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Biomedical subjects

S Tsukada

Publications and source records attributed to S Tsukada.

At least 91 records · Page 5Linked to original sources

Effects of omeprazole on gastric mucosal growth and differentiation in developing rat.

The effects of omeprazole on developing rat stomach mucosa were investigated. Infant rats were given subcutaneous injections of either omeprazole (25 mg/kg body weight/day) or vehicle once a day from the day after birth. As a result, omeprazole caused an elevation of mucosal pH and suppressed an increase in mucosal pepsinogen and its mRNA levels during stomach development. Histologically, these changes were associated with a reduction in mature pepsinogen-producing cells throughout stomach mucosa. Omeprazole also caused a delay in the expression of cathepsin E in surface mucous cells and an increase in labeled cells with bromodeoxyuridine. Thus, the present results indicate that omeprazole induces an increase in mucosal cell proliferation and delays the differentiation of developing rat stomach mucosa. Since the observed changes were remarkable especially from days 15 to 21 after birth when significant development of acid secretion occurs, the effects of omeprazole appear to be related with the potent acid inhibitory effect of the reagent.

Aging↗

Properties of a DNA-binding protein from rat nuclear scaffold fraction.

Our previous work [Hibino et al. (1992) Biochem. Biophys. Res. Commun. 184, 853-858] has shown that a highly repetitive component in rat nuclear DNA forms a sequence-directed bend to have the binding affinity for the nuclear scaffold protein, P130. In the present experiment, the mobility shift DNA-binding assay suggested that the formation of the repetitive component-P130 complex is based on some cooperative mode of interaction. The DNase I footprint analysis revealed that the major binding region of this protein in the DNA is located near the center of the 370-bp XmnI repeat which has a strongly bent overall structure. These results imply that a nuclear scaffold protein such as P130 binds to sequence-directed bend(s) in a highly repetitive DNA to play an important role in construction of a higher-order chromatin structure.

Animals↗

Omeprazole, a proton pump inhibitor, reduces the secretion, synthesis and gene expression of pepsinogen in the rat stomach.

Omeprazole, a proton pump inhibitor, dose-dependently inhibited pepsinogen secretion as well as acid secretion in the rat glandular stomach. The reduction in the secretion was rapid and was followed by a decrease in the mRNA levels. The inhibitory effect of omeprazole on pepsinogen secretion and its effect on the mRNA level showed similar dose-response relationship, suggesting that pepsinogen secretion and the gene expression are regulated coordinately. Consistent with the reduction in the mRNA levels, protein synthesis was reduced. However, intracellular stores of pepsinogen increased in pepsinogen-producing cells, indicating that the inhibitory effect of omeprazole on pepsinogen secretion is greater than on its synthesis. Reducing the secretion, synthesis and gene expression of pepsinogen, omeprazole has a potent effect on pepsinogen-producing cells in vivo, as well as on parietal cells, in the rat glandular stomach.

Animals↗

Purification and characterization of nuclear scaffold proteins which bind to a highly repetitive bent DNA from rat liver.

Our previous work (Hibino et al. (1992) Biochem. Biophys. Res. Commun. 184, 853-858) has shown that the binding affinities of a highly repetitive DNA component for rat nuclear scaffold proteins, P123 and P130, depend on the degree of sequence-directed bending of the helix axis. In the present experiment, these proteins have been purified and finally isolated by DNA-Sepharose column chromatography. The pI values of P123 and P130 were 7.2 and 8.1, respectively. The southwestern blotting revealed that a highly repetitive bent DNA (370-bp XmmI fragment) from rat liver binds readily to the isolated proteins under a hypotonic condition (50 mM NaCl) and that the level of the binding affinity for each protein was lowered with increasing NaCl concentration. The sedimentation analysis predicted that direct interaction between the XmnI fragment and P123 or P130 results in the formation of a complex which consists of two of the fragments and one molecule of the protein, alternatively, one of the fragment and three molecules of the proteins. Distamycin A, an antibiotic which binds specifically to AT-rich DNA, removed the bend in the XmnI fragment and inhibited binding of the fragment to P123 or P130, whereas neither removal of the bend nor binding inhibition was observed with chromomycin A3, an antibiotic specific for GC-rich sites in DNA. These results imply that AT-rich regions in a highly repetitive DNA component cause bending of the helix axis to be recognized by some of nuclear scaffold proteins.

