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Biomedical subjects

Y Kitamura

Publications and source records attributed to Y Kitamura.

At least 127 records · Page 7Linked to original sources

Allelotyping of anaplastic thyroid carcinoma: frequent allelic losses on 1q, 9p, 11, 17, 19p, and 22q.

Little is known about the genetic mechanisms behind the genesis of anaplastic thyroid carcinoma. This is among the most virulent of all human malignancies, and it is believed to result most often from transformation of differentiated thyroid carcinomas of the papillary type. So far, TP53 and beta-catenin mutations are the only genetic alterations that have been implicated in its pathogenesis. To identify loci of other potential tumor suppressor genes, we carried out a genome-wide allelotyping study using 39 microsatellite markers representing all nonacrocentric autosomal arms, in a panel of 21 anaplastic thyroid carcinomas. Frequent allelic losses were identified in 1q (40%), 9p (58%), 11p (33%), 11q (33%), 17p (44%), 17q (43%), 19p (36%), and 22q (38%). Deletion mapping of chromosome arms with the most frequent allelic losses (frequencies above 40%) localized the commonly deleted region to 1q31-42, 9p21-22, 17p12-ter, and 17q21.1-22. The mean frequency of loss of heterozygosity on all arms tested was 20%, and the mean fractional allelic loss among the cancers examined was 0.20. These findings defined a sharp distinction between anaplastic thyroid carcinomas and papillary thyroid carcinomas, because the latter do not tend to show losses at the same loci. Frequent allelic losses at multiple loci may implicate chromosomal instability as an important factor in the development of anaplastic thyroid carcinomas. Genes Chromosomes Cancer 27:244-251, 2000.

Aged↗

Effects of loss-of-function and gain-of-function mutations of c-kit on the gastrointestinal tract.

Protooncogene c-kit encodes a receptor tyrosine kinase, KIT. Interstitial cells of Cajal (ICCs) that are important for the autonomous movement of the gastrointestinal tract essentially require the normal function of the KIT for their development. Therefore, germline loss-of-function mutations of the c-kit gene cause deficiency of ICCs that results in disturbed gastrointestinal movement. On the other hand, somatic gain-of-function mutations of the c-kit gene induce gastrointestinal stromal tumors (GIST) that are considered to originate from ICCs. Moreover, germline gain-of-function mutations of the c-kit gene are a cause of familial development of multiple GISTs.

Animals↗

Association of allelic loss on 1q, 4p, 7q, 9p, 9q, and 16q with postoperative death in papillary thyroid carcinoma.

Papillary thyroid carcinomas, most of which are characterized by slow growth and good prognosis, account for the majority of thyroid carcinomas. To provide appropriate postoperative management, it is important to classify them by prediction of their prognosis. To find genetic markers associated with poor prognosis, allelic loss at all 39 nonacrocentric chromosome arms was compared in 24 deceased cases and 45 age-, sex-, stage-, and type-matched survived cases. Allelic loss was examined in primary tumors from both groups using highly polymorphic microsatellite markers on 39 nonacrocentric autosomal arms. Age at diagnosis, sex, stage, and types of tumors were matched between the two groups. No recurrent tumor was used for DNA analysis. Mean fractional allelic loss in the deceased and survived cases was 0.10+/-0.08 and 0.03+/-0.05 (P < 0.001). The survived cases showed marginal frequencies of allelic loss throughout all chromosome arms except 22q. The deceased cases showed frequent allelic losses on chromosomes 1q (37%), 4p (21%), 7q (20%), 9p (36%), 9q (31%), and 16q (29%), with significant difference (P < 0.05). These chromosome regions may include tumor suppressor genes whose inactivation is associated with aggressive phenotypes of papillary thyroid carcinoma.

Adult↗

mi-transcription factor as a regulator of mast cell differentiation.

Masts cells are progeny of the hematopoietic stem cell. For the differentiation of mast cells, a transcription factor encoded by the mouse mi locus (MITF) plays an important role. The expression of many genes encoding proteins that are essential for the function of mast cells is regulated by MITF. Because various mutant mice are available at the mi locus and because cultured mast cells are easily obtained from the spleen of these mutant mice, this system may be a good model for studying the regulation of hematopoietic cell differentiation by a transcription factor.

