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Biomedical subjects

M Kitagawa

Publications and source records attributed to M Kitagawa.

At least 55 records · Page 3Linked to original sources

Molecular genetic identification of a candidate receptor gene for sweet taste.

A cDNA clone encoding a novel member of the putative taste receptor T1R family, designated T1R3, was isolated from circumvallate papillae of the mouse tongue using degenerate primers. Reverse transcription-polymerase chain reaction analysis showed predominant expression of the receptor in circumvallate papillae. In situ hybridization analysis revealed that T1R3 was expressed in a subset of taste receptor cells in taste buds and that the topographic distribution of T1R3 in various taste papillae was different from those of the other T1R members. Genetic mapping of T1R3 with a mouse/hamster radiation hybrid panel located the gene on the distal end of mouse chromosome 4 correlated with the Sac locus affecting sweet sensitivity of mice. Our results indicate that T1R3 may serve as the receptor for sweet perception in mice.

Amino Acid Sequence↗

Stimulation of DNA polymerase alpha activity by cdk2-phosphorylated Rb protein.

We propose a new role of retinoblastoma protein as a cell growth activator in its phosphorylated form. The hyper-phosphorylated retinoblastoma protein generated by the action of cdk2/cyclin E strongly stimulated the activity of DNA polymerase alpha, but did not stimulate DNA polymerases delta, epsilon, or primase. But, cdk4/cyclin D-phosphorylated retinoblastoma protein showed little stimulation. Hyper-phosphorylated retinoblastoma protein interacted with the catalytic subunit of DNA polymerase alpha, and stabilised DNA polymerase alpha from heat inactivation at 45 degrees C. These results suggest that in G1 phase, hypo-phosphorylated retinoblastoma protein suppresses the progression of cell cycle as a transcription inhibitor, but that after phosphorylation by cdk2/cyclin E at the G1/S boundary, hyper-phosphorylated retinoblastoma protein acts as a cell-cycle promoter by optimising the DNA polymerase alpha reaction.

Animals↗

Sensitizer contained in heat-decomposed dye.

Recently a new resorbable P(LA/CL) monofilament suture made of L-lactide and epsilon-caprolactone was developed. The sensitization test was carried out using a guinea pig maximization test according to the Japanese Guidelines. As a result of this test, it was revealed that the methanol extract of P(LA/CL) suture contains a skin sensitizer. It was suggested that the D&C Violet No. 2 contained in P(LA/CL) sutures is decomposed during the melt-spinning process and that the decomposed dye induces skin sensitization. To characterize the sensitizer (the decomposed dye) it was separated and collected by HPLC. To determine the molecular formula of the sensitizer, MS, IR, and NMR spectra were obtained. The molecular weight of the sensitizer was estimated as 240 by measuring the MS. Considering the chemical structure of the dye and the molecular weights, it was determined that the sensitizer was 1,4-dihydroxyanthraquinone (quinizarin). The D&C Violet No. 2 contained in P(LA/CL) sutures was decomposed by the melt-spinning procedure to form quinizarin, one type of anthraquinone dye, and the sensitizer was identified to be, indeed, quinizarin. To evaluate the sensitizing potential of quinizarin, we tested skin sensitization using the maximization test method. Quinizarin induced skin sensitization in guinea pigs, and the minimum sensitizing concentration was approximately 100 ppm. The concentration of quinizarin contained in the P(LA/CL) suture was 1-5 ppm, a value that is lower than the minimum sensitizing concentration of quinizarin. This suggests that P(LA/CL) suture has a low risk with regard to contact dermatitis.

Absorbable Implants↗

Focal adhesion kinase activates Stat1 in integrin-mediated cell migration and adhesion.

