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Biomedical subjects

H Inoko

Publications and source records attributed to H Inoko.

At least 253 records · Page 14Linked to original sources

[Establishment of monoclonal antibody NI-58 which inhibits homotypic cell adhesion of LPS-stimulated U937 cells].

A mouse monoclonal IgG1 antibody, referred to as NI-58, has been produced. In immunofluorescence assay, this antibody reacted with myelomonocytes, EBV-B cells, Burkitt's lymphoma cells, T cell leukemia cells and peripheral blood mononuclear cells, but not with erythroid cells. The surface antigen on U937 cells recognized by NI-58 had a molecular size of 65 kDa as determined by immunoblotting analysis. As a biological function, NI-58 strongly inhibited the homotypic cell adhesion of LPS-stimulated U937 cells. It was found that the antigen defined by NI-58 was distinct from CD54 (intercellular adhesion molecule-1) in it's pattern of cellular expression and molecular weight, suggesting that NI-58 recognizes a new adhesion molecule and inhibits the homotypic cell adhesion of LPS-stimulated U937 cells.

Animals↗

[Establishment of monoclonal antibody mNI-11 which induces homotypic cell aggregation of LPS-treated U937 cells].

A mouse monoclonal antibody (mAb), designated as mNI-11, was produced. The reactivity of mNI-11 was assessed by immunofluorescence assay with various cells. Myelomonocytic cell line, U937, and lipopolysaccharide (LPS)-treated U937 (LPS-U937 cells) were found to bind strongly to the mAb. EBV-B cell line and peripheral blood mononuclear cells (PBMCs) were found to bind moderately to it. This mAb strongly induced homotypic cell aggregation of LPS-U937 cells. The mAbs to CD18 and CD54 completely inhibited the LPS-U937 cell aggregation induced by mNI-11. The surface antigens of the U937 and LPS-U937 cells recognized by mNI-11 had a molecular size of 95-97 kDa as determined by immunoblotting analysis.

Animals↗

[Molecular biological analysis of HLA class II gene in autoimmune hepatitis among Japanese].

The frequencies of HLA B54, DR4, DR53 and DQ4 were significantly higher in patients with autoimmune hepatitis than in healthy controls. HLA-DR4 was most frequently associated with autoimmune hepatitis. To define the HLA class II gene which has the susceptibility or resistance to autoimmune hepatitis, we performed HLA class II genotyping using polymerase chain reaction-restriction fragment length polymorphisms (PCR-RFLP) method. The frequency of DRB1*0405 was significantly higher in autoimmune hepatitis than in controls. However, there was no significant difference in the frequency of the DR4 associated Dw-allele between the patients and the controls who were DR4-positive. Six DR4-negative patients had DR2, but there was no significant difference in the frequency of the DR2-associated Dw-alleles compared with the DR2-positive controls. Comparison of the amino acid residues of DRB1 chain suggested that the basic amino acid at position 13, which is present only on the DR2 and DR4 B1 molecules (Arg on DR2 and His on DR4), contributes to the susceptibility to autoimmune hepatitis among Japanese.

Asian People↗

HLA-DQ beta chain can present mouse endogenous provirus MTV-9 product and clonally delete Tcr V beta 5+ and V beta 11+ T cells in transgenic mice.

The elusive Mls gene(s) are mouse mammary tumor virus genes. The endogenous cotolerogen involved in the clonal deletion of Tcr V beta 5.1, 5.2, and 11 in H-2E+ mouse strains has been narrowed down to MTV-9. We demonstrate that similar to H-2E alpha molecules, human DQw6 beta chain mediated clonal deletion of Tcr V beta 5.1, 5.2, and 11 also requires the MTV-9 gene product. This shows that human class II molecules can present mouse retroviral antigen. Further, backcross analysis involving [B10.M(DQb) x DBA/1] suggest a second cotolerogen in the B10.M background in the clonal deletion of V beta 5-bearing T cells.

Animals↗

Search for MHC-associated genes in human: five new genes centromeric to HLA-DP with yet unknown functions.

