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Biomedical subjects

A Yachi

Publications and source records attributed to A Yachi.

At least 19 recordsLinked to original sources

IL-2-induced gene expression of protein-tyrosine phosphatase LC-PTP requires acidic and serine-rich regions within IL-2 receptor beta chain.

A protein-tyrosine phosphatase LC-PTP is preferentially expressed in hematopoietic cells and is an early response gene in lymphokine stimulated cells. Here, we found the LC-PTP mRNA induction by IL-2 was markedly inhibited by several tyrosine kinase inhibitors. The induction required both the acidic and serine-rich regions of the IL-2 receptor beta chain (IL-2R beta) in mouse IL-3-dependent pro-B BAF-B03 transfectants. This is strikingly different from the induction of c-myc gene expression, which requires the serine-rich region alone. In addition, overexpression of activated-Lck or -Raf kinases resulted in augmented LC-PTP mRNA expression in myeloid cell line 32D transfectants. Considering the previous findings that the acidic region of the IL-2R beta is responsible for association with Lck and activation of Raf kinase, IL-2-induced expression of LC-PTP mRNA may be primarily transduced through a Lck-Raf mediated signaling pathway.

Animals

Topographic study of Helicobacter pylori and HLA-DR antigen expression on gastric epithelium.

Helicobacter pylori and HLA-DR antigen expression on gastric epithelium, identified by an indirect immunoperoxidase staining method using monoclonal antibodies against H. pylori and HLA-DR antigens, were studied topographically. Fifty-nine biopsy specimens from 41 patients who had neither gastric cancer nor peptic ulcers were examined. H. pylori was observed predominantly over or on the surface epithelium, while HLA-DR antigens were frequently expressed on the epithelium of the isthmus region. These observations led to the conclusion that there was no direct topographic association between H. pylori and epithelial HLA-DR expression. However, the frequency of HLA-DR expression in H. pylori-positive (28/29) specimens was significantly higher than that in H. pylori-negative (18/30) specimens (P < 0.01). Furthermore, a greater number of H. pylori was associated with a stronger expression of HLA-DR antigens (P < 0.001). We conclude that H. pylori is indirectly related to HLA-DR expression on gastric epithelium. H. pylori is the first microbial agent that has been suggested to be associated with epithelial HLA-DR expression in the human gastrointestinal tract.

Adolescent

Lansoprazole versus lansoprazole plus amoxicillin treatment for eradication of Helicobacter pylori in patients with gastric ulcer.

Helicobacter pylori is a major cause of gastritis and an important factor in duodenal ulcer relapse. Eradication of H. pylori has usually been achieved by triple therapy, a combination of bismuth salts and two antibiotics. The disadvantage of these regimens is the large number of tablets and the high incidence of side effects. A new H+,K(+)-ATPase inhibitor, lansoprazole (LPZ), has a strong acid inhibitory effect and an anti-H. pylori effect in vitro. These dual effects have an advantage for the eradication of H. pylori by LPZ alone or by a combination of LPZ and antibiotics. In this study, we investigated an anti-H. pylori effect of LPZ alone and LPZ plus low-dose amoxicillin and the relation between the status of H. pylori colonization and the endoscopic healing stage. LPZ monotherapy suppressed H. pylori but did not eradicate it. LPZ plus low-dose amoxicillin dual therapy eradicated H. pylori in 45.5% of patients with gastric ulcer disease. However, this rate is not satisfactory for eradication therapy. The optimal dosage and duration of treatment need to be specified. A high rate of healing to the endoscopic S2 stage was achieved by eradication of H. pylori and the recurrence of gastric ulcer was suppressed in patients in whom H. pylori was eradicated. The eradication of H. pylori may change the natural course of gastric ulcer disease as it does in duodenal ulcer disease.

2-Pyridinylmethylsulfinylbenzimidazoles

Elevation of serum soluble vascular cell adhesion molecule-1 (sVCAM-1) levels in bronchial asthma.

