Search PubMed⌕ Search

Biomedical subjects

T Mimori

Publications and source records attributed to T Mimori.

At least 37 records · Page 2Linked to original sources

Anti-KS: identification of autoantibodies to asparaginyl-transfer RNA synthetase associated with interstitial lung disease.

Autoantibodies to five of the aminoacyl-transfer RNA (tRNA) synthetases have been described, and each is associated with a syndrome of inflammatory myopathy with interstitial lung disease (ILD) and arthritis. Serum KS, from a patient with ILD and inflammatory arthritis without evidence of myositis, immunoprecipitated a tRNA that was distinct from that precipitated by any described anti-synthetase or other reported tRNA-related Abs, along with a protein of 65 kDa. KS serum and IgG fraction each showed significant (88%) inhibition of asparaginyl-tRNA synthetase (AsnRS) activity, but not of any of the other 19 aminoacyl-tRNA synthetase activities. Among 884 patients with connective tissue diseases tested, only two other sera were found to immunoprecipitate tRNAs and proteins of identical gel mobility. These two and KS showed identical immunodiffusion lines using HeLa cell extract. The new sera significantly inhibited AsnRS without significant effects on other synthetases tested. Both patients had ILD but neither had evidence of myositis. These data strongly suggest that these three sera have autoantibodies to AsnRS, representing a sixth anti-synthetase. Anti-KS was more closely associated with ILD than with myositis. Further study of this Abs might prove useful in dissecting the stimuli responsible for the genesis of anti-synthetase autoantibodies.

Adult↗

Takayasu's aortitis with dissection in systemic lupus erythematosus.

A forty-seven-year-old Japanese woman under treatment for systemic lupus erythematosus (SLE), complained of severe back pain. Chest X-ray and MRI showed an aneurysmal dilatation of the ascending aorta. Subsequently an aortic replacement was performed. Microscopically, the resected aorta showed Takayasu's aortitis with chronic dissection. Both aortitis and dissection are rare events in SLE patients. To our knowledge, this is the first report of Takayasu's aortitis with dissection in a patient with SLE.

Aortic Dissection↗

Association of human leukocyte antigen class II genes with autoantibody profiles, but not with disease susceptibility in Japanese patients with systemic sclerosis.

OBJECT: To examine the role of human leukocyte antigen (HLA) class II genes in the development of systemic sclerosis (SSc) as well as in the clinical and serologic expression of SSc in patients. METHODS: HLA-DRB1, DRB3, DRB4, DQB1, and DPB1 alleles were determined by genotyping; and serum antinuclear antibodies were identified using indirect immunofluorescence, double immunodiffusion and immunoprecipitation. PATIENTS: One hundred and five Japanese patients with SSc and 104 race-matched healthy controls. RESULTS: Frequencies of DRB1 and DQB1 alleles were not different between SSc patients and healthy controls, while DPB1*0901 was marginally increased in SSc patients. In contrast, SSc-related autoantibodies were closely associated with the clinical features. HLA class II genes were detected as follows: anti-DNA topoisomerase I antibody with diffuse cutaneous involvement, pulmonary fibrosis, and DRB1*1502-DQB1*0601-DPB1*0901; anti-U1RNP antibody with overlapping features of lupus and/or myositis and DRB1*0401/*0802-DQB1*0302; and anticentromere antibody with limited cutaneous involvement and DRB1*0101-DQB1*0501-DPB1*0402. In the analysis of the association of HLA class II and the clinical features in SSc patients significant differences were obtained only for the increased frequencies of arthritis and rheumatoid factor in patients with DRB1*0405 compared to those without. CONCLUSION: HLA class II genes strongly influence the production of SSc-related autoantibodies rather than the development of SSc. In addition, SSc is a composite disease of distinctive subsets defined by serum autoantibodies, which have specific clinical and HLA class II associations.

Adolescent↗

Autoantibodies in connective tissue diseases: clinical significance and analysis of target autoantigens.