Taking advantage of five mouse genomic or cDNA probes [KE5(probe 14), KE4 (probe 11), KE3 (probe 7), KE2 (probe 5), and SET] mapped on the H-2K region in mouse, we have identified and localized homologues of these five genes in the human major histocompatibility complex region (HKE5, HKE4, HKE3, HKE2, and HSET, respectively). Cosmid cloning and pulsed field gel electrophoresis analyses indicated that a human homologous gene, HKE5, is located 10 kilobases (kb) centromeric of the alpha 2 (XI) collagen (COL11A2) gene followed by HKE4. HKE3, closely linked to HKE2, is located 170 kb centromeric of HKE4. Furthermore, HSET is located 50 kb centromeric of HKE2. This gene organization outside the DP subregion is completely identical to that of the mouse H-2K region centromeric of I-Pb3, a mouse homologue of the DPB gene, except the lack of genes corresponding to the H-2K and -K2 genes in human.

Blotting, Southern↗

A possible association between basic amino acids of position 13 of DRB1 chains and autoimmune hepatitis.

Fifty-one patients with autoimmune hepatitis have been studied for HLA association by conventional serology and also by modified polymerase chain reaction-restriction fragment length polymorphism (PCR-RFLP) genotyping. HLA-DR4 was significantly associated with autoimmune hepatitis (46 of 51 patients, 90.2%). DNA typing of the DRB1 gene for 43 DR4-positive patients by using the PCR-RFLP technique revealed that of 43 patients, 33 had DRB1*0405 (Dw15), five had DRB1*0406 (DwKT2), four had DRB1*0403 (Dw13a), two had DRB1*0401 (Dw4), two of 43 had DRB1*0407 (Dw13b) and one had DRB1*0408 (Dw14b). Thus, there was no significant difference in Dw frequencies between DR4-positive patients and DR4-positive healthy subjects. These findings suggest that the DR4-specific sequence (Val 11 and His 13 at amino acid positions 11 and 13, respectively), but not particular Dw-associated DR4 sequence, in the first domain of the DRB1 chain contributes to susceptibility to autoimmune hepatitis among Japanese. Interestingly, all five of the DR4-negative patients had the DR2 specificity (DRB1*1502 or 1601). Taken together, these results imply that the basic amino acids at position 13, which is present only on the DR2 and DR4 B1 molecules (Arg on DR2 and His on DR4), are most important for determining the predisposition to autoimmune hepatitis.

Amino Acid Sequence↗

HLA class II molecules and autoimmune hepatitis susceptibility in Japanese patients.

To investigate the association between autoimmune hepatitis and HLA alleles in Japanese patients, serological typing and class II genotyping were performed using the polymerase chain reaction-restriction fragment length polymorphisms (PCR-RFLP) method. Serological typing showed that HLA-B54, -DR4, -DR53, and -DQ4 were significantly more frequent in patients with autoimmune hepatitis than in controls. HLA-DR4 was most frequently associated with autoimmune hepatitis (88.7%). In PCR-RFLP typing, the frequency of DRB1*0405 was significantly higher in autoimmune hepatitis than in controls. However, there was no significant difference in the frequency of Dw between the patients and the controls who were DR4-positive. The significant increase observed in DQA1*0301 and DQB1*0401 was explained by a linkage disequilibrium with DR4. Six DR4-negative patients had DR2, but there was no significant difference in the frequency of the DR2-associated Dw-alleles compared with the DR2-positive controls. No DPB1 allele was significantly associated with autoimmune hepatitis. These findings suggest that the basic amino acid at position 13, which is present only on the DR2 and DR4 B1 molecules (Arg on DR2 and His on DR4), contributes to the susceptibility to autoimmune hepatitis among the Japanese.

Adult↗

HLAs and genes in Japanese patients with multiple sclerosis: evidence for increased frequencies of HLA-Cw3, HLA-DR2, and HLA-DQB1*0602.

The distribution of HLA-A, B, C, DR and DRB1, DQB1, DPB1 alleles was studied in 60 Japanese patients with clinically definite multiple sclerosis (MS) using serologic and genomic analysis. We found significant associations with HLA-Cw3 (p = 0.002, pc = 0.012, RR = 3.2), DR2 (p = 0.007, RR = 2.6), and DQB1*0602 (p = 0.04, RR = 4.0) in Japanese patients for the first time. The combined presence of Cw3 and DR2 gave a higher risk than each antigen alone. The reported increase in the frequency of DPw4 in Japanese MS patients [12] could not be confirmed by our genomic study. The frequencies of all of the residues in each variable region of the amino acid sequences of DQ beta and DP beta chains were not different between the MS patients and the controls. These results suggest that MS susceptibility may result from polygenic influences and from the presence of environmental factors.