Animals↗

Mutation of unique region of Bruton's tyrosine kinase in immunodeficient XID mice.

The cytoplasmic tyrosine kinase, Bruton's tyrosine kinase (Btk, formerly bpk or atk), is crucial for B cell development. Loss of kinase activity results in the human immunodeficiency, X-linked agammaglobulinemia, characterized by a failure to produce B cells. In the murine X-linked immunodeficiency (XID), B cells are present but respond abnormally to activating signals. The Btk gene, btk, was mapped to the xid region of the mouse X chromosome by interspecific backcross analysis. A single conserved residue within the amino terminal unique region of Btk was mutated in XID mice. This change in xid probably interferes with normal B cell signaling mediated by Btk protein interactions.

Agammaglobulinaemia Tyrosine Kinase↗

Deficient expression of a B cell cytoplasmic tyrosine kinase in human X-linked agammaglobulinemia.

We describe a novel cytoplasmic tyrosine kinase, termed BPK (B cell progenitor kinase), which is expressed in all stages of the B lineage and in myeloid cells. BPK has classic SH1, SH2, and SH3 domains, but lacks myristylation signals and a regulatory phosphorylation site corresponding to tyrosine 527 of c-src. BPK has a long, basic amino-terminal region upstream of the SH3 domain. BPK was evaluated as a candidate for human X-linked agammaglobulinemia (XLA), an inherited immunodeficiency characterized by a severe deficit of B and plasma cells and profound hypogammaglobulinemia. BPK mapped to within 100 kb of a probe defining the polymorphism most closely linked to XLA at DXS178. Reduction in or the absence of BPK mRNA, protein expression, and kinase activity was observed in XLA pre-B and B cell lines. BPK is likely the XLA gene and functions in pathways critical to B cell expansion.

Agammaglobulinemia↗

A novel mutation within the kinase domain of v-abl gene responsible for temperature-sensitive colony-forming ability in soft agar.

Mutation sites of unique temperature-sensitive (ts) mutants of Abelson murine leukemia virus(A-MuLV) that exhibited the ts phenotype in colony-forming ability in soft agar, but not in morphological transformation, were determined. Cloning and sequencing analysis of the full viral genomes of five independent ts mutants revealed a total of 10 mutation sites: 3 mutations (bp714, 742, and 817) located in the 5' untranslated region between LTR and gag gene; 4 mutations (bp1227, 1229, 1512, and 1634) in the gag gene; 3 mutations (point mutations at bp2764 and 3265, and 2-base deletion of bp3448 and 3449) in the abl gene. To determine the mutation sites critical for the ts phenotype in colony-forming ability in soft agar, hybrid viruses were constructed by exchanging the corresponding restriction fragments between wild-type and ts A-MuLV. The hybrid virus containing only the point mutation (T-->G) at bp2764 that exchanged leucine with arginine exhibited the ts phenotype in colony-forming ability in soft agar. Thus, a novel mutation within the kinase domain of the abl gene critical for the ts phenotype in colony-forming ability in soft agar was determined here.

3T3 Cells↗

DNA methylation of the pepsinogen 1 gene during rat glandular stomach carcinogenesis induced by N-methyl-N'-nitro-N-nitrosoguanidine or catechol.

