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Biomedical subjects

F Itoh

Publications and source records attributed to F Itoh.

At least 145 records · Page 8Linked to original sources

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↗

Assay of the antiangiogenic compound TNP-470, and one of its metabolites, AGM-1883, by reversed-phase high-performance liquid chromatography in plasma.

This paper describes a reversed-phase, high-performance liquid chromatographic (HPLC) method for the isolation, detection, and quantification of TNP-470 (I) and one of its active metabolites, AGM-1883 (II), from plasma. These compounds are initially extracted from plasma with an organic solvent and then separated from one another on a C18 column. Those fractions eluting from the C18 column and containing either I or II are then derivatized through their epoxide moieties with sodium 8-quinolinethiolate (SQT). This derivatization produces fluorescent species that are isolated and quantified by a second reversed-phase HPLC analysis. The assay yields a lower limit of reliable quantification of 2.5 ng/ml and is linear to a concentration at least as high as 160 ng/ml. The inter-assay percent coefficient of variation is less than 18%.

Acetamides↗

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↗

Novel pyrrolo[2,3-d]pyrimidine antifolate TNP-351: cytotoxic effect on methotrexate-resistant CCRF-CEM cells and inhibition of transformylases of de novo purine biosynthesis.

N-[4-[3-(2,4-Diamino-7H-pyrrolo[2,3-d]pyrimidin-5- yl)propyl]benzoyl]-L-glutamic acid (TNP-351), characterized by a pyrrolo[2,3-d]pyrimidine ring, is a novel antifolate that exhibits potent antitumor activities against mammalian solid tumors. The mechanism of action of TNP-351 was evaluated using some methotrexate-resistant CCRF-CEM human lymphoblastic leukemia cell lines as well as partially purified enzymes folylpolyglutamate synthetase (FPGS), aminoimidazolecarboxamide ribonucleotide transformylase (AICARTFase), and glycinamide ribonucleotide transformylase (GARTFase) from parent CCRF-CEM cells. TNP-351 was found to inhibit the growth of L1210 and CCRF-CEM cells in culture, with the doses effective against 50% of the cells (ED50 values) being 0.79 and 2.7 nM, respectively. The growth inhibition caused by TNF-351 was reversed by leucovorin or a combination of hypoxanthine and thymidine. The methotrexate-resistant CCRF-CEM cell line, which has an impaired methotrexate transport, showed less resistance to TNP-351 than to methotrexate. TNP-351 was also found to be an excellent substrate for FPGS with a Michaelis constant (Km) of 1.45 microM and a maximum of velocity (Vmax) of 1,925 pmol h-1 mg-1. Inhibitory activities of TNF-351-Gn (n = 1-6) for AICARTFase were found to be significantly enhanced with increasing glutamyl chain length [inhibition constants (Ki): G1, 52 microM; G6, 0.07 microM]. Neither TNP-351 nor its polyglutamates were very strong inhibitors of GARTFase. These findings have significant implications regarding the mechanism of action of TNP-351.

Acyltransferases↗

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↗

Effect of KCA-098, a new benzofuroquinoline derivative, on bone mineral metabolism.

The effect of 3,9-bis(N,N-dimethylcarbamoyloxy)-5H-benzofuro[3,2-c]quinoli ne-6-one designated as KCA-098) on the bone mineral metabolism of chick embryonic bone was examined. KCA-098 dose-dependently inhibited bone resorption of cultured chick embryonic femora and calvariae. It increased the length, dry weight, and calcium and phosphorus contents of 9-d-old chick embryonic femurs cultivated for 6 d, indicating that it stimulated bone formation. These results show that KCA-098 has the unique effects of inhibiting bone resorption and stimulating bone formation of chick embryo. In addition, in an in vivo experiment, oral administration of KCA-098 (3.0 mg/kg/d) for 16 weeks led to an increase in calcium and phosphorus content as well as an increase in the amount of force required to break the femur from ovariectomized rats, suggesting that it may be useful for the treatment of bone diseases.

Animals↗

Induction of osteopenia in confined rats.

We have developed a simple model of osteopenia in rats which is induced by confinement without requiring surgical operation. Each rat was maintained for 8 weeks in a compartment of a commercially-available wire netting cage subdivided into 10 areas (compartment size, 9 x 16 x 14 cm) to restrict exercise. The femora isolated from the confined rats showed significant decreases in mineral (calcium and phosphorus) content, compared with the level in normal rats, 2 weeks after the start of their confinement. Confined rats showed significantly lower values for the physical properties of bones such as breaking energy and breaking force and also density composed with normal rats 4 weeks after the start of confinement. KCA-098 (1 mg/kg), a new benzofuroquinoline derivative that inhibits bone resorption and at the same time stimulates bone mineralization in organ culture, protected against these decreases when given orally for 8 weeks. All these results show that confinement of rats offers a simple and useful animal model of osteopenia.