Systemic connective tissue diseases are characterized by the production of a number of autoantibodies directed against various cellular constituents. These autoantibodies are closely associated with certain diseases and clinical manifestations, and are therefore useful for clinical practice such as to diagnose diseases and to predict clinical subsets, disease activity and prognosis. To understand the etiology and pathogenic mechanisms of connective tissue diseases; it is particularly important to elucidate the structure and function of target autoantigens recognized by these disease-specific autoantibodies. In recent years, the nature of many target autoantigens have been identified using molecular biology approaches. Most of them are intracellular enzymes and regulatory factors necessary for important biological function involved in gene replication, transcription, RNA processing and protein translation. Thus, the studies of autoantibodies are useful not only in clinical medicine but also in basic cellular and molecular biology.

Arthritis, Rheumatoid↗

[Autoantibodies and analysis of target antigens].

Autoantibodies in sera from patients with connective tissue diseases mainly target ribonucleoproteins (RNA-protein complexes) that are involved in important cellular functions such as gene transcription, RNA processing and protein translation. These autoantibodies are closely associated with specific diseases and clinical features, and are useful markers for diagnosis, classification of disease subsets, speculation of prognosis and disease activity. These target ribonucleoprotein antigens can be detected and characterized by sensitive RNA-immunoprecipitation technique.

Autoantibodies↗

Subcellular localization and protein-protein interaction regions of Ku proteins.

The Ku protein is a complex of Ku70 and Ku80 subunits and is capable of binding promoters in a sequence-specific manner, although it remains unclear whether Ku is involved in transcriptional regulation. We examined the subcellular localization and determined the interaction regions of Ku. Our results indicate that heterodimers of Ku70 and Ku80 are localized in the nucleus, and that the stretches from amino acid (aa) 378 to 482 of Ku70 and from aa 374 to 502 of Ku80 are necessary for heterodimerization. These interaction regions do not contain any previously recognized protein-protein interaction motifs. To determine whether Ku contains a potential transcriptional activation domain, we examined N- and C-terminal deletion mutants of Ku70 and Ku80 for their ability to activate transcription in the GAL4-based one-hybrid system. We found that the whole Ku protein had no transcriptional activity, although the N-terminal peptide fragment of Ku70 was capable of activating transcription of the HIS3 and lacZ reporter genes in yeast cells.

Antigens, Nuclear↗

TIP49, homologous to the bacterial DNA helicase RuvB, acts as an autoantigen in human.

TATA-binding protein (TBP), a central component for transcriptional regulation, forms complexes with various transcription regulators. We have isolated a novel human cDNA for a 49-kD TBP-interacting protein (TIP49). The human TIP49 was highly homologous to bacterial RuvB proteins that function as a DNA helicase to promote branch migration of the Holliday junction. Immunofluorescence analysis using anti-TIP49 antibody showed a typical dot-shaped nuclear staining pattern, suggesting that TIP49 is included in a macromolecular structure in the nucleus and may participate in nuclear events such as transcription and recombination. Moreover, glycerol gradient analysis demonstrated that TIP49 is present in a macromolecular complex in nuclear extracts. Interestingly, we detected a high level of autoantibodies against TIP49 in sera of patients with autoimmune diseases such as polymyositis/dermatomyositis and autoimmune hepatitis. This indicates that the autoantibody against this protein is a new marker for particular connective tissue diseases. These findings provide further evidence that the macromolecular structures described above are targeted by an autoimmune mechanism. The anti-TIP49 antibodies can be useful probes for clinical diagnosis and for investigation of intranuclear structure.

ATPases Associated with Diverse Cellular Activitie↗

Rapid identification of Leishmania species from formalin-fixed biopsy samples by polymorphism-specific polymerase chain reaction.