We have previously shown the elevation of serum soluble intercellular adhesion molecule-1 (sICAM-1) and soluble E-selectin (sE-selectin) in patients with bronchial asthma during asthma attacks. In the present study, we extended our earlier study by measuring serum sVCAM-1 levels by ELISA in 45 patients with bronchial asthma (23 atopic and 22 non-atopic) during asthma attacks and in stable conditions in order to assess further the state of adhesion molecules in allergic inflammation of bronchial asthma. The levels of sVCAM-1 in sera obtained during bronchial asthma attacks were higher than those in sera obtained in stable conditions. These findings were observed regardless of atopic status. To examine the regulatory mechanism in the elevation of serum sVCAM-1 levels, serum tumor necrosis factor-alpha (TNF-alpha) levels were measured by ELISA. TNF-alpha levels in sera obtained during bronchial asthma attacks were higher than those in sera obtained in stable conditions. The nature of change in serum TNF-alpha levels correlated with the nature of change in serum sVCAM-1 levels, but serum TNF-alpha levels did not correlate with serum sVCAM-1 levels. These results suggest that higher levels of sVCAM-1 during asthma attacks may reflect the up-regulation of VCAM-1 expression in allergic inflammation, and that a soluble form of VCAM-1 molecules may be useful markers for the presence of allergic inflammation. TNF-alpha is shown to enhance the expression and release of VCAM-1 in vitro, however; the regulatory mechanism in the elevation of serum sVCAM-1 levels remains to be clarified.

Adult

Internal image-bearing anti-idiotypic monoclonal antibodies.

Five anti-idiotypic (Id) monoclonal antibodies (MAbs) (Ab2) were prepared from a BALB/c mouse immunized with anti-carcinoembryonic antigen (CEA) MAb MA208 (Ab1) in a syngeneic system. These anti-Id MAbs appear to recognize unique idiotopes at the combining site of MAb MA208, because they were specifically reactive with MAb MA208 and showed inhibitory activity against the binding of MAb MA208 to CEA. These MAbs were divided into three groups according to the analysis of anti-anti-Id antibodies (Ab3) induced with each anti-Id MAb. Anti-anti-Id MAb M7-625 antiserum (Ab3) reacted with purified CEA in a binding assay and in Western blot analysis, and competed with Ab1 binding to CEA. Furthermore, the binding of anti-Id MAb M7-625 to MAb MA208 was inhibited with CEA, indicating that Ab2 mimics the structure of the epitope in CEA which was recognized with Ab1. These serologic findings suggest that anti-Id MAb M7-625 carries the internal image of the antigen. According to the amino acid sequences of complementarity determining region (CDR) 1, 2 and 3 of the MAb M7-625 variable region, homology of amino acid sequences exists between CDR2 in the H chain (5 amino acids of 10) and domain III of CEA (545-554). Seven anti-Id MAbs were then generated using anti-CEA synthetic peptide MAb P1-356 to analyze further the epitope structure of CEA. These anti-Id MAbs were divided into four groups. Serological analyses as described above suggested that among them, anti-Id MAb M315 had an internal image. We therefore prepared anti-anti-Id MAbs using anti-Id MAb M315. Among them, anti-anti-Id MAb 11B2 reacted directly with CEA and competed with MAb P1-356 in the competition assay. In addition, MAb 11B2 stained both cultured CEA-producing cells and colonic cancer tissues, suggesting that MAb 11B2 is Ab1 like Ab3. These MAbs (Ab1-3) will be of use for the structural analysis of the internal image.

Amino Acid Sequence

Mucosal immune response to Helicobacter pylori and cytotoxic mechanism.