Animals↗

A case of mixed connective tissue disease (MCTD) complicated with MPO-ANCA-related necrotizing glomerulonephritis.

Renal diseases of mixed connective tissue disease (MCTD) are not unusual. Although most of them are SLE-like renal impairment with immune complex deposits, systemic sclerosis- (SSc) like renal impairments with intimal thickening of interlobular arteries or arterioles are also encountered. Several cases of SSc complicated with MPO-ANCA-related necrotizing glomerulonephritis (nGN) are reported. Here we report a case which developed MPO-ANCA-related nGN 16 years after the diagnosis of MCTD. She exhibited pauci-immune focal nGN and significantly high titer of MPO-ANCA. She was successfully treated with prednisolone and cyclophosphamide. We believe this is the first case in which MPO-ANCA-related nGN was demonstrated in a patient with MCTD.

Antibodies, Antineutrophil Cytoplasmic↗

Clinicopathological features of gastric stromal tumors.

Stromal tumors in the gastrointestinal (GI) tract consist of myogenic tumors, neurogenic tumors and gastrointestinal stromal tumors (GISTs). Mutations in the c-kit gene have been found in GISTs, and GISTs with c-kit mutations showed aggressive clinical behavior and histological features. In the present study, we classified stromal tumors into four groups according to histological differentiation and c-kit mutation: myogenic tumors, neurogenic tumors, c-kit mutation (-) GISTs and c-kit mutation (+) GISTs, and examined their clinicopathological importance and validity using data obtained from 125 patients with gastric stromal tumors. There was no difference in preoperative symptoms and signs among the four groups. GISTs with c-kit mutations were large and showed invasion into neighboring structures compared with the other tumors, indicating the clinically aggressive features of mutation (+) GISTs. In histological examinations, c-kit mutation (+) GISTs were higher in cellularity (P < 0.0001) and mitotic cell count (P = 0.0086), and showed frequent histological necrosis (P = 0.0058) and hemorrhage (P = 0.0170), and consequently, were higher in histological grade (P = 0.0001). In prognostic analyses, overall, cause-specific and disease-free survival of patients in the mutation (+) GIST group was the poorest among the four groups. No significant differences were found among the other three groups of myogenic tumors, neurogenic tumors and c-kit mutation (-) GISTs, indicating a similar aggressiveness in clinical presentation and histological features. Thus, this classification is considered to be clinically and pathologically important in the diagnosis of gastric stromal tumors.

Adult↗

Intelligent system for topic survey in MEDLINE by keyword recommendation and learning text characteristics.

We have implemented a system for assisting experts in selecting MEDLINE records for database construction purposes. This system has two specific features: The first is a learning mechanism which extracts characteristics in the abstracts of MEDLINE records of interest as patterns. These patterns reflect selection decisions by experts and are used for screening the records. The second is a keyword recommendation system which assists and supplements experts' knowledge in unexpected cases. Combined with a conventional keyword-based information retrieval system, this system may provide an efficient and comfortable environment for MEDLINE record selection by experts. Some computational experiments are provided to prove that this idea is useful.

Artificial Intelligence↗

Effect of silane treatment and different resin compositions on biological properties of bioactive bone cement containing apatite-wollastonite glass ceramic powder.

In methylmethacrylate (MMA)-based cements containing bioactive particles, polymethylmetacrylate (PMMA) is known to suppress the bioactivity of Bioglass(R) and apatite-wollastonite glass ceramic (AW-GC). Little is known about the effect of different silane treatment methods on the bioactivity of AW-GC. MMA-based cement plates containing dry silanated AW-GC particles and PMMA particles of different molecular weights (12,000-900,000) were immersed in simulated body fluid (SBF). Cements containing PMMA particles of high molecular weight formed an apatite layer on the surface after 24 h. Using PMMA particles with a molecular weight of 60,000 and AW-GC particles silanated with different methods (dry method vs. slurry method), cement plates were made and immersed in SBF. Only cement plates containing dry silanated AW-GC particles showed apatite formation in SBF after 3 days. In vivo implantation in rat tibias of MMA-based cement containing dry silanated AW-GC particles and PMMA particles (molecular weight 900,000) demonstrated an affinity index of 32.1 +/- 15.8% after 8 weeks of implantation compared to 89.4 +/- 10.7% achieved by bisphenol-A-glycidyl methacrylate based cement containing the same bioactive powder. By using a dry method of silane treatment and high molecular weight PMMA particles, the bioactivity of cement based on MMA monomer was achieved; but further effort is needed to improve the mechanical properties of the composite.

