growth factor and heparin regulate collagen gene expression in keloid fibroblasts.

Keloids are benign cutaneous tumours characterized by excess deposition of collagen, specifically type I collagen. We report here that collagen biosynthesis, as measured by hydroxyproline synthesis, was markedly inhibited by 65-80% by the combination of endothelial cell growth factor (ECGF) supplement and heparin in keloid fibroblast cultures. Fibroblast cultures that were incubated with ECGF alone also demonstrated a measurable decrease of approx. 50% in collagen synthesis compared with control cultures. The inhibition of collagen synthesis was related to the down-regulation of collagen gene expression. Quantitative measurements of mRNA-cDNA hybrids revealed that the gene expression of collagen type I was decreased by more than 80% by heparin and ECGF. Markedly diminished levels of mRNA encoding collagen type I were also observed in cultures incubated with ECGF alone. The results show that ECGF and heparin elicit a negative regulatory effect on collagen production, and that this inhibition is due largely to the down-regulation of the pro-alpha 1(I) of type I collagen gene. Furthermore, ECGF has a potent suppressive effect, and heparin provides an additive effect to this inhibitory phenomenon.

Adult

Human autoantibody to a novel protein of the nuclear coiled body: immunological characterization and cDNA cloning of p80-coilin.

Antibodies producing an unusual immunofluorescent pattern were identified in the sera of patients with diverse autoimmune features. This pattern was characterized by the presence of up to six round discrete nuclear bodies in interphase cell nuclei. Immunoblotting analysis showed that these sera recognized an 80-kD nuclear protein, and affinity-purified anti-p80 antibody from the protein band reproduced the fluorescent staining of nuclear bodies. Colloidal gold immunoelectron microscopy showed that the affinity-purified anti-p80 antibody recognized the coiled body, an ultramicroscopic nuclear structure probably first described by the Spanish cytologist Ramon y Cajal. Five cDNA clones were isolated from a MOLT-4 cell lambda gt-11 expression library using human antibody and oligonucleotide probes. The longest cDNA insert was 2.1 kb and had an open reading frame of 405 amino acids. A clone encoding a 14-kD COOH-terminal region of the protein was used for expression of a beta-galactosidase fusion protein. An epitope was present in this COOH-terminal 14-kD region, which was recognized by 18 of 20 sera with anti-p80 reactivity, and affinity-purified antibody from the recombinant protein also reacted in immunofluorescence to show specific staining of the coiled body. This is the first demonstration and molecular cloning of a protein that appears to have particular identification with the coiled body, and it was designated p80-coilin. Autoantibody to p80-coilin may be useful for the elucidation of the structure and function of the coiled body, and the availability of a cDNA sequence could be helpful in further studies to clarify the clinical significance of this autoantibody response.

Amino Acid Sequence

Molecular characterization of an autoantigen of PM-Scl in the polymyositis/scleroderma overlap syndrome: a unique and complete human cDNA encoding an apparent 75-kD acidic protein of the nucleolar complex.

About 50% of patients with the polymyositis/scleroderma (PM-Scl) overlap syndrome are reported to have autoantibodies to a nuclear/nucleolar particle termed PM-Scl. The particle is composed of several polypeptides of which two have been identified as autoantigens. In this report, human cDNA clone coding for the entire 75-kD autoantigen of the PM-Scl particle (PM-Scl 75) was isolated from a MOLT-4 lambda gt-11 library. The deduced amino acid sequence of the cDNA clone represented a protein of 355 amino acids and 39.2 kD; the in vitro translation product of this cDNA migrated in sodium dodecyl sulfate-polyacrylamide gel electrophoresis (SDS-PAGE) at approximately 70 kD. The aberrant migration of the polypeptide in SDS-PAGE was shown to be related to the COOH half that was rich in acidic residues. Authenticity of the cDNA coding for PM-Scl 75 was shown by immunoreactivity of PM-Scl sera with in vitro translation products and recombinant fusion proteins encoded by the cDNA. In addition, rabbit antibodies raised to recombinant fusion protein reacted in immunofluorescence, immunoblotting, and immunoprecipitation with the characteristic features displayed by human anti-PM-Scl sera.

Amino Acid Sequence

Autoantibodies to native myeloperoxidase in patients with pulmonary hemorrhage and acute renal failure.