Recent studies suggest that focal adhesion kinase (FAK) is important for cell migration. We now suggest a mechanism by which FAK activates the signal transducer and activator of transcription (STAT) pathway, regulating cell adhesion and migration. In particular, we observe that FAK is capable of activating Stat1, but not Stat3. Co-immunoprecipitation and in vitro binding assays demonstrate that Stat1 is transiently and directly associated with FAK during cell adhesion, and Stat1 is activated in this process. FAK with a C-terminal deletion (FAKDeltaC14) completely abolishes this interaction, indicating this association is dependent on the C-terminal domain of FAK, which is required for FAK localization at focal contacts. Moreover, Stat1 activation during cell adhesion is diminished in FAK-deficient cells, correlating with decreased migration in these cells. Finally, we show that depletion of Stat1 results in an enhancement of cell adhesion and a decrease in cell migration. Thus, our results have demonstrated, for the first time, a critical signaling pathway from integrin/FAK to Stat1 that reduces cell adhesion and promotes cell migration.

Blotting, Western↗

CYP2A6*6, a novel polymorphism in cytochrome p450 2A6, has a single amino acid substitution (R128Q) that inactivates enzymatic activity.

By using the polymerase chain reaction technique combined with restriction enzyme fragment length polymorphism (PCR-RFLP), a novel polymorphism of CYP2A6, CYP2A6*6, was detected in 0.4% of the Japanese population. To study the enzymatic properties of the CYP2A6.6 protein with a single amino acid substitution of arginine 128 to glutamine, both this isozyme and the CYP2A6.1 protein (wild-type) were produced in insect cells using a baculovirus system. Coumarin 7-hydroxylation, which reflects CYP2A6 activity, was significantly reduced (one-eighth of normal) in cell lysate from CYP2A6*6-transfected Sf9 cells compared with that lysate from CYP2A6*1-transfected cells. To clarify the mechanism of inactivation of the CYP2A6.6 enzyme, the heme content and reduced CO difference spectrum were examined. Although CYP2A6.6 retained about one-half the heme content of CYP2A6.1, the reduced CO-bound Soret peak was completely lost. These results suggest that the inactivation of CYP2A6.6 is mainly due to disordering of the holoprotein structure rather than a failure of heme incorporation.

Amino Acid Sequence↗

Down-regulation of p27Kip1 expression is required for development and function of T cells.

The proliferation of T cells is regulated in a development-dependent manner, but it has been unclear whether proliferation is essential for T cell differentiation. The cyclin-dependent kinase inhibitor p27(Kip1) is abundant throughout development in cells of the T cell lineage, with the exception of late stage CD4(-)CD8(-) thymocytes and activated mature T cells, both of which show a high rate of proliferation. The role of down-regulation of p27(Kip1) expression in T cell development and function has now been investigated by the generation and characterization of three strains of p27 transgenic mice that express the transgene at various levels specifically in the T cell lineage. The numbers of thymocytes at CD4(+)CD8(+), CD4(+)CD8(-), and CD4(-)CD8(+) stages of development as well as those of mature T cells in peripheral lymphoid tissues were reduced in transgenic mice in a manner dependent on the level of p27(Kip1) expression. The development of thymocytes in the transgenic strain in which p27(Kip1) is most abundant (p27-Tg(high) mice) appeared to be blocked at the CD4(-)CD8(-)CD25(+)CD44(low) stage. Peripheral T cells from p27-Tg(high) mice exhibited a reduced ability to proliferate in response to mitogenic stimulation compared with wild-type T cells. Moreover, Ag-induced formation of germinal centers and Ig production were defective in p27-Tg(high) mice. These results suggest that down-regulation of p27(Kip1) expression is required for the development, proliferation, and immunoresponsiveness of T cells.

Animals↗

A field evaluation of in situ biodegradation of trichloroethylene through methane injection.

A field study of biodegradation of trichloroethylene (TCE) through methane injection was conducted at the yard of a home in Japan. Methane was selected as the safest substrate for injection into groundwater. Methane, oxygen, nitrate, and phosphate were introduced into groundwater contaminated with 220 microg/L of TCE. After a week of biostimulation, methane concentrations gradually decreased below the detection limit. Methane oxidizing bacterial numbers increased from 10 to 10(4) cells/mL with methane consumptions. During methane injection. 10-20% of TCE removal was observed. The biotransformation yield was 3-13 mgTCE/gCH4 in this field test. After methane injections were stopped, TCE removal was not observed. These results indicated that bioremediation using methane was useful as a safe technology for a TCE-contaminated area near homes.