Animals↗

Effects of KCA-098 on bone metabolism: comparison with those of ipriflavone.

We previously found that 3,9-bis(N,N-dimethylcarbamoyloxy)-5H- benzofuro[3,2-c]quinoline-6-one (KCA-098) inhibited bone resorption in organ culture. In this study, to determine if KCA-098 is therapeutically applicable for the treatment of osteoporosis, we compared the effect of KCA-098 on bone tissues with that of ipriflavone, a drug that is clinically used for the treatment of osteoporosis. Both KCA-098 and ipriflavone inhibited parathyroid hormone-, prostaglandin E2-, 1 alpha,25-dihydroxyvitamin D3- and interleukin 1 beta-induced bone resorption of fetal rat bones, but the inhibitory activity of KCA-098 was more potent than that of ipriflavone. In fact, the effective concentrations of KCA-098 were 10 to 100 times lower than those of ipriflavone. Oral administration of KCA-098 (1 and 3 mg/kg) or ipriflavone (100 mg/kg) to ovariectomized rats on a low-calcium diet increased the breaking force and bone density of the femora, indicating that KCA-098 is an effective on the whole animal as ipriflavone. Furthermore, KCA-098 increased the length and calcium content of 9-day chick embryonic femora cultured in vitro, whereas ipriflavone did not, suggesting that KCA-098 had a direct stimulatory effect on bone mineralization. Therefore, KCA-098 seems to be more potent than ipriflavone in stimulating bone tissue formation and may thus be expected to become a useful agent for the treatment of osteoporosis.

24,25-Dihydroxyvitamin D 3↗

Expression and chromosomal assignment of PTPH1 gene encoding a cytosolic protein tyrosine phosphatase homologous to cytoskeletal-associated proteins.

We have investigated the mRNA expression of 2 human protein tyrosine phosphatases with sequence homology to cytoskeletal proteins, PTPH1 and PTPMEG. Northern-blot analysis of PTPH1 using poly (A)+ RNA from normal human colon tissue showed a low-abundance message of 4.3 kb. Reverse-transcriptase/polymerase-chain reaction (RT-PCR) was therefore used to detect it in a wide variety of cell lines including 9 colorectal, 5 gastric, 5 hepatic and 6 hematopoietic tumor cells. PTPH1 mRNA was not detected only in Colo 320 cells over-expressing c-myc mRNA, among the colorectal cancer cell lines examined. When Colo 320 cells were incubated with 5 mM sodium butyrate for 5 days, PTPH1 mRNA became detectable, concomitant with the marked decrease in the expression level of c-myc mRNA. Moreover, the chromosomal localization of PTPH1 gene was investigated by fluorescence in situ hybridization. Interestingly, PTPH1 gene was mapped to 9q31 where the gene for Gorlin syndrome, a putative tumor suppressor gene, exists.

Base Sequence↗

Expression of MMP-7(PUMP-1) mRNA in human colorectal cancers.

The expression of MMP-7 (pump-1) gene was examined in 10 cases of colorectal cancer by utilizing RT-PCR. In 9 out of 10 cases, MMP-7 mRNA was detected in cancerous tissue, whereas none was detected in adjacent normal colon tissue. However, this message was detected in only 1 out of 6 colon-cancer cell lines. In colonic mucosa from 3 patients with ulcerative colitis it was not detected. The expression of MMP-2 (72-kDa type-IV collagenase) mRNA was also investigated in the same tissue samples, and was detected in all samples, including cancerous and non-cancerous tissue. Our data suggest that MMP-7 is expressed in a tumor-associated manner in colorectal cancers and may play a role in tumor progression.

Adult↗

Decreased expression of DCC mRNA in human colorectal cancers.

The mRNA expression levels of DCC gene, which is cloned from the deleted region of chromosome 18q in colorectal cancers and thought to be a tumor-suppressor gene, was evaluated in tissue specimens surgically resected from patients with colorectal cancer by RT-PCR. This method was chosen as the expression level of DCC mRNA is below the detectable level for Northern-blot analysis. Semi-quantitative measurements of DCC mRNA were performed based on a standard curve defined by serial dilution of DCC cDNA. As a result, the expression level of DCC mRNA was found to be lower in 17 out of 30 colorectal cancers than in adjacent non-cancerous tissues. Inclusion of smooth muscle in tissue specimens was observed to have little disturbing effect on comparisons between cancerous and non-cancerous regions. In addition, all 4 specimens of colorectal cancer with liver metastasis showed the decreased expression level of DCC mRNA, suggesting that functional loss of DCC in cancerous tissues may play an important role in metastatic events.

Actins↗

Primary structure of the variable regions of a monoclonal antibody MUSE11 recognizing the tandem repeat domain of a mucin core protein, MUC1.