Sera from 245 patients were screened by indirect immunofluorescence for perinuclear/nuclear staining (P-ANCA) of ethanol-fixed neutrophils, a staining pattern which is associated with the presence of antibodies to myeloperoxidase. Using immunoblot and immunoprecipitation techniques on 15 P-ANCA-positive sera, 13 patients demonstrated antibody to purified or native myeloperoxidase but not to denatured myeloperoxidase. In patients with P-ANCA, the most frequent reason for medical attention was hemoptysis (8/13; 62%). Of the 15 sera with P-ANCA, acute renal failure was identified in 9 patients (60%). Five patients (33%) had both. All patients (eight of eight) with hemoptysis had antibodies which bound functional MPO as compared to three of seven P-ANCA-positive patients without hemoptysis (P less than 0.001), suggesting that antibodies which recognize conformational sites on native myeloperoxidase occur in a subgroup of patients with alveolar hemorrhage as their presenting clinical sign. These findings may provide insight into the disease process associated with P-ANCA. We further identify a subgroup of patients with a severe pulmonorenal syndrome and antibodies recognizing native myeloperoxidase.

Acute Kidney Injury

Immunological and ultrastructural studies of the nuclear coiled body with autoimmune antibodies.

Studies with human autoimmune sera identified auto-antibodies reacting with a novel antigen of 80 kDa. In interphase mammalian cells, the 80-kDa antigen was enriched in nuclear coiled bodies and was used as a marker for this nuclear structure. This antigen was subsequently named p80-coilin. By light and electron microscopic immunocytochemistry, a number of other antigens were also localized to the coiled body, including components of small nuclear ribonucleoproteins which are involved in the processing of nucleolar and extranucleolar RNA. Although the function of the coiled body is unknown, the presence of these subcellular particles might indicate an involvement in RNA metabolism. The identification of a protein highly enriched in this structure and the availability of specific antibodies might help in its isolation and the study of its function.

Animals

Extracellular matrix gene expression by human endothelial and smooth muscle cells.

In this study, the expression of extracellular matrix genes by vascular cells from human iliac blood vessels was characterized on the mRNA steady-state level by slot blot and Northern transfer analyses, as well as by in situ hybridization. Endothelial cells were isolated from adult human iliac arteries and veins, as well as from umbilical veins; smooth muscle cells were isolated from adult human iliac arteries and inferior vena cava. The results show that confluent umbilical vein endothelial cells expressed the genes that encode types I, III, IV and VI collagens, as well as fibronectin and laminin. In contrast, the iliac endothelial cells expressed the genes for types IV and V collagens, fibronectin and laminin; mRNA transcripts for types I, III and VI collagens were not detectable. The smooth muscle cells from iliac arteries or inferior vena cava displayed gene expression for types I, III, IV, V and VI collagens, fibronectin and laminin. The results indicate major differences in gene expression for the various types of collagens by human iliac endothelial and smooth muscle cells. Furthermore, the fetal-derived umbilical endothelial cells displayed differential collagen gene expression from that of adult iliac endothelial cells.

Adolescent

Molecular definition and sequence motifs of the 52-kD component of human SS-A/Ro autoantigen.

Serum SS-A/Ro autoantibodies are commonly found in patients with Sjogren's syndrome, systemic lupus erythematosus, neonatal lupus, and subacute cutaneous lupus. Two proteins of 60 and 52 kD have been described as targets for these autoantibodies. To define the 52-kD component unambiguously, cDNA clones were isolated from human HepG2 and MOLT-4 cell cDNA libraries. The identity of cDNA was established by (a) the specificity of the antibody affinity purified from the recombinant protein, (b) the reactivity of the purified recombinant protein with prototype SS-A/Ro sera in immunoblot and ELISA, and (c) two-dimensional gel comigration of MOLT-4 cell 52-kD protein and the recombinant protein. A 1.9-kb cDNA encoded the complete 52-kD protein containing 475 amino acids (Mr 54,082). Putative zinc-finger domains and a leucine zipper motif were identified in the amino-terminal half of the 52-kD protein, implicating its possible association with DNA/RNA. Sequence homology detected between the 52-kD protein and human ret transforming protein, and mouse T cell gene expression down-regulatory protein rpt-1, may provide leads to the functional role of the 52-kD protein in addition to the possibility that these proteins might constitute members of a subfamily of finger proteins.

Amino Acid Sequence

Modulation of extracellular matrix gene expression by heparin and endothelial cell growth factor in human smooth muscle cells.

We have previously shown that human vascular smooth muscle cells grown for several passages in the presence of heparin and endothelial cell growth factor (ECGF) exhibit profound alterations in the synthesis of extracellular matrix proteins. In the present study, we demonstrate that the mRNA steady-state levels for various matrix macromolecules were altered in the presence of heparin and ECGF, but not ECGF alone. Specifically, the expression of types I and IV collagens, fibronectin, and decorin proteoglycan genes were markedly inhibited, whereas that of versican proteoglycan and beta-actin genes were unaffected. The effects were fully reversible. The suppression of the collagen gene expression was related to decreased collagen production by cells incubated with heparin and ECGF. Thus, heparin and ECGF synergistically elicit a coordinate and selective inhibition of matrix gene expression in human smooth muscle cells.

