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Biomedical subjects

M Itakura

Publications and source records attributed to M Itakura.

At least 37 records · Page 2Linked to original sources

Molecular cloning and tissue-specific expression of a new member of the regenerating protein family, islet neogenesis-associated protein-related protein.

Islet neogenesis-associated protein (INGAP) is a protein expressed during islet neogenesis. We have cloned a novel cDNA having a similar sequence to INGAP cDNA. The cDNA encodes 175 amino acids designated INGAP-related protein (INGAPrP). INGAP is expressed in cellophane-wrapped pancreas, but not in normal pancreas, whereas INGAPrP was abundantly expressed in normal pancreas.

Acute-Phase Proteins↗

Localization of a gene for familial juvenile hyperuricemic nephropathy causing underexcretion-type gout to 16p12 by genome-wide linkage analysis of a large family.

OBJECTIVE: Familial juvenile hyperuricemic nephropathy (FJHN, MIM 162000) is an autosomal-dominant disease characterized by underexcretion-type hyperuricemia, gout, and chronic renal failure. No loci responsible for this disease or any underexcretion-type hyperuricemia/gout have ever been identified. The aim of the study was to localize a gene responsible for FJHN by linkage analysis. METHODS: A single large family with at least 20 affected members was analyzed. DNA was obtained from 13 affected and 18 non-affected members after lymphoblastoid cell lines were established. Initially, polymorphic data were obtained for 343 microsatellite loci covering all chromosomes except the X chromosome. Parametric linkage analysis was performed using the obtained data with LINKAGE package software. RESULTS: Following a genome-wide search using a set of highly polymorphic microsatellite markers, initial evidence for linkage was obtained for a marker on chromosome 16p. We subsequently genotyped the same subjects for 12 additional markers spanning approximately 30 cM on the short arm of chromosome 16. We obtained a maximum 2-point logarithm of odds (LOD) score of 6.04 at theta = 0 with the marker D16S401; multipoint linkage analysis yielded a maximum LOD score of 6.14 with markers D16S401 and D16S3113, and established a minimum candidate interval of approximately 9 cM. CONCLUSION: A gene for FJHN was localized to a candidate interval of approximately 9 cM at 16p12. These findings will be useful for the presymptomatic diagnosis of FJHN in some families and for testing genetic heterogeneity of FJHN in general.

Chromosome Mapping↗

Diabetes and pancreatic tumours in transgenic mice expressing Pa x 6.

AIMS/HYPOTHESIS: Both endocrine and exocrine cells of the pancreas differentiate from epithelial cells of primitive pancreatic ducts, and four types of pancreatic islet cells (alpha, beta, delta, and PP cells) are derived from the common pluripotent precursor cells. Although Pa x 6 is expressed in all islet cells, Pa x 4 is detected only in beta cells. In homozygous Pa x 4-null mice, beta cells are absent, whereas the number of alpha cells is increased. Therefore, we hypothesized that the balance of Pa x 4 and 6 is one of the determinants by which the common progenitor cells differentiate into alpha or beta cells. METHODS: To change this balance, we generated transgenic mice overexpressing Pa x 6 driven by the insulin promoter or the PDX1 promoter. RESULTS: In both types of transgenic mice, normal development of beta cells was disturbed, resulting in apoptosis of beta cells and diabetes. In Insulin/Pa x 6-Tg mice, beta cells were specifically affected, whereas in PDX/Pa x 6-Tg mice, developmental abnormalities involved the whole pancreas including hypoplasia of the exocrine pancreas. Furthermore, PDX/Pa x 6-Tg mice experienced proliferation of both ductal epithelia and islet cells and subsequent cystic adenoma of the pancreas. CONCLUSION/INTERPRETATION: These findings suggest that Pa x 6 promotes the growth of ductal epithelia and endocrine progenitor cells and that the suppression of Pa x 6 is necessary for the normal development of beta cells and the exocrine pancreas.

Animals↗

Expression of somatostatin receptor subtypes and growth inhibition in human exocrine pancreatic cancers.