The methylation patterns of the rat pepsinogen 1 (Pg1) gene in preneoplastic and neoplastic stomach lesions induced by genotoxic N-methyl-N'-nitro-N-nitrosoguanidine (MNNG) or the non-genotoxic carcinogen catechol were investigated. Male WKY/Ncrj rats were given MNNG in their drinking water (50 mg/l) for 30 weeks or 0.8% catechol throughout the experiment (60 weeks). MNNG induced Pg1 altered pyloric glands (PAPG), adenomatous hyperplasias and well-differentiated adenocarcinomas. Catechol also induced PAPG and adenomatous hyperplasias although cancers did not develop. Adenomatous hyperplasias and adenocarcinomas all consisted of gastric type cells resembling surface mucous cells or pyloric gland cells with little or no Pg1 expression. In MNNG-induced stomach cancers generally lacking Pg1, altered Pg1 gene methylation was observed with both CCGG and GCGC sites being methylated more than normal pyloric mucosa. MNNG or catechol-induced adenomatous hyperplasias also demonstrated essentially the same methylation changes in the CCGG, but not in the GCGC sites. In the mucosa containing PAPG in groups treated with MNNG or catechol the methylation patterns of the Pg1 gene were quite similar to those of normal pyloric mucosa, although the CCGG sites tended to demonstrate slightly increased methylation. The results suggest that the altered methylation of the Pg1 gene observed in stomach cancers is acquired early in the carcinogenic process and progressive methylation changes occur with tumor development.

Adenocarcinoma↗

Clinical application of serum pepsinogen I and II levels for mass screening to detect gastric cancer.

A considerable number of gastric cancers derive from stomach mucosa where chronic atrophic gastritis is severe and extensive. Based on the fact that the serum pepsinogen levels provide a precise measure of the extent of chronic atrophic gastritis, we have devised a mass screening method involving serum pepsinogen measurement to identify subjects at high risk of gastric cancer. In 1991, we screened 4,647 workers (male: 4,113, female: 534, mean age: 49.0 years) at a Japanese company using this method. Out of 875 subjects (18.8%) with a serum pepsinogen I level of less than 50 micrograms/liter and a pepsinogen I/II ratio of less than 3.0, 676 subjects (14.5%) were selected for further investigation by endoscopy. This led to the detection of four subjects (0.086%) with gastric cancer (three in an early stage) and four subjects with adenoma. The cancer detection rate of this new screening method was comparable, and in some respects superior, to that of the traditional barium X-ray screening. Since the incidence of test-positive subjects was as low as 10% amongst subjects aged less than 40, this screening method appears to be especially useful for screening of younger generations. The new method is less expensive than the traditional barium X-ray and subjects experience little discomfort. Further, many serum samples can be quickly measured simultaneously. The results of this study have indicated that serum pepsinogen screening provides a valuable method for detecting gastric cancers.

Adenoma↗

Markers of surface mucous cell type human gastric cancer cells: galactose oxidase-Schiff reactive mucins, monoclonal antibody SH-9 reactive mucins and cathepsin E.

Cellular differentiation of gastric cancer cells allows the classification of cell type into surface mucous cell, pyloric gland cell, intestinal absorptive cell and goblet cell types by mucin histochemistry and pepsinogen (Pg) immunohistochemistry. Surface mucous cell differentiation of gastric cancers of each histologic type has previously been detected by the galactose oxidase-Schiff (GOS) reaction although this is not always positive in all cases. Mucus granules of surface mucous cells of normal gastric mucosa show an intense reactivity for SH-9 (monoclonal antibody against CA125-bearing antigenic molecule fragments). Cathepsin E is also expressed in the cytoplasm of surface mucous cells, weakly in absorptive cells of duodenal villi and occasionally in pyloric gland cells. Expression of SH-9 reactive mucin and of cathepsin E were therefore investigated as possible additional markers to distinguish between the gastric cancer cell type in 203 primary stomach cancers. SH-9 reactive mucin was found selectively in GOS positive cancer cells of surface mucous cell type and/or cancer cells unclassified by mucin histochemistry. These latter cells were therefore classified into the surface mucous cell category. Cathepsin E was found mainly in cancer cells of the GOS positive surface mucous cell type and occasionally, in intestinal absorptive and pyloric gland cell types. Galactose oxidase-Schiff, SH-9 and cathepsin E reactive or positive cancer cells were found in 145 (71.4%), 151 (74.4%) and 144 (70.9%), respectively, of the 203 primary stomach cancers investigated.