Actins

Insights into native epitopes of proliferating cell nuclear antigen using recombinant DNA protein products.

A cDNA clone encoding full-length human proliferating cell nuclear antigen (PCNA) was used to generate a panel of in vitro translated labeled protein products with COOH-terminal deletions and to construct a set of fusion proteins with COOH- and NH2-terminal deletions. A rabbit antiserum raised against an NH2-terminal peptide, a well-characterized murine monoclonal antibody (mAb), and 14 human lupus sera with autoantibody to PCNA were analyzed for their reactivity with the constructs using both immunoprecipitation and immunoblotting techniques. The rabbit antiserum reacted in immunoprecipitation and immunoblotting with constructs containing the appropriate NH2-terminal sequence and mAb reacted with a sequence from the midregion of PCNA. These experimentally induced antibodies also reacted with 15-mer synthetic peptides in enzyme-linked immunosorbent assay (ELISA). In contrast, none of the lupus sera reacted with synthetic peptides in ELISA. 9 of the 14 lupus sera also failed to react in Western immunoblotting with any recombinant fusion protein, although they all immunoprecipitated in vitro translated full-length protein. Four of the nine had variable patterns of immunoprecipitation with shorter constructs. The remaining five lupus sera were able to immunoprecipitate translation products as well as Western blot recombinant fusion proteins. From analysis of the patterns of reactivity of human lupus sera, it was deduced that the apparent heterogeneity of human autoantibodies to PCNA could be explained by immune response to highly conformational epitopes. These observations demonstrate that there might be special features in "native" epitopes of intranuclear antigens that are recognized by autoantibodies, and that these special features of native epitopes might not be present in prepared antigen used for experimental immunization. These features may be related to protein folding or to association of the antigen with other intranuclear proteins or nucleic acids, as might occur with antigens that are components of subcellular particles.

Amino Acid Sequence

Effective separation of the 52 kDa SSA/Ro polypeptide from the 48 kDa SSB/La polypeptide by altering conditions of polyacrylamide gel electrophoresis.

A method is described for the separation of the 52 kDa SSA/Ro polypeptide from the 48 kDa SSB/La polypeptide. These two proteins anomalously co-migrate with the same relative mass under conditions of conventional sodium dodecyl sulfate polyacrylamide gel electrophoresis according to Laemmli using a stock solution of acrylamide: bisacrylamide 30:0.8, ratio = 37.5. A higher ratio of monomer to cross-linker, ratio = 172.4 used in a 15% acrylamide solution, readily separates the two peptide chains. This method facilitates the detection of the 52 kDa SSA/Ro component which otherwise might have been incorrectly assigned as a 48 kDa SSB/La polypeptide.

Autoantigens

Dissociation of immune responses to the SS-A (Ro) 52-kd and 60-kd polypeptides in systemic lupus erythematosus and Sjögren's syndrome.

The cellular RNA particle SS-A (Ro) is a target of autoimmune response in many patients with Sjögren's syndrome (SS) and systemic lupus erythematosus (SLE). Recent immunologic, biochemical, and DNA cloning studies have shown that the SS-A particle consists of at least 2 polypeptide components, of 52 kd and 60 kd. Immunodiffusion analysis of 60 sera from patients with primary SS revealed 47 (78%) to be SS-A precipitin positive. Western blotting studies of the sera showed 3 groups of reactivities: 22 (47%) possessed autoantibodies against both the 60-kd and the 52-kd polypeptides, 19 (40%) reacted only with the 52-kd protein, and 6 (13%) were nonreactive in Western blots although positive in immunodiffusion. Fifty-one of 90 SLE sera (57%) were SS-A precipitin positive by immunodiffusion. In Western blots, 24 (47%) possessed antibodies against both the 60-kd and the 52-kd antigens, while 9 (18%) reacted only with the 60-kd protein. Eighteen (35%) were nonreactive by Western blot, although positive by immunodiffusion. Antibody to the 52-kd antigen without concomitant antibody to the 60-kd antigen was seen only in patients with primary SS, whereas antibody to the 60-kd antigen without concomitant antibody to the 52-kd antigen was seen only in SLE patients. Although antibodies to SS-A are detected in both SS and SLE, our findings show that there is dissociation of immune responses to the 2 component antigens of the particle, which may be evidence of different events initiating the autoimmune process in these diseases.

Antibody Formation