The antiproliferative effects of somatostatin and its analogs on human pancreatic cancers were studied: (1) by evaluating the gene expression of somatostatin receptor (sstr) subtypes in human pancreatic cancer cell lines and cancer tissue specimens, (2) by evaluating the antiproliferative effects of somatostatin analogs, and (3) by evaluating the effect of sstr-2 cDNA transduction. Using a reverse transcriptase polymerase chain reaction (RT-PCR), the gene expression of five sstr subtypes (sstr-1 to -5) was examined in eight cell lines, and in ten pancreatic cancer tissues and in the normal surrounding pancreatic tissues. The antiproliferative effects of somatostatin (SS) -14 and its two analogs (SMS 201-995, RC-160) were examined by means of an MTT (3-(4,5-dimethylthiazol-2-yl)-2,5-diphenyltetrazolium bromide (thiazolyl blue)) assay on three cell lines and Panc-1 transfectants with human sstr (hsstr)-2A cDNA. Sstr-2 was expressed in all samples tested. All examined cell lines simultaneously expressed sstr-2 and -5, while most of the examined pancreatic cancer tissues did not express both of these subtypes simultaneously. Somatostatin analogs inhibited epidermal growth factor (EGF)-stimulated pancreatic cancer cell proliferation. The cell proliferation was further and significantly inhibited by 14% in stable transfectants of Panc-1 cells with hsstr-2A. Based on these findings, it is concluded that somatostatin analogs with their antiproliferative effects mediated by sstr-2 could be potentially useful in the treatment of pancreatic cancers.

Cell Division↗

The rate of cell growth is regulated by purine biosynthesis via ATP production and G(1) to S phase transition.

We recently showed that an increased supply of purine nucleotides increased the growth rate of cultured fibroblasts. To understand the mechanism of the growth rate regulation, CHO K1 (a wild type of Chinese hamster ovary fibroblast cell line) and CHO ade (-)A (a cell line deficient in amidophosphoribosyltransferase, a rate-limiting enzyme of the de novo pathway) were cultured under various conditions. Moreover, a defective de novo pathway in CHO ade (-)A cells was exogenously restored by 5-amino-4-imidazole-carboxamide riboside, a precursor of the de novo pathway. The following parameters were determined: the growth rate of CHO fibroblasts, the metabolic rate of the de novo pathway, the enzyme activities of amidophosphoribosyltransferase and hypoxanthine phosphoribosyltransferase, the content of intracellular nucleotides, and the duration of each cell-cycle phase. We concluded the following: (i) Purine de novo synthesis, rather than purine salvage synthesis or pyrimidine synthesis, limits the growth rate. (ii) Purine nucleotides are synthesized preferentially by the salvage pathway as long as hypoxanthine is available for energy conservation. (iii) The GTP content depends on the intracellular ATP content. (iv) Biosynthesis of purine nucleotides increases the growth rate mainly through ATP production and promotion of the G(1)/S transition.

Adenosine Triphosphate↗

Monte Carlo renormalization-group analysis of the lattice phi 4 model in D = 3,4

We present a simple, sophisticated method to capture renormalization-group flow in Monte Carlo simulation, which provides important information of critical phenomena. We applied the method to the D = 3,4 lattice phi 4 model and obtained a renormalization flow diagram that well reproduces theoretically predicted behavior of the continuum phi 4 model. We also show that the method can be easily applied to much more complicated models, such as frustrated spin models.

Journal Article↗

Both HPV and carcinogen contribute to the development of resistance to apoptosis during oral carcinogenesis.