A monoclonal antibody (MAb) MUSE11 recognizes an epitope in the tandem repeat domain of a mucin core protein, MUC1. We show that the epitope of MAb MUSE11 could be within the continuous amino acid sequence PDTRPAPG. Since there is increasing evidence indicating that this region is highly immunogenic, cDNA cloning of the variable regions of heavy-chain (VH) and of light-chain (VL) of MAb MUSE11 was performed by using RT-PCR to provide a basis for analyzing the structure of the antibody-antigen complex and for producing anti-idiotypic antibodies. The deduced amino acid sequence revealed that the VH and VK of MAb MUSE11 could be assigned to subgroups IIIA and II of mouse immunoglobulin heavy and light chains, respectively. When compared with the V regions of other MAbs in the same subgroup, the complementary determining region 3 (CDR3) in the VH region of MAb MUSE11 consisted of a unique sequence that may be important in defining the specificity of MAb MUSE11.

Amino Acid Sequence↗

Detection of a circulating antibody against a peptide epitope on a mucin core protein, MUC1, in ulcerative colitis.

This study aims at clarifying whether the humoral immune response to the tandem repeat domain of MUC1 can be induced or not in vivo. The expression of MUC1 mRNA in the colon was revealed by Northern blot analysis, and cDNA cloning of an extracellular tandemly repeated domain of MUC1 was then performed to prepare the recombinant MUC1 protein. A cDNA clone coding for ten repeat domains was ligated into an expression vector in prokaryotes, resulting in a recombinant protein which could react with the MAb MUSE11 against an adenocarcinoma-associated antigen whose epitope has been shown to be localized in the tandem repeat domain on MUC1. The reactivity of sera from patients with ulcerative colitis with the recombinant protein was evaluated by SDS-PAGE and Western blot analysis to detect the antibodies against this tandem repeat domain. Five out of 19 serum samples tested positive, and these reactions were totally inhibited by MAb MUSE11, suggesting that the epitope recognized by these antibodies in sera is almost identical to that recognized by MAb MUSE11. The data represent the first demonstration of antibody production against a peptide epitope of the tandem repeat domain of MUC1.

Adolescent↗

Expression of c-kit and kit ligand in human colon carcinoma cells.

To determine whether c-kit and kit ligand (KL) mRNAs could be expressed in human epithelial tumors, reverse transcriptase-polymerase chain reaction and Northern blot analysis were performed. KL mRNA was shown to be expressed in a variety of epithelial tissues and cell lines. The expression of c-kit mRNA was then examined in hepatocellular and colon carcinoma cell lines. While hepatocellular carcinoma cell lines did not express c-kit mRNA as far as we could ascertain, 2 of 5 colon carcinoma cell lines showed the expression of both c-kit and KL mRNAs. Furthermore, the expression of c-kit in these cells was demonstrated at the protein level by flow cytometry. These data suggest that c-kit and KL may play an important role as an autocrine loop in the proliferation of some colon carcinoma cells.

Base Sequence↗

[Effect of tranilast ophthalmic solution on allergic conjunctivitis in guinea pigs].

The effect of the ophthalmic solution of tranilast, an anti-allergic agent, on allergic conjunctivitis was studied in passively sensitized guinea pigs. We determined the content of uranine dye and histamine in tears and histopathologically examined palpebral conjunctiva. After instillation of antigen into the conjunctival sac, inflammation of the palpebral conjunctiva, an increase in leaked dye and the release of histamine were found. In the histopathological study, tranilast (1.0%) suppressed the appearance of edema and infiltration of inflammatory cells. Tranilast suppressed the leakage of uranine in a dose-dependent manner. A 0.5% solution of diphenhydramine also showed the inhibitory effect on the leakage of uranine. The inhibitory effect of 0.5% tranilast on antigen-induced dye leakage and histamine release lasted for 6 hr. These results suggest that topically applied tranilast is effective for allergic conjunctivitis.

Animals↗

Cloning and characterization of a human cDNA encoding a novel putative cytoplasmic protein-tyrosine-phosphatase.

We have cloned and characterized a human cDNA encoding a new member of the family of cytosolic type protein-tyrosine-phosphatase (PTP), designated as PTPG1, from an adult colon tissue cDNA library by using the PCR product as probe. We obtained 5 cDNA clones, which cover the predicted open reading frame encoding a 88-kDa protein composed of 780 amino acids, and it had no apparent signal or transmembrane sequences, suggesting that it is a cytosolic protein. The N-terminal region had a PTP catalytic domain that is 30-40% identical to previously reported human PTPs. This revealed that the enzyme composes an additional family of human PTPs. PTPG1 was characterized by a long non-enzymatic domain located at the C-terminus, including PEST sequences which are characteristic for short half-life proteins in eukaryotes. Northern blot analysis of PTPG1 mRNA showed a 4.6-kb transcript that was detected in a wide variety of cell lines to suggest its extensive expression.

Amino Acid Sequence↗