BACKGROUND: Helicobacter pylori is widely accepted as a major pathogen in gastritis. The histologic features of H. pylori gastritis are the numerous infiltrating mononuclear cells (MNCs) and neutrophils. It is not clear what role the infiltrating MNCs and neutrophils play in H. pylori gastritis. METHODS: In this study, we have established enzyme-linked immunospot (ELISPOT) assay for the measurement of H. pylori antibody-producing cells in gastric mucosa. RESULTS: Using ELISPOT assay, we found that H. pylori-specific IgA-producing cells as well as IgG-producing cells were distributed in gastric mucosa. These H. pylori-specific antibodies in gastric mucosa and neutrophils are responsible for the induction of cytotoxic effect to cultured Vero cells. CONCLUSIONS: These observations suggest that a mucosal immune response specific to H. pylori is closely associated with the pathogenesis of gastritis.

Animals

Expression of MUC1 on myeloma cells and induction of HLA-unrestricted CTL against MUC1 from a multiple myeloma patient.

Polymorphic epithelial mucin (MUC1) was detected in myeloma cells and in sera of multiple myeloma patients. HLA-unrestricted CTL that recognize tumor-associated epitopes on MUC1 has been shown to be induced from breast and pancreas cancer patients. To investigate whether such CTL can also be induced from multiple myeloma patients, an allogeneic mixed leukocyte tumor cell culture was performed. PBMCs of a multiple myeloma patient were stimulated by different allogeneic breast carcinoma and myeloma cell lines. The cultured PBMCs were proliferated and a CTL line TN was established. TN exclusively expressed TCR-alpha/beta, CD3, and CD8. TN lysed breast carcinoma and myeloma cell lines but did not lyse K562, which is sensitive to NK cells. The cytotoxicity of TN was inhibited by anti-CD3 Abs but not by anti-HLA Abs. Thus, the TCR-alpha/beta was considered to be involved in the recognition of the target cells but HLA was not. Furthermore, TN lysed transformed mouse fibroblast cells transfected with MUC1 cDNA, suggesting that this CTL line recognizes MUC1 directly. Thus, it is concluded that precursors of HLA-unrestricted and anti-MUC1 reactive CTL could exist in the peripheral blood of multiple myeloma patients and that myeloma cells can express epitopes on MUC1, which can be recognized by the CTL.

Antigens, Tumor-Associated, Carbohydrate

Expression of matrilysin mRNA in colorectal adenomas and its induction by truncated fibronectin.

Matrilysin is believed to have a role in tumor progression. Its expression correlates with the occurrence of colorectal cancer. We have examined the expression of matrilysin mRNA in various colorectal disorders and its localization using RT-PCR and in situ hybridization. We have also examined whether Matrilysin is induced by cell to matrix interaction. Matrilysin mRNA was detected in all adenoma tissues examined, whereas none was detectable in hyperplastic polyps, mildly inflamed regions of ulcerative colitis or normal colon tissues, and its message was localized in adenoma cells themselves. In addition, levels of enzyme activities of matrilysin were lower in adenomas compared with cancers in casein zymography. Matrilysin mRNA was induced by immobilized truncated fibronectin or RGD peptide. Thus, matrilysin may play an important role in colorectal carcinogenesis.

Adenoma

Downregulation of Wilms' tumor gene (wt1) during myelomonocytic differentiation in HL60 cells.

The putative Wilms' tumor-suppressor gene (wt1) encodes a zinc finger DNA binding protein that functions as a transcription repressor. The wt1 gene expression corresponds to kidney development, suggesting a role for this gene in nephroblast differentiation. Here we show that wt1 mRNA expression was downregulated during terminal differentiation of promyelocytic HL60 cells. When HL60 cells were induced to differentiate to granulocytes by dimethyl sulfoxide (DMSO) or retinoic acid (RA), a marked downregulation in the levels of wt1 transcripts was found. The wt1 transcripts were also downregulated in HL60 cells during differentiation to monocytes by vitamin D3 or 12-o-tetradecanoyl-phorbol-13-acetate. Nuclear run-on transcription studies showed the transcriptional rate of wt1 gene was not significantly altered during DMSO-induced granulocytic differentiation, suggesting the downregulation was mostly caused by posttranscriptional modification. Importantly, wt1 transcripts were not significantly altered in K562 cells by treatments with DMSO or RA, which do not induce differentiation of K562 cells. These findings suggest that wt1 gene expression may be downregulated as a differentiation-linked event in HL60 cells.