Antibodies, Monoclonal↗

Tissue- and cell-specific control of guinea pig cathepsin E gene expression.

Northern blotting of RNAs from normal guinea pig tissues revealed that the tissue distribution of cathepsin E mRNA was relatively limited and the highest level of the mRNA was observed in the stomach mucosa. Expression of the mRNA was also observed in the spleen, although the level was very low. These results were in good agreement with the distribution of the cathepsin E-producing cells as revealed by immunohistochemistry. In the separated fractions of dispersed mucosal cells prepared from the stomach by centrifugal elutriation, the extent of cathepsin E mRNA expression was closely correlated with the enrichment of the producing cells. In addition, both CCGG and GCGC sites within the gene region were hypomethylated to a greater extent in the producing tissues than elsewhere, reflecting specific hypomethylation in the producing cells. The observed tissue- and cell-specific transcriptional control of cathepsin E gene, which is correlated with a decreased level of methylation in the gene region, suggests that the enzyme is probably involved in specific functions of particular differentiated cells, especially those of the stomach mucosa.

Animals↗

Gastric procathepsin E and progastricsin from guinea pig. Purification, molecular cloning of cDNAs, and characterization of enzymatic properties, with special reference to procathepsin E.

Procathepsin E and progastricsin were purified from the gastric mucosa of the guinea pig. They were converted to the active form autocatalytically under acidic conditions. Each active form hydrolyzed protein substrates maximally at around pH 2.5. Pepstatin inhibited cathepsin E very strongly at an equimolar concentration, whereas the inhibition was much weaker for gastricsin. Molecular cloning of the respective cDNAs permitted us to deduce the complete amino acid sequences of their pre-proforms; preprocathepsin E and preprogastricsin consisted of 391 and 394 residues, respectively. Procathepsin E has unique structural and enzymatic features among the aspartic proteinases. Lys at position 37, which is common to various aspartic proteinases and is thought to be important for stabilizing the activation segment, was absent at the corresponding position, as in human procathepsin E. The rate of activation of procathepsin E to cathepsin E is maximal at around pH 4.0. It is very different from the pepsinogens and may be correlated with the absence of Lys37. Native procathepsin E is a dimer, consisting of two monomers covalently bound by a disulfide bridge between 2 Cys37. Interconversion between the dimer and the monomer was reversible and regulated by low concentrations of a reducing reagent. Although the properties of the dimeric and monomeric cathepsins E are quite similar, a marked difference was found between them in terms of their stability in weakly alkaline solution: monomeric cathepsin E was unstable at weakly alkaline pH whereas the dimeric form was stable. The generation of the monomer was thought to be the process leading to inactivation, hence degradation of cathepsin E in vivo.

Amino Acid Sequence↗

Continuing V gamma 2 to J gamma 2 rearrangements of murine T cell receptor gamma genes in a B-committed immature cell line.

In SPL2-1-2, a murine B-committed immature cell line transformed with a temperature-sensitive mutant of Abelson virus, T cell receptor (TCR) gamma gene rearrangements, together with IgH gene rearrangements, were induced during culture at a non-permissive temperature (39 degrees C). During 11-12 months of culture, TCR gamma gene rearrangements occurred in all cells. In contrast to TCR gamma genes, neither TCR beta or TCR delta were detected even after 11-12 months of culture at a non-permissive temperature. The majority of the TCR gamma gene rearrangements observed here were V gamma 2 to J gamma 2 joinings and the remaining rearrangements were J gamma 1-linked. V gamma 1 to J gamma 4 and V gamma 3 to J gamma 3 joinings were not detected. Approximately 70% of cells with TCR gamma gene rearrangements produced normal-sized transcripts from the rearranged TCR gamma genes. Cloning and sequencing analysis of a cDNA from the transcripts demonstrated that the whole structure of the cDNA was similar to that of T-lineage cells. These results showed that TCR gene rearrangements were restricted to the gamma genes and that V gamma 2 to J gamma 2 joinings occurred preferentially in this B-committed immature cell line. Furthermore, TCR gamma gene rearrangements also occurred in intracytoplasmic mu-chain producing cells. This indicated that the existence of intracytoplasmic mu-chains did not prevent TCR gamma gene rearrangements, although the existence of mu-chains is known to inhibit further productive IgH gene rearrangements, (allelic exclusion). These results should provide many implications for the mechanism of TCR gene rearrangements, especially that of cross-lineage rearrangements.