Alleles↗

Cluster of fibronectin type III repeats found in the human major histocompatibility complex class III region shows the highest homology with the repeats in an extracellular matrix protein, tenascin.

Walking and sequencing a genome portion centromeric of CYP21B in the human MHC class III region disclosed a cluster of fibronectin type III repeats in an approximately 50-kb DNA segment. Fibronectin type III repeats are known to consist of ca. 90 amino acid residues and exist in a wide range of protein species. Homology searches in protein databases showed that the repeats found had the highest homology with the repeats of human tenascin, an extracellular matrix protein. One cDNA sequence located immediately centromeric of CYP21B, the 3' portion of which is transcribed by the opposite strand of CYP21B, was found also to have six type III repeats followed by a fibrinogen domain. Pairwise homology comparison of these repeats in the MHC locus with those of human tenascin showed a general parallelism in their gene organization, indicating that the newly found repeats are elements of certain tenascin-like genea.

Amino Acid Sequence↗

Demonstration of the requirement for self antigen in the activation of autoreactive T cells.

An HLA-DR4-restricted T cell clone (26G11), which was reactive to autologous non-T cells without any nominal antigens, was established from an unimmunized normal subject that was DR1/4 positive. The reactivity of the clone was examined against L cells (LDR4) transfected with the particular DR4 genes obtained from the same subject. 26G11 cells proliferated slightly in response to LDR4 cells, but the proliferation was markedly augmented by the addition of cell lysate from an autologous B cell line. In addition, 26G11 cells killed LRD4 cells sensitized by preincubation with the cell lysate more efficiently than LDR4 cells without treatment. When LDR4 cells were preincubated with cell lysate from allogenic B cell lines, effective killing of the target cells by clone 26G11 was also observed. These data strongly suggest that this autoreactive T cell clone (26G11) recognizes endogenous antigen in the context of the DR4 molecule. This directly demonstrates the requirement for self antigen in the activation of human autoreactive T cells from a normal subject.

Animals↗

The significance of HLA-DRB1 matching in clinical renal transplantation.

We analyzed the genotype for HLA-DRB1 alleles by digestion of polymerase chain reaction-amplified genes with the restriction endonucleases (PCR-RFLP) method to investigate the influence of HLA-DR antigen "splits" at the DRB1 gene level on the incidence of acute graft rejection in the renal transplant. For all patients, the incidence of acute rejection was proportional to the number of the serological HLA mismatch (0% in patients with two-haplotype match; 18% with HLA-A, -B, and -DR zero mismatch; 33% with HLA-DR zero mismatch; and 48% with HLA-DR one mismatch). For the patients with serological HLA-DR zero mismatch, the incidence of acute rejection in patients with HLA-DRB1 one mismatch (10/13: 77%) was significantly higher than that in those with zero mismatch (2/27: 7%). It was concluded that genotyping for HLA-DRB1 alleles would be beneficial in predicting acute rejection in patients with serological HLA-DR zero mismatch, although no difference was noted in the graft survivals.

Alleles↗

Correlation of HLA types and clinical findings in Japanese patients with hyperthyroid Graves' disease: evidence indicating the existence of four subpopulations.

OBJECTIVES: To re-evaluate the associations of HLA types with Japanese patients having hyperthyroid Graves' disease, HLA types and clinical findings were correlated. DESIGN: Four independent clinical findings (ophthalmopathy, family history, age at onset and size of goitre) and two autoantibody titres, thyrotrophin binding inhibitor immunoglobulin (TBII) and anti-thyroid microsmall antibody (anti-M), were analysed. PATIENTS: Eighty-eight Japanese patients with hyperthyroid Graves' disease and 186 control subjects were assessed. MEASUREMENT: Serological HLA typing was performed on 73 antigens in HLA-A, -B, -C, -DR and -DQ loci. HLA-D and -DP (29 antigens) were determined by the restricted fragment length polymorphism (RFLP) methods. TBII and anti-M were measured by commercially available kits. RESULTS: Patients with potent antibody titres had HLA antigens commonly seen among all the patients with Graves' disease. Interestingly, however, HLA-B35 and -Cw11 were found to relate with negative and/or weak TBII, and HLA-B7 and absence of HLA-Aw19 with negative anti-M. Significant associations were observed between HLA-DRw8 and large goitre and absence of ophthalmopathy, and between HLA-DQw4 and a negative family history of diffuse goitre (corrected P less than 0.05). Several other antigens were also found to be significant. Among these antigens, four pairs of MHC classes I and II were found to relate to the clinical findings independently. HLA-DQw4 and negative -A31 pair was closely related to ophthalmopathy, negative family history and late onset of disease. The HLA-B5 and -Dw12 pair was associated with ophthalmopathy, positive family history and early onset of disease. The HLA-A11 and negative -DPw2 pair was associated with ophthalmopathy, negative family history and early onset of disease. The HLA-Bw46 and -DRw8 pair did not increase in frequency above that seen with HLA-DRw8 alone. These four antigen groups (HLA-DRw8, HLA-DQw4 and negative-A31, HLA-B5 and -Dw12, and HLA-A11 and negative -DPw2) were observed in the majority (68%) of patients with Graves' disease and at a significantly higher incidence than in the control group (P less than 0.05). CONCLUSION: There are four subpopulations of Japanese patients with hyperthyroid Graves' disease. This is one of the reasons why the association of HLA types in Japanese patients is rather weak when they are studied as one group.