Oral carcinomas frequently contain human papilloma virus (HPV)-16/18. As p53 is degraded through interaction with HPV-16/18 products (E6/E7), p53 dysfunction may contribute to oral carcinogenesis. Furthermore, epidemiological studies suggest that smoking history may be critical for oral carcinogenesis. To delineate the involvement of HPV-16 infection and carcinogen in oral carcinogenesis, Park et al have established a multistep oral carcinogenesis model. Overexpression of p53 altered the expression of Fas antigen (Fas-R), Bax and Bcl-2; however, it remains unclear how the loss of p53 modifies the expression of these molecules. Using the multistep oral carcinogenesis model, we analyzed how the loss of p53 and carcinogen modified the expression of these molecules and their role in the development of resistance to apoptosis of oral carcinomas. The HOK-16B cell line was immortalized by HPV-16 transfection of normal human oral keratinocytes (NHOK). HOK-16B-BaP and HOK-16B-BaP-T1 were established from HOK-16B following short-term and long-term stimulation with the chemical carcinogen, benzo(a)pyrene, respectively. The malignant phenotype develops in sequence from HOK-16B, HOK-16B-BaP and HOK-16B-BaP-T1. The expression of apoptosis-related molecules was examined by Western blot analysis or by flow cytometry. Fas-mediated cytotoxicity was assessed using CH-11, an agonistic anti-Fas-R IgM monoclonal antibody. The apoptosis-related molecules examined were the Fas-R, Bcl-2, Bax, and Fas-associated phosphatase 1 (FAP-1). Downregulation of Fas-R and upregulation of Bcl-2 in HOK-16B-BaP were observed in HOK-16B-BaP and HOK-16B-BaPT1. Bax was downregulated in HOK-16B, HOK-16B-BaP and HOK-16B-BaP-T1. The expression of FAP-1 was increased with progression towards malignancy. NHOK and HOK-16B were relatively sensitive to CH-11, whereas HOK-BaP and HOK-BaP-T1 were resistant to CH-11. Treatment of HOK-16B-BaP with antisense bcl-2 oligonucleotide rendered the cells more sensitive to CH-11-induced apoptosis. These data demonstrate that both the loss of p53 and carcinogen stimulation are associated with altered expression of Fas-R, Bcl-2 and FAP-1, although the loss of p53 is sufficient for altered expression of Bax. Thus, both HPV infection and smoking contribute to acquisition of anti-apoptotic characteristics by oral carcinomas.

Antibodies, Monoclonal↗

[A case of recurrent pancreatic cancer brought into a complete response by a multimodal treatment with intraarterial chemotherapy and radiotherapy].

We achieved a complete response of recurrent pancreatic cancer using a multimodal treatment with intravenous, oral and intraarterial chemotherapies and radiotherapy. A 55-year-old female patient had a recurrent pancreatic cancer, which had invaded the portal vein, 2 years after pancreatoduodenectomy. Angiography demonstrated prominent stenosis of the portal vein, which was enlarged by the insertion of a metalic stent to maintain blood flow to the liver. Chemotherapy included intravenous mitomycin C, 5-FU and 4'-epirubicin (EPI), oral UFT and cyclophosphamide, and intraarterial cisplatin, 5-FU and EPI through a catheter inserted into the celiac artery. Furthermore, the patient received a total of 50 Gy radiotherapy. Four months after the initiation of therapy, a computed tomography image demonstrated a complete disappearance of the recurrent tumor and a prominent decrease in the serum CA19-9 level. At present, 11 months have passed after the initiation of therapy, and she has been followed at our outpatient department without any symptoms of recurrence.

Adenocarcinoma↗

Transfection analysis of functional roles of complexin I and II in the exocytosis of two different types of secretory vesicles.

Classical neurotransmitters such as gamma-aminobutyric acid and glutamate are released from synaptic nerve terminals by exocytosis of synaptic vesicles. PC12 cells also have SSVs capable of storing acetylcholine (ACh). A novel method to examine the effect of transient transfection of any gene of interest on the exocytosis of SSVs was developed. The transfection of choline acetyltransferase (ChAT) into PC12 cells which have lost ACh synthesizing activity resulted in the accumulation of a substantial amount of ACh. Synthesized ACh was released in Ca(2+)-dependent manner. Release was thought to occur by an exocytosis of SSVs because: (1) release was abolished by treating the cells with vesamicol, a specific inhibitor of the vesicular ACh transporter (VAChT) localizing specifically in SSVs; and (2) the release was further increased by cotransfecting rat VAChT with the ChAT. By means of this method, we showed that overexpression of complexin I or II with ChAT markedly suppressed high-K(+)-dependent ACh release of SSVs.

Acetylcholine↗

Differential regulation of the human insulin gene transcription by GG1 and GG2 elements with GG- and C1-binding factors.