Biodegradation, Environmental↗

GC/MS analysis of polybrominated diphenyl ethers in fish collected from the Inland Sea of Seto, Japan.

Development of an analytical method for polybrominated diphenyl ethers (PBDEs) in fish and their concentration in Japanese marine fish were investigated. Fish homogenate was extracted with diethyl ether/hexane (1 + 3). The extract was cleaned up by automated gel permeation chromatography (GPC) and then by mini-column chromatography, which consisted of three layers of silica gel and sulfuric acid-impregnated silica gel. The PBDE fraction was concentrated and injected into a GC/MS with negative chemical ionization (NCl). Recoveries of the 15 individual PBDEs (BDE-15, 28, 37, 47, 66, 71, 75, 77, 85, 99, 100, 119, 153, 154, and 209) each at a fortification level of 4 ng/g lipid were in the range of 88-128% and the relative standard deviations (RSD) were 0.43-7.6% (n = 4). Seven species of marine fish (conger eel, flounder, gray mullet, horse mackerel, red sea bream, sea bass, and yellowtail) were collected from the Inland Sea of Seto, and were analyzed with the developed method. Seven PBDEs (BDE-28, 47, 66, 99, 100, 153, and 154) were detected in all the samples. The most abundant PBDE congener was BDE-47 found in all the samples. Relatively high levels of PBDEs were found in the gray mullets and yellowtails.

Animals↗

Role of lymphoid cells in age-related change of susceptibility to Friend leukemia virus-induced leukemia.

Susceptibility for Friend leukemia virus (FLV)-induced leukemogenesis was examined in the C3H/He (C3H)-->C57BL/6 (B6) radiation bone marrow chimeras of various age groups, and the effect of aging of host mice on the susceptibility was determined. The bone marrow chimera system provided the various age of FLV-resistant host mice (B6) possessing the same age of FLV-susceptible target cells from C3H mice. Using this system, we could determine the aging effect on the host resistancy against FLV without an influence of the aging effect on target cells. First, the young C3H-->young B6 chimeras and young C3H-->old B6 chimeras were compared. The young-->old chimeras were more susceptible to FLV-induced acute disease than the young-->young chimeras. The spleen CD4+ as well as CD8+ T cells were reduced in young-->old chimeras compared with young-->young chimeras. Similarly, the old C3H-->old B6 chimeras were more susceptible than old-->young chimeras and revealed the lower CD4+ T cell ratio in the spleen. Discussion was made on the possible implication of these findings on the role of T cells in age-related change of resistance to FLV-induced leukemogenesis.

Aging↗

Immunological restoration and anti-tumor effect by Japanese herbal medicine in aged mice.

We examined the effect of two Japanese herbal medicines (Kampo-Hozai) on immunological functions and anti-tumor activity in old mice. Hochu-ekki-to (TJ-41) was remarkably effective in the restoration of impaired immune functions of old mice, in terms of number of T cells and NK cells, and anti-SRBC antibody response, while it was not effective in enhancing immune functions of young mice. Juzen-taiho-to was also effective in increasing the number of T cells, remarkably, and NK cells, slightly, in the aged mice. While a significant increase was not observed in young mice. NK activity increased both in young and old mice with the treatment of TJ-48. A significant decrease was observed in metastatic pulmonary colonies of B16 melanoma cells both in young and old mice treated with Juzen-taiho-to for 16 weeks. These results suggested that some of Japanese herbal medicines were useful in restoration of impaired immune functions of old mice and could be recommended for human elderly.

Administration, Oral↗

Pharmacokinetic studies of Gln117 tissue-type plasminogen activator in rats.