Base Sequence

Insulin receptor kinase phosphorylates protein tyrosine phosphatase containing Src homology 2 regions and modulates its PTPase activity in vitro.

To clarify the role of protein tyrosine phosphatase (PTPase) containing a pair of Src homology 2 (SH2) regions upon insulin signaling, we studied the interactions between the insulin receptor and SH-PTP2 coupled to glutathione-S-transferase. A full length SH-PTP2 was phosphorylated by insulin receptor kinase and associated with the insulin receptor in vitro. The N-terminal SH2 domain was more phosphorylated than the other SH2 domain of SH-PTP2. However, both SH2 domains of SH-PTP2 were necessary for association with insulin receptors. Phosphorylation of the SH2 domains of SH-PTP2 resulted in decreased PTPase activities toward the phosphorylated insulin receptor. These results indicate that the insulin receptor can negatively regulate SH-PTP2 activity by means of phosphorylating the SH2 domains.

Cell Line

Chromosomal localization of the protein tyrosine phosphatase G1 gene and characterization of the aberrant transcripts in human colon cancer cells.

We have recently described the isolation of the human PTPG1 gene which encodes a member of intracellular protein tyrosine phosphatases that may be candidates for tumor suppressor genes. In order to investigate the abnormality of the PTPG1 transcript in various human cancer cell lines, we have analyzed the consensus catalytic region of PTPG1 cDNA, using the reverse transcription polymerase chain reaction. In a colorectal carcinoma cell line, DLD-1, we found three aberrant transcripts. Sequencing analysis revealed that one had a missense point mutation and the remainders contained 77 bp and 173 bp deletions, respectively. These alterations might directly affect their phosphatase activities. Our findings provide the first evidence for the aberrant transcripts of the protein tyrosine phosphatase in human cancer cells, and suggest that the aberration of PTPG1 gene might be involved in the tumorigenesis. Moreover, the human PTPG1 gene is localized on chromosome 7q11.23, a region with frequent abnormalities implicated in some human cancers.

Amino Acid Sequence

Induction of protein-tyrosine phosphatase LC-PTP by IL-2 in human T cells. LC-PTP is an early response gene.

Tyrosine phosphorylation has been implicated in interleukin 2 (IL-2)-induced growth signaling and the phosphorylation levels are regulated by the balance of tyrosine kinase and tyrosine phosphatase activities. Here, we demonstrate the rapid activation of a leukocyte tyrosine phosphatase LC-PTP (HePTP) gene expression by IL-2 in an IL-2 dependent human T cell ILT-Mat. Accumulation of LC-PTP mRNA appeared at 1 h and peaked at 6 h after IL-2 stimulation, simultaneous with the G1 to early S phase, and the induction of LC-PTP mRNA did not require protein synthesis. LC-PTP protein increased approximately 6-fold at 8 h after IL-2 stimulation. Nuclear run-on assays showed that the induction of LC-PTP mRNA expression is mostly due to transcriptional activation. These data suggest that LC-PTP is an early response gene and its protein seems to be a crucial molecule which regulates the tyrosine phosphorylation level during T cell proliferation.

Enzyme Induction

Complementary DNA cloning and characterization of truncated form of c-kit in human colon carcinoma cells.

We have obtained a novel c-kit complementary DNA (cDNA) from a colon carcinoma cell line, Colo201, and characterized its structure. The size of the transcript in Colo201 was approximately 3.5 kilobases and it hybridized to the c-kit cDNA fragments encompassing the kinase domain, but not to the cDNA fragments encoding extracellular and transmembrane domains. The predicted protein encoded by those cDNAs was composed of 257 amino acids containing the NH2-terminal 25 unique amino acids in frame by the COOH terminal of the KIT protein. Of interest, these 25 amino acids were encoded by intron 15 of the c-kit gene. The aberrant mRNA was also detected in another colon carcinoma cell line, BM314. The translation of this message in Colo201 was confirmed by flow cytometry and immunoblot analysis. This is the first report describing the aberrant transcript of c-kit in human tumor cells, and it is suggested that truncated form of c-kit might play a role in the onset and development of human colon carcinoma.