Using a human growth hormone reporter system, the introduced mutations in GG1 alone or both GG elements of GG1 and GG2 in the human insulin promoter abolished 94 or 96% of the beta-cell-specific transcriptional activity in a pancreatic islet beta-cell line of MIN6, while the mutations in GG2 or its total deletion abolished 85 or 86% of the transcriptional activity. When linked to the thymidine kinase promoter, mutations in GG1 or both GG elements abolished 74% of the transcriptional activity in MIN6 cells, while the mutations in GG2 or its total deletion abolished 55 or 54%. In the electrophoretic mobility shift assay (EMSA), one nuclear factor was shown to interact with two GG elements, and another C1-binding factor with GG1 and C1. The differential effects of deletions or selective mutations in the GG2 or GG1 sequence in the oligonucleotide probes on the binding activity of GG- or C1-binding factors in EMSA proved the requirement of both GG1 and GG2 or both GG1 and C1, respectively, for the transaction of these two factors. The molecular size of the GG-binding factor was estimated about 30 kDa. Based on these, we conclude that two GG elements contribute, with GG1 more critically than GG2, to the beta-cell-specific transcription of the human insulin gene through transaction with the GG- and C1-binding factors.

Animals↗

Chemotactic response toward chemokines and its regulation by transforming growth factor-beta1 of murine bone marrow hematopoietic progenitor cell-derived different subset of dendritic cells.

Dendritic cells (DCs) are highly specialized antigen-presenting cells that distribute widely in all organs. DCs initiate the primary immune response and activate naive T cells and B cells responsible for the acquired immunity. In this study, CCR7 mRNA was proved to be expressed in DCs and their precursors derived from murine bone marrow-derived hematopoietic progenitor cells (HPCs), whereas CCR1 mRNA was expressed in both CD11b-/dullCD11c+ and CD11b+hiCD11c+ DC precursors. CCR6 mRNA was not detected in any murine DC populations. In agreement with the chemokine receptor mRNA expression by each population in the DC differentiation pathway, SLC (also termed as MIP-3beta), one of the ligands for CCR7, strongly and selectively chemoattracted both CD11b-/dullCD11c+ and CD11b+hiCD11c+ DC precursors (days 6 to 7) and more mature DCs (days 13 to 14). We have recently found that transforming growth factor-beta1 (TGF-beta1), a cytokine that is essential for the appearance of Langerhans cells in the skin, polarizes murine HPCs to generate Langerhans-like cells through monocyte/macrophage differentiation pathway. We observed here that TGF-beta1 not only inhibited the expression of CCR7 in DCs and DC precursors derived from HPCs, but also inhibited the migration of these cells in response to SLC. This is the first report describing the chemokine and chemokine receptors responsible for murine DC migration and downregulation of DC migration by TGF-beta1.

Animals↗

Identification by differential display of a hypertonicity-inducible inward rectifier potassium channel highly expressed in chloride cells.

By using differential mRNA display to monitor the molecular alterations associated with adaptation of euryhaline eels to different salinities, we identified a cDNA fragment strongly induced in seawater eel gills. Cloning of a full-length cDNA and its expression in COS-7 cells indicated that the clone codes for an inward rectifier K+ channel (eKir) of 372 amino acid residues, which has two transmembrane segments and a typical pore-forming region (H5). Only low sequence similarities are present, except the H5 region, compared with other members of the inward rectifier K+ channel family (Kir). Consistent with this divergence in the amino acid sequence, a phylogenetic analysis indicated early divergence and independent evolution of eKir from other members; it is only distantly related to the Kir5.0 subfamily members. RNase protection analysis showed that eKir is highly expressed in the seawater eel gill, kidney, and posterior intestine but very weakly in freshwater eels. Immunohistochemistry of gill sections revealed dense localization of eKir in the chloride cells. Immunoelectron microscopy indicated that eKir is mainly present in the microtubular system in the chloride cell. This location and its salt-inducible nature suggest that the eKir channel cloned here is a novel member of the Kir5.0 subfamily of the Kir family and is implicated in osmoregulation.

Adaptation, Physiological↗

Clonal expansion of CD4+ TCRbetabeta+ T cells in TCR alpha-chain- deficient mice by gut-derived antigens.