Gln117 t-PA is a mutant type of tissue-type plasminogen activator (mt-PA), which is generated by the removal of a high mannose oligosaccharide resulting from the mutation of amino acid #117, from asparagine (Asn) to glutamine (Gln). The plasma concentration, distribution, metabolism and excretion of Gln117 t-PA were investigated after a single intravenous administration of 125I-Gln117 t-PA or Gln117 t-PA, comparing with wild-type t-PA (WT t-PA). The plasma concentration of Gln117 t-PA decreased more slowly than that of WT t-PA, plasma clearance (CL(p)), and that of Gln117 t-PA in rats was approximately 2.6 times lower than that of WT t-PA. The highest radioactivity was found in the liver at 5 min after intravenous administration of [125I]Gln117 t-PA to rats, but the radioactivity in the liver was lower than that after intravenous administration of [125I]WT t-PA in our previous paper. Within 288 h after intravenous administration of [125I]Gln117 t-PA to rats, 88.5 and 5.5% of administered radioactivity were excreted into urine and feces, respectively. In a gel-filtration chomatographic (GFC) analysis of plasma, Gln117 t-PA formed complexes with plasma proteins, similarly to WT t-PA. The hepatic clearance (CL(hep)) of both t-PAs was evaluated by comparing the plasma concentration after a constant intravenous infusion with that after a constant intraportal venous infusion. The CL(hep) of Gln117 t-PA was 6.5 times lower than that of WT t-PA. These results indicate that the low uptake of Gln117 t-PA to the liver reduces CL(p) compared with WT t-PA.

Animals↗

AS-924, a novel, orally active, bifunctional prodrug of ceftizoxime: physicochemical properties, oral absorption in animals, and antibacterial activity.

AS-924 is an oral prodrug of the antibiotic ceftizoxime (CTIZ), a parenteral use cephalosporin. This novel prodrug, produced by esterifying CTIZ with a lipophilic pivaloyloxymethyl (POM) group and introducing a water soluble L-alanyl group, is expected to increase the bioavailability and thereby, augment the antibacterial activity of CTIZ in vivo compared with existing prodrugs. To study the effect of the L-alanyl group in AS-924 on its bioavailability, the plasma concentration profiles of CTIZ in dogs were examined following the dosing of AS-924 and CTIZ-POM, in powder form, after pretreatment with the antacid ranitidine, and following the dosing of AS-924 after pretreatment with a gastrointestinal motility stimulant metoclopramide or suppressant scopolamine butylbromide. The absorption rate of AS-924 was constant under these different conditions due to its unique balance of lipophilicity and water solubility. CTIZ is as antibacterially active as pre-existing oral cephalosporins against Gram-positive clinical isolates, while being more active against all Gram-negative isolates-particularly Enterobacteriaceae and Haemophilus influenzae. A simulation model for the eradication profile of bacteria in computer programmed pharmacokinetic (PK) system was carried out to study the antibacterial action of CTIZ in human. CTIZ was proven to eradicate Streptococcus pneumoniae and H. influenzae effectively, while cefpodoxime (CPOD), the active moiety of CPOD proxetil, eradicated S. pneumoniae, but not H. influenzae. These results confirm that, AS-924 is a potent oral antibiotic and would be expected to be clinically effective and efficient.

Administration, Oral↗

Identification and quantification of tamoxifen-DNA adducts in the liver of rats and mice.