Adolescent↗

HLA-DRB1 genotyping by modified PCR-RFLP method combined with group-specific primers.

We previously introduced HLA-DQA1, -DPB1 and DQB1 genotyping with the modified PCR-RFLP method using some informative restriction enzymes which have either a single cleavage site or alternatively no cleavage site in the amplified DNA region, depending on the HLA alleles, making reading of RFLP band patterns much easier. In this study, 43 HLA-DRB1 alleles, excluding DRB1*1103 and *1104 for which no restriction enzymes are available to distinguish each from the other, could be defined by this modified PCR-RFLP method combined with 7 pairs of group-specific primers. It is impossible to distinguish DRB1*0701 and DRB1*0702 as they are identical for the second exon of DRB1. For DR1-DRB1, DR2-DRB1, DR4-DRB1, DR7-DR1, DR9-DRB1, DRw10-DRB1 or DRw52 associated antigens (DR3, w11, w12, w13, w14, and DRw8)-DRB1 gene amplification, the second exon of the DRB1 gene was selectively amplified using each group-specific primer from genomic DNAs of 70 HLA-homozygous B-cell lines and healthy Japanese by PCR. Amplified DNAs were digested with restriction endonucleases and then subjected to electrophoresis assaying simply for cutting, or no cutting, of the DNA, although some alleles can be distinguished only after examination of RFLP band patterns generated and in some cases using double digestion technique with two restriction enzymes. This modified PCR-RFLP method can be successfully applied to all possible DRB1 heterozygotes, despite the fact that 15 pairs of heterozygotes among them cannot be distinguished theoretically by the PCR-SSO method, because the PCR-RFLP method can tell whether two polymorphic sites are linked to each other (cis position) or located on a different chromosome (trans position) by checking the length of RFLP bands generated with double digestion. Thus, the PCR-RFLP method is technically simple, practical and inexpensive for determination of the HLA-DRB1 alleles for routine HLA typing work.

Alleles↗

Association of HLA-B51 and lack of association of class II alleles with Behçet's disease.

Eighty-one Behcet's disease patients have been studied for HLA association by HLA-DRB1, -DQA1, -DQB1 and -DPB1 genotyping with the polymerase chain reaction-restriction fragment length polymorphism (PCR-RFLP) technique and for NcoI RFLP in the tumor-necrosis factor (TNF beta) gene by Southern hybridization in addition to serological typing. In serological typing, the frequency of HLA-B51 was significantly increased in the patients. In PCR genotyping, there was a significant increase in the HLA-DRB1*0802, DQA1*0301 and DQB1*0303 alleles, whereas the frequencies of DRB1*1502, DQA1*0103, DQA1*0101, DQB1*0601 and DQB1*0501 showed a significant decrease in the patients. No significant difference was observed in any HLA-DPB1 alleles. Among them, B51 was found to be a genetic marker most strongly associated with Behcet's disease (p less than 0.00005, chi 2 = 46.47, pc[corrected p] less than 0.005). The positive and negative associations of class II alleles with the disease can be explained by linkage disequilibrium with B51, and do not reach statistical significance by the corrected p-value test. In NcoI RFLP typing in the TNF beta gene, 250 kb centromeric of the HLA-B gene, the frequency of a 5.5 kb fragment was considerably decreased in the patients when compared to the controls, although the decrease was not statistically significant.(ABSTRACT TRUNCATED AT 250 WORDS)

Alleles↗