A population of CD4+ alpha-beta+ T cells increases in the mucosal and peripheral lymphoid tissues of TCRalpha-chain-deficient mice with inflammatory bowel disease. The alpha-beta+ T cells, which produce predominantly IL-4, mediate the proliferation of colonic epithelial crypts and the infiltration of large numbers of IgA-producing plasma cells into the lamina propria of the colon. To examine whether enteric Ags were recognized by a population of monoclonal alpha-beta+ T cells leading to the intestinal inflammation, we examined the usage and clonotypes of TCR expressed by the alpha-beta+ T cells in TCRalpha-chain-deficient mice with inflammatory bowel disease. Analyses of immunoprecipitates by two dimensional electrophoresis and single-cell RT-PCR revealed that TCR of the alpha-beta+ T cells was a homodimer of beta-chains that was capable of recognizing luminal bacterial Ags. PCR single-strand conformation polymorphism analysis of TCR Vbeta transcripts revealed monoclonal accumulation of the alpha-beta+ T cells in the colonic lamina propria of the diseased mice. DNA sequencing revealed the accumulation of the alpha-beta+ T cells with the same CDR3 sequences in the colon. These findings suggest that the pathogenic CD4+ alpha-beta+ T cells expressing a homodimeric form of the TCRbeta-chains can be clonally expanded upon the stimulation with gut-derived Ags.

Amino Acid Sequence↗

Apoptosis and remodelling of beta cells by paracrine interferon-gamma without insulitis in transgenic mice.

AIMS/HYPOTHESIS: To examine whether interferon-gamma destroys islet beta cells directly or indirectly through lymphocyte activation, or whether direct action of interferon-gamma on beta cells by itself induces diabetes without insulitis. METHODS: To avoid possible nonspecific breakdown of beta cells by transgenic overexpression of interferon-gamma by the insulin promoter, we generated transgenic mice expressing interferon-gamma under the control of rat glucagon promoter (RGP-IFN-gamma-Tg mice). RESULTS: The absence of insulitis in RGP-IFN-gamma-Tg mice enabled us to investigate the direct effects of paracrine interferon-gamma. In RGP-IFN-gamma-Tg mice, serum concentrations of interferon-gamma and tumour necrosis factor-alpha (TNF-alpha) were 50 and 6 times higher than those in their littermates, respectively, and glucose-responsive insulin secretion decreased to one-half the level of that in the littermates. Transgenic interferon-gamma induced remodelling of beta cells where apoptosis of many beta cells was compensated by their vigorous regeneration and diabetes did not occur in most of the RGP-IFN-gamma-Tg mice. CONCLUSION/INTERPRETATION: Interferon-gamma alone is insufficient for the complete destruction of beta cells in vivo, and factors other than interferon-gamma including activated lymphocytes or other cytokines, are necessary in addition to interferon-gamma for the development of Type I (insulin-dependent) diabetes mellitus.

Animals↗

Different promoter usage and multiple transcription initiation sites of the interleukin-1 receptor-related human ST2 gene in UT-7 and TM12 cells.

The ST2 gene encodes receptor-like molecules that are very similar to the type I interleukin-1 receptor. Two distinct types of the ST2 gene products, ST2 (a soluble secreted form) and ST2L (a transmembrane form) are produced by alternative splicing. Here we demonstrate that the human ST2 gene has two alternative promoters followed by distinct noncoding first exons, which are located more than 8 kb apart and are spliced to the common exon 2 containing the translation initiation site. Within 1001 bp upstream of the transcription initiation site of the cloned distal promoter, there are four GATA-1. The main promoter used for the expression of the ST2 gene in UT-7, a human leukaemic cell line, is distinct from that in TM12, a human fibroblastic cell line. Although UT-7 cells use both distal and proximal promoters, the distal promoter is used dominantly for expression of both ST2 and ST2L mRNA. On the other hand, almost all transcription in TM12 cells starts from the proximal promoter. These results contrast with those of former studies on the rat system, in which ST2 and ST2L mRNA were generated by use of the proximal and distal promoters, respectively. Furthermore, UT-7 cells use multiple transcription initiation sites in both the proximal and distal promoters, whereas the transcription of the ST2 gene in TM12 cells starts at a unique site. Intriguingly, these results suggest that ST2 and ST2L proteins have distinct functions in different cells within different biological systems, such as those of growth control, differentiation and immunological responses.

Alternative Splicing↗