A new HPLC gradient system was developed for (32)P-postlabeling analysis to identify and quantify hepatic tamoxifen-DNA adducts of rats and mice treated with tamoxifen. Four stereoisomers of alpha-(N(2)-deoxyguanosinyl)tamoxifen (dG(3')(P)-N(2)-TAM), alpha-(N(2)-deoxyguanosinyl)-N-desmethyltamoxifen (dG(3')(P)-N(2)-N-desmethyl-TAM), and alpha-(N(2)-deoxyguanosinyl)tamoxifen N-oxide (dG(3')(P)-N(2)-TAM N-oxide) were prepared by reacting either alpha-acetoxytamoxifen, alpha-acetoxy-N-desmethyltamoxifen or alpha-acetoxytamoxifen N-oxide with 2'-deoxyguanosine 3'-monophosphate, and used as standard markers for (32)P-postlabeling/HPLC analysis. Our HPLC gradient system can separate the above 12 nucleotide isomers as nine peaks; six peaks representing two each trans epimers (fr-1 and fr-2) of dG(3')(P)-N(2)-TAM, dG(3')(P)-N(2)-N-desmethyl-TAM and dG(3')(P)-N(2)-TAM N-oxide, and three peaks representing a mixture of two cis epimers (fr-3 and fr-4) of nucleotides. Tamoxifen was given to female F344 rats and DBA/2 mice by gavage at doses of 45 mg/kg/day and 120 mg/kg/day, respectively, for 7 days. Totally 15 and 17 tamoxifen-DNA adducts were detected in rats and mice, respectively; among them 13 adducts were observed in both rats and mice. trans-dG-N(2)-TAM (fr-2) and trans-dG(3')(P)-N(2)-N-desmethyl-TAM (fr-2) were two major adducts in both animals. Except for these two adducts, trans-dG-N(2)-TAM N-oxide (fr-2) was the third abundant adduct that accounted for 6.4% of the total adducts in mice, while this accounted for only 0.3% in rats. A trans-isomer (fr-1) and cis-isomers (fr-3 and -4) of dG(3')(P)-N(2)-TAM, dG(3')(P)-N(2)-N-desmethyl-TAM and dG(3')(P)-N(2)-TAM N-oxide were also detected as minor adducts in both animals except for cis-form of dG-N(2)-TAM N-oxide in rats. Although the administered dose for rats was 2.7-fold less than that for mice, the total adduct level of rats (216 adducts/10(8) nucleotides) were 3.8-fold higher than mice (56.2 adducts/10(8) nucleotides). Thus, these three types of tamoxifen adducts accounted for 95.0 and 92.5% of the total DNA adducts of the rats and mice, respectively. The formation of tamoxifen adducts primarily resulted from alpha-hydroxylation of tamoxifen.

Animals↗

A gene therapy model for retrovirus-induced disease with a viral env gene: expression-dependent resistance in immunosuppressed hosts.

At the initial stage of retroviral infection, virion envelope glycoprotein (env product) binds to cell surface receptors. Cells infected with retrovirus or into which the env gene was introduced, become resistant to superinfection by other retroviruses with the same receptor specificity, a phenomenon known as receptor interference. We have demonstrated previously that the introduction of an env gene from a truncated endogenous ecotropic murine leukemia virus (MuLV), the Fv-4 resistance (Fv-4r) gene, into the bone marrow hematopoietic cells of Fv-4 sensitive (Fv-4s) mice protected mice from ecotropic retrovirus-induced disease. Using the gene transfer system under the control of the retroviral vector and bone marrow transplantation (BMT), here we could show that the expression of an introduced Fv-4r gene in hematopoietic cells continued for more than 1 year after BMT. To determine the inhibitory mechanism of Fv-4r env gene expression against FLV-infection in this model system, peripheral blood mononuclear cells (PBMCs), or spleen cells from chimeras with various degrees of env-expression, were mixed with green fluorescence protein (GFP)-conjugated Friend MuLV envglycoprotein (GFP-Fr-ENV). The amount of GFP-Fr-ENV bound to these cells inversely correlated with the expression intensity of the transduced env gene indicating the receptor interference effect. Next, to see whether transduction of the Fv-4r gene would protect an immunosuppressed host from FLV-induced leukemogenesis, we generated immunocompromised chimeras by transplanting env-transduced bone marrow cells into a thymectomized host. These chimeras also resisted FLV-induced leukemogenesis, indicating that receptor interference-based gene therapy could become a therapeutic basis for immunodeficiency virus-induced diseases in vivo.

AIDS-Related Opportunistic Infections↗

Immunohistological analysis of thymoma by molecules differentially expressed in the thymic cortex and medulla, and its application in the differential diagnosis of thymoma from esophageal and lung cancer.