Animals↗

Transitory expression of Thy-1 antigen in immature B cell lines.

In cmu- B220+ Thy-1- murine immature B cells transformed with a temperature-sensitive mutant of Abelson murine leukemia virus, a low level of Thy-1 antigen was transitorily expressed after the shift of the culture temperature from the permissive (35 degrees C) to the non-permissive (39 degrees C) temperature. On the other hand, B220 antigen was persistently expressed regardless of whether the cells were cultured at the permissive or non-permissive temperature. No other T-lineage-specific antigens, CD3, CD4, and CD8 were induced during the culture at the non-permissive temperature. Expression of Thy-1 antigen was confirmed by the detection of a low level of Thy-1-specific mRNA. These results clearly showed that immature B cells could express Thy-1 antigen during proliferation and/or differentiation. The results imply a role for Thy-1 antigen in B cell proliferation and/or differentiation.

Animals↗

The nucleotide and deduced amino acid sequences of porcine liver proline- beta-naphthylamidase. Evidence for the identity with carboxylesterase.

A cDNA clone for porcine liver proline-beta-naphthylamidase was isolated and sequenced. The deduced amino acid sequence of 567 residues was highly homologous with those of carboxylesterases (EC 3.1.1.1) previously reported for other species. In addition, proline-beta-naphthylamidase purified from porcine liver was shown to have strong activity towards p-nitrophenylacetate, a representative substrate for carboxylesterases. These results suggest that proline-beta-naphthylamidase is identical with carboxylesterase.

Amino Acid Sequence↗

Unlinked regulation of cell growth and differentiation in immature B cell lines.

We established many immunoglobulin-null immature B cell lines transformed by tsOS-59, a temperature-sensitive mutant of Abelson murine leukemia virus. In different cell lines cell growth was depressed and cell differentiation (generation of intracytoplasmic mu-positive cells from Ig- cells) was induced by the shift of culture temperature from low (35 degrees C) to high (39 degrees C). Cell lines were categorized into four groups: (i) temperature sensitive (ts) to both cell growth and differentiation, (ii) ts to cell growth but not to cell differentiation, (iii) ts to cell differentiation but not to cell growth, and (iv) ts to neither cell growth nor differentiation. These results indicated that the depression of cell growth did not necessarily induce cell differentiation, and that cell differentiation was induced regardless of whether cell growth was depressed or not. Furthermore, the results showed that the depression of cell growth and the induction of cell differentiation occurred without the reduction of tyrosine kinase activity of P120gag-abl at high, nonpermissive temperature. Our cell growth and differentiation system described here should provide us with the interesting findings of the relation between B cell growth and differentiation.

Animals↗

Immature B cells can pass through a VHDJH/germ line state in the Ig H chain gene rearrangements.

SPL2-1-2, an Ig- murine immature B cell line, was established by the infection of immature B cells with tsOS-59, a temperature-sensitive mutant of Abelson murine leukemia virus. Southern blot and DNA cloning and sequencing analysis showed that SPL2-1-2 had a nonproductive VHQ52.DSP2.JH3 and a germ line (G) allele (VHDJH-/G), and that D to JH joinings followed by VH to DJH joinings progressed on the G allele during culture. These results indicated the existence of novel pathway of IgH gene rearrangements: G/G----DJH/G----VHDJH/G----VHDJH/DJH----VHDJH /VHDJH. This also implied that whether DJH/G state progressed to DJH/DJH or VHDJH/G state was stochastically determined, but not strictly controlled in an ordered fashion, although DJH/G state progressed more preferentially to DJH/DJH state than to VHDJH/G state.

Alleles↗