Base Sequence

High expression of CD56 (N-CAM) in a patient with cutaneous CD4-positive lymphoma.

Cutaneous lymphoma is a disease characterized with massive skin infiltration of lymphoid malignant cells. They commonly express some T-cell markers, such as CD2, CD3, CD4, and CD7, and thus termed as CTCL (cutaneous T cell lymphoma). Here, we present a case with CD56/N-CAM-positive cutaneous lymphoma, which appears lymphocytic morphology and expresses CD4, but does not express CD2, CD3, CD8, CD14, CD16, CD57, and CD20. The most malignant cells contained no distinctive azurophilic granules in the cytoplasm. Southern blot analysis revealed that T cell receptor-beta, gamma, and immunoglobulin heavy chain genes in the cells were in germ-line configurations. Electron microscopic examination showed characteristics of lymphoid cells with higher nucleocytoplasmic ratio and lacked structures typical of other cell types (i.e., epithelial cells, neuroendocrine cells, and mesenchymal cells). Thus, the cells are likely to be immature lymphoid cells. Histological analysis revealed the cells infiltrate mainly into the dermis with angiocentric growth pattern. The clinical course was aggressive, with rapid involvement of bone marrow and central nervous system. These striking features of the patient may represent a novel fraction (CD2-, CD4+, and CD56+) of cutaneous lymphoma.

Aged

Expression of cytoskeletal-associated protein tyrosine phosphatase PTPH1 mRNA in human hepatocellular carcinoma.

We investigated the mRNA expression of cytosolic protein tyrosine phosphatase (PTPH1), which has a homologous domain to cytoskeletal-associated proteins, in human hepatocellular carcinomas (HCCs) by using reverse transcriptase-polymerase chain reaction (RT-PCR). PTPH1 mRNA was detected in all HCC cell lines (n = 6), and HCC and adjacent noncancerous tissues (n = 8) examined, indicating that PTPH1 was expressed in HCCs and hepatocytes. There was no remarkable difference in the level expression of PTPH1 mRNA between HCC and adjacent noncancerous tissues. We also performed RT-PCR single-strand conformation polymorphism (SSCP) analysis in HCC cell lines and tissues in the C-terminal region of the catalytic domain of PTPH1. In the cHc4 cell line and a HCC tissue specimen, a shifted band was detected, although it was not found in the non-cancerous tissue of the HCC specimen. Nucleotide sequence analysis showed a common mutation from T to C at the third letter of codon 919 which did not lead to amino acid substitution. These results suggest that another mutation leading to the development of HCC could occur in some region of PTPH1 other than that investigated in this study.

Base Sequence

Development of transient thyroid disease and reaction during treatment of chronic hepatitis C with interferon.

Six of 50 (12%) patients with chronic hepatitis C who were treated with interferon developed thyroid disease or an autoimmune thyroid reaction while undergoing treatment. One patient developed silent thyroiditis, with an increase in serum triiodothyronine (T3), thyroxine (T4), free T3, free T4, and markedly suppressed thyroid-stimulating hormone (TSH) levels, accompanied by the appearance of both antithyroglobulin (TgAb) and antimicrosomal antibodies (McAb). One patient developed hypothyroidism in association with moderately elevated TSH levels and high titers of McAb. TSH, TgAb, and McAb levels returned to the initial values at least 4 months after the end of interferon treatment (9 months of follow up). Four patients whose TgAb and/or McAb levels were elevated during treatment with interferon had been diagnosed as having subclinical autoimmune thyroiditis; however, their thyroid function remained in the normal range. These results suggested that treatment with interferon can cause a transient autoimmune thyroid reaction and disease as a side effect.

Autoantibodies