The purpose of this study was to verify the WHO classification of thymic tumors using immunohistological methods, and to discover whether these methods can be applied to differentiate thymoma from squamous cell carcinoma (SCC) of the esophagus and the lung. Twenty-nine thymoma cases were classified according to WHO and were then immunohistologically examined for the positivity of these molecules. All thymoma cases investigated in this study were positive for IL-1R, and most of them were also positive for bek. In contrast, UH-1 was highly positive in B1 and B2 type thymomas, but negative or weakly positive in A, AB and B3 type thymomas. Twelve esophageal cancers and 21 lung cancers were also examined for the positivity of the same molecules. All esophageal cancers were negative for UH-1. Three of 12 cases were weakly positive for IL-1R, and four of these 12 cases were also weakly positive for bek. Twelve of 21 lung cancer cases were adenocarcinomas, all of them negative for IL-1R, bek and UH-1. Nine of 21 lung cancer cases were SCCs, all of them negative for UH-1. Eight of nine SCC cases were strongly positive for IL-1R, while seven of these were weakly positive for bek. We conclude that the WHO classification of thymic tumors is still valid as demonstrated by immunohistological analysis and that the positivity of UH-1, IL- 1R and bek might be helpful in differentiating thymoma from SCC of the esophagus and the lung.

Adenocarcinoma↗

Effect of maternal age on incidences of apoptotic and proliferative cells in trophoblasts of full-term human placenta.

Advanced maternal age is known to be a risk factor for various kinds of obstetric complications, including placental dysfunction. As a first step towards determining the maternal age-related changes in placental, as well as trophoblastic function, we examined the incidences of apoptotic and proliferative cells in trophoblasts of placentae from women of various ages using the TUNEL method and immunohistochemistry for Ki-67 antigen. Tissue sections were collected from the placentae of healthy mothers with normal delivery of healthy babies so that the placental cell kinetics maintaining normal pregnancy and delivery could be studied. The TUNEL-positive cells of the placenta were syncytiotrophoblasts with clustering of nuclei and the TUNEL-positive index of these cells varied from 0.28-1.2%. This index revealed a significant inverse correlation with maternal age. In contrast, the Ki-67-positive index of mononuclear trophoblasts of the placenta ranged between 1.2-2.8% and showed a positive correlation with maternal age. Many of the apoptotic cells of placental villi expressed the pro-apoptotic Bak protein, but were negative for expression of the anti-apoptotic Bcl-2 protein. These results suggest that trophoblasts have higher proliferative activity in older mothers, with a normal process of pregnancy and delivery. The Bcl-2 family proteins could be important for the regulation of trophoblastic apoptosis, although the cellular and molecular mechanisms mediating maternal age-related changes of the placenta remain to be determined.

Apoptosis↗

Urinary excretion of trypsinogen activation peptide (TAP) in taurocholate-induced pancreatitis in rats.

Trypsinogen activation peptide (TAP) is a useful marker of severe acute pancreatitis. However, it is sometimes difficult to detect an elevation of plasma TAP in patients with acute pancreatitis because TAP is rapidly cleared from plasma. Therefore, urine TAP has been evaluated to provide an accurate prediction of the outcome of pancreatitis. In the present study, we examined the time course of plasma and urine TAP simultaneously after induction of taurocholate-induced pancreatitis in rats. Plasma TAP levels peaked at 1 hour after the induction of pancreatitis and then gradually decreased, but was still higher than prepancreatitis levels at 48 hours. Significant increases in urine TAP levels were seen at 0-6, 6-12, and 30-36 hours after induction of pancreatitis. The peak level of urine TAP output and TAP/creatinine ratio was observed at 6-12 and 30-36 hours, respectively. Urine TAP concentration showed a significant correlation with both urine TAP/creatinine ratio and TAP output in urine (p < 0.01). In conclusion, plasma TAP increased immediately after the induction of pancreatitis, but excretion of TAP into urine was delayed several hours in taurocholate-induced pancreatitis in rats. The measurement of urine TAP concentration alone sufficiently can reflect the amount of TAP liberated in the pancreas at initial stage of acute pancreatitis.

Acute Disease↗