The precise identification and classification of Leishmania species is important for public health surveillance since different species cause different clinical features of the disease. A highly specific polymerase chain reaction (PCR) panel was developed to enable the identification of the five major Leishmania species that cause New World cutaneous leishmaniases. The primers used for this panel were designed to distinguish the polymorphism in sequences of commonly amplified DNA bands of the parasites produced by arbitrarily primed PCR. These polymorphism-specific PCR diagnoses were performed with formalin-fixed biopsy specimens of the leishmanial lesions from four patients in Ecuador and one hamster skin lesion, and these lesions were determined to be caused by Leishmania (Viannia) panamensis, L. (Leishmania) mexicana, and L. (L.) amazonensis. The PCR panel may offer an important and practical approach to the standardized identification of Leishmania species in field examinations.

Animals↗

Spectrum and clinical significance of autoantibodies against transfer RNA.

OBJECTIVE: To characterize the clinical features of patients who have autoantibodies against transfer RNA (tRNA) or tRNA-associated proteins. METHODS: Sera from 1,472 patients with suspected systemic rheumatic disease were screened by RNA immunoprecipitation of HeLa cell extracts. The specificities of the antibodies that precipitated tRNAs were further analyzed by immunoprecipitation using deproteinized RNAs and 35S-methionine-labeled HeLa cell extracts, followed by immunoblotting. RESULTS: Forty-one serum samples (2.8%) were found to immunoprecipitate tRNAs. Thirteen patients were identified as having previously defined anti-aminoacyl-tRNA synthetase antibodies (anti-histidyl-tRNA synthetase in 4 patients, anti-threonyl-tRNA synthetase in 1, anti-alanyl-tRNA synthetase in 3, anti-glycyl-tRNA synthetase in 4, and anti-isoleucyl-tRNA synthetase in 1). All 13 patients had myositis and/or interstitial pneumonitis. Sera from the remaining 28 patients immunoprecipitated previously unidentified tRNAs, including 13 serum samples that bound deproteinized cognate tRNA; 24 of the 28 patients met criteria for either systemic lupus erythematosus (SLE) or Sjögren's syndrome (SS). In addition, nonerosive polyarthritis, leukocytopenia, rheumatoid factor, and characteristic annular or papulosquamous recurrent erythema were noted in these patients; however, renal involvement was rare. Sera from 16 of these 28 patients also contained anti-Ro/SSA and/or anti-La/SSB antibodies. While 189 patient sera precipitated Ro/SSA and/or La/SSB-associated RNAs but not tRNA, only 12 of the patients (6.3%) developed skin lesions (P=0.0009, odds ratio 8.85). CONCLUSION: Novel autoantibodies against tRNAs or tRNA-associated proteins were identified in 28 sera. These autoantibodies appear to be distinct from anti-aminoacyl-tRNA synthetase antibodies and are associated with SLE and SS. The presence of anti-Ro/SSA and/or anti-La/SSB along with anti-tRNA antibodies is more strongly associated with recurrent erythema than is the presence of anti-Ro/SSA or anti-La/SSB alone.

Adult↗

Anti-transfer RNA antibodies in two patients with pulmonary fibrosis, Raynaud's phenomenon and polyarthritis.

Patient W.S. (a 61-year-old woman) and patient T.M. (a 41-year-old man) developed recurrent fevers, polyarthritis, Raynaud's phenomenon and interstitial pulmonary fibrosis without apparent polymyositis. From HeLa cell extracts, sera from both patients immunoprecipitated all species of intact and deproteinised tRNAs. To identify the antibody binding site more precisely, tRNAs transcribed in vitro from cloned Escherichia coli tRNA genes and various mutants were prepared and used as antigens for immunoprecipitation. When the TpsiC loop, or the D loop were deleted, such mutants were not bound by both sera, suggesting that the D and TpsiC loops were required for antibody binding. Abrogation of tRNA binding occurred when 18G of tRNATrp was replaced with 18A to break the tertiary L-shape structure of tRNA. These results strongly suggest that sera from W.S. and T.M. recognise the tertiary conformation of L-shaped tRNA which is constructed with both D and TpsiC loops. These autoantibodies may also serve as a marker for a new subset of patients with connective tissue diseases that is distinct from anti-aminoacyl-tRNA synthetase syndrome.

Arthritis↗