Animals↗

A new member of the GTPase superfamily that is upregulated in highly metastatic cells.

Two sublines of B16 melanoma cells, F10 and BL6, are metastatic after intravenous injection, but only BL6 cells are metastatic after subcutaneous injection. We found a new member of the GTPase superfamily, namely TIB929, which displayed an induction of expression in BL6 cells. It conserved three consensus sequences for GTP-binding site motifs and showed a significant homology to the yeast Gtr2 gene throughout the coding sequence. TIB929 was expressed ubiquitously in human tumor cells, with a marked expression in highly metastatic cells. TIB929 was mapped on mouse chromosome 4D, syntenic to human chromosome 1p. The results suggested an involvement of TIB929 in malignant progression.

Amino Acid Sequence↗

Upregulation of endogenous heparin-binding EGF-like growth factor and its role as a survival factor in skeletal myotubes.

To investigate the role of heparin-binding EGF-like growth factor (HB-EGF) in skeletal muscle, we studied its function in skeletal myotubes in vitro using mouse C2C12 cells. Expression levels of membrane-anchored HB-EGF (proHB-EGF) protein were increased specifically during their differentiation among epidermal growth factor receptor (EGFR) ligands. Production levels of EGFR on the cell surface were constant. Tyrosine phosphorylation of EGFR, however, was constitutively increased during differentiation. Quenching of endogenous HB-EGF significantly rendered myotubes sensitive to apoptotic cell death induced by hypoxic stress, suggesting that proHB-EGF in the skeletal muscle is specifically upregulated to function as a survival factor.

Animals↗

Matrix metalloproteinase-9 production, a newly identified function of mast cell progenitors, is downregulated by c-kit receptor activation.

Mast cell precursors invade from the peripheral blood into local tissues where they differentiate to their mature phenotypes. However, the mechanism of this migration process has been unclear. We clearly demonstrated here the production and release of matrix metalloproteinase-9 (MMP-9), a matrix-degrading enzyme necessary for leukocyte transmigration, by interleukin-3-dependent mouse mast cell progenitors: bone marrow-derived cultured mast cells and IC-2 mast cells. Because several interleukin-3-independent mast cell lines with active mutations in the c-kit gene did not release MMP-9, the possible involvement of c-kit receptor activation in downregulation of MMP-9 production was predicted. c-kit receptor activation by stem cell factor led to a significant decrease in MMP-9 production of cultured mast cells and IC-2 mast cells transfected with the c-kit gene. Thus, the present results suggest that mast cell precursors are able to produce MMP-9, which may be essential for mast cell migration into tissues, and that stem cell factor may downregulate the MMP-9 production, resulting in engagement of mast cells to matrix components.

Animals↗

Analysis of the MEN1 gene in sporadic pituitary adenomas from Japanese patients.

An autosomal-dominant syndrome known as multiple endocrine neoplasia type 1 (MEN1) is characterized by tumors in parathyroid glands, pancreatic endocrine tissues and the anterior pituitary gland. The predisposing gene was identified at 11q13 when germline mutations in the MEN1 gene were detected in affected pedigrees. To investigate a possible role of this gene in tumorigenesis of non-familial pituitary adenomas, we examined 24 sporadic tumors from Japanese patients for loss of heterozygosity (LOH) at the 11q13 region and for somatic mutations in the entire coding region and exon-intron boundaries of MEN1. Although three common sequence variants were detected, none of the tumors exhibited either LOH or somatic mutations of this gene. Our results indicate that inherited and sporadic forms of pituitary adenomas are different in terms of the genetic events that contribute to their development, and that other loci associated with pituitary neoplasia must still be sought.

Adenoma↗

Effect of c-kit mutation on prognosis of gastrointestinal stromal tumors.

Gastrointestinal stromal tumor (GIST) is the most common mesenchymal tumor of the gastrointestinal tract. Gain-of-function mutations in the juxtamembrane domain of the c-kit gene have been found in several GISTs. In this study, we examined the correlation between the presence of c-kit mutation and prognosis in 124 cases of GIST. DNA samples were extracted from paraffin sections. Exon 11 of the c-kit gene encoding the juxtamembrane domain and exon 17 encoding the kinase domain were amplified by PCR and sequenced. Most GISTs (89%) express the KIT protein, and missense mutations of exon 11 were found in 71 of 124 GISTs (57%). No mutations were detectable in exon 17. These 71 mutation-positive GISTs were larger in size and had more frequently invaded adjacent tissues than did the 53 mutation-negative GISTs. Histologically, the mutation-positive GISTs showed higher mitotic figures and more necrosis and hemorrhage. The patients with mutation-positive GISTs showed more frequent recurrences (P = 0.0005) and higher mortality (P = 0.0001) than did those with mutation-negative GISTs. The c-kit mutation was an independent prognostic factor for overall and cause-specific survival of the patients with GISTs. These results suggest that GISTs may be divided into mutation-positive and -negative subtypes. The prognosis was worse in patients with mutation-positive GISTs than in those with mutation-negative GISTs. Thus, mutation of the c-kit gene may be a good prognostic marker of GISTs.

Amino Acid Sequence↗

Synergy of PEBP2/CBF with mi transcription factor (MITF) for transactivation of mouse mast cell protease 6 gene.

The mi locus encodes a member of the basic - helix - loop - helix - leucine zipper (bHLH-Zip) protein family of transcription factors (hereafter called MITF). Although the bHLH-Zip family transcription factors generally recognize and bind CANNTG motifs, the expression of mouse mast cell protease 6 (MMCP-6) gene is regulated by MITF through the GACCTG motif in the promoter region. The GACCTG motif was partly overlapped the TGTGGTC sequence, which was bound by polyomavirus enhancer binding protein 2 (PEBP2). In the present study, the effect of PEBP2 on the expression of MMCP-6 gene was examined. PEBP2 that is composed of alpha and beta subunits was expressed by mast cell lines and cultured mast cells derived from spleen. The overexpression of dominant negative PEBP2 cDNA reduced the expression of MMCP-6. Moreover, the simultaneous transfection of the plasmid containing MITF cDNA and the plasmid containing PEBP2 cDNA increased the MMCP-6 promoter activity. For the synergistic action of PEBP2 and MITF, the intact GACCTG and TGTGGTC motifs were prerequisite. The PEBP2alphaB1 mutant which lacked the region downstream from the Runt domain did not bind MITF and lost the synergistic function. These results indicated that PEBP2 and MITF synergistically transactivated the MMCP-6 gene and that the region downstream from the Runt domain of PEBP2alphaB1 was essential for the physical and functional interactions with MITF.

Animals↗

Synthesis of sugar fatty acid esters by modified lipase.

A simple synthesis of sugar fatty acid esters was developed in a nonaqueous solution using lipase modified by synthetic detergent. Esterification of sugar was accelerated by continuous removal of water from the reaction mixture with a molecular sieve. When glucose and palmitic acid (1:1 by mole) were used as the starting substrates, more than 90% of glucose was converted to its ester in this system. The resultant product was 6-O-palmitoylglucose. Other mono- or disaccharides were also esterified by the modified lipase with high yield. It was shown that the modified lipase might act as a catalyst for the synthesis of sugar fatty acid esters.

Carbohydrates↗

Kainic acid-induced inducible cyclooxygenase and c-Jun phosphorylation in the rat hippocampal formation.

Inducible cyclooxygenase (COX-2) was transiently induced in the neurons throughout the entire hippocampus between 6 and 24 h after injection of kainic acid (KA). The induction of COX-2 correlated more closely with the induction of c-Jun than with that of c-Fos. Phosphorylated c-Jun was induced 6-12 h after in the CA3 pyramidal neurons, which undergo apoptosis. Almost all of neurons with phosphorylated c-Jun were colocalized with COX-2. These results suggest that COX-2 and c-Jun phosphorylation may participate in KA-induced neurodegeneration.

Animals↗