Search PubMed⌕ Search

Biomedical subjects

T Miyake

Publications and source records attributed to T Miyake.

At least 55 records · Page 3Linked to original sources

All for one and one for all: condensations and the initiation of skeletal development.

Condensation is the pivotal stage in the development of skeletal and other mesenchymal tissues. It occurs when a previously dispersed population of cells gathers together to differentiate into a single cell/tissue type such as cartilage, bone, muscle, tendon, kidney, and lung and is the earliest stage during organ formation when tissue-specific genes are upregulated. We present a synopsis of our current understanding of how condensations are initiated and grown, how their boundaries and sizes are set, how condensation ceases, and how overt differentiation begins. Extracellular matrix molecules, cell surface receptors and cell adhesion molecules, such as fibronectin, tenascin, syndecan, and N-CAM, initiate condensation formation and set condensation boundaries. Hox genes (Hoxd-11-13) and other transcription factors (CFKH-1, MFH-1, osf-2), modulate the proliferation of cells within condensations. Cell adhesion is ensured indirectly through Hox genes (Hoxa-2, Hoxd-13), and directly via cell adhesion molecules (N-CAM and N-cadherin). Subsequent growth of condensations is regulated by BMPs, which activate Pax-2, Hoxa-2 and Hoxd-11 among other genes. Growth of a condensation ceases when Noggin inhibits BMP signalling, setting the stage for transition to the next stage of skeletal development, namely overt cell differentiation. BioEssays 22:138-147, 2000.

Animals↗

Enhanced expression and DNA binding activity of two CCAAT/enhancer-binding protein isoforms, C/EBPbeta and C/EBPdelta, in rheumatoid synovium.

OBJECTIVE: To investigate the activation and expression of CCAAT/enhancer-binding proteins (C/EBP), especially C/EBPbeta and -delta, in rheumatoid synovium, and their pathogenic implications in rheumatoid arthritis (RA). METHODS: The activation of C/EBPbeta and -delta was assessed in synovial tissues from patients with RA by electrophoretic mobility shift assay (EMSA); DNA binding activity of C/EBPs was evaluated by measuring EMSA band density. The expression and distribution of C/EBPbeta and -delta in synovial tissues were examined by immunohistochemistry analysis. As a control, synovial tissues from patients with osteoarthritis (OA) were studied. RESULTS: Enhanced DNA binding activity of C/EBPbeta and -delta, 2 major members of the C/EBP family, was detected in synovial tissues from RA patients, while synovial tissues from the patients with OA showed only faint or marginal activity (mean +/- SEM arbitrary units [AU] RA 23.3 +/- 11.7 in RA versus 4.5 +/- 1.3 in OA; P < 0.05). Moreover, the binding activities of the C/EBP proteins were correlated with both serum C-reactive protein levels (r = 0.62, P < 0.05) and synovial interleukin-6 messenger RNA levels (r = 0.60, P < 0.05). In immunohistochemistry studies, C/EBPbeta and -delta were detected predominantly in the rheumatoid synovial lining cells (both CD14+ and CD14- cells). CONCLUSION: C/EBPbeta and -delta may contribute to the pathology of rheumatoid synovitis.

Aged↗

Standard radial bone mineral density and physical factors in ordinary Japanese women.

To prevent osteoporosis, which is expected to increase in incidence in this rapidly aging society, in recent years bone mineral density (BMD) has frequently been measured as a predisposition index. However, these measurements are made on different sites with different apparatus, and the results are independently studied by different institutions. In our present investigation, to establish the standard radius BMD as determined by dual-energy X-ray absorptiometry (DXA), we carried out a general population survey in 29 municipalities and prefectures on 11,252 locally residing females aged 15 to 83 years (mean, 35.61 +/- 12.85 years). Their YAM (young adult mean) BMD was estimated at 0.664 +/- 0.054 g/cm2, which was almost the same as the figure given in the 1996 version of the diagnostic criteria for primary osteoporosis. We further studied the relationships of BMD to age and physical factors known to be influential to BMD. It was found that BMD was correlated negatively to age and positively to body mass index (BMI). The average values we obtained for age and physique groups appeared to have provided reliable indices for the primary prevention of osteoporosis.

Adolescent↗

Bronchiolitis obliterans organizing pneumonia (BOOP) in a case of smouldering adult T-cell leukaemia.

Although various respiratory diseases have been reported in human T lymphotropic virus type-1 (HTLV-1) carriers or patients with adult T-cell leukaemia (ATL), there appears to be no report of the development of bronchiolitis obliterans organizing pneumonia (BOOP) in ATL or HTLV-1-related disorders. We describe a 51-year-old male with smouldering ATL who developed BOOP during a long-term follow up. Bronchoalveolar lavage (BAL) and transbronchial lung biopsy (TBLB) were performed in the right lower lobe B6 with infiltrative shadows. As a result of flow cytometric analysis of peripheral lymphocytes and BAL lymphocytes, histological examination of the biopsied lung specimen, and the clinical course, we excluded the pulmonary infiltration of ATL cells and bacterial infection. Thus, he was diagnosed as having BOOP and successfully treated with corticosteroid therapy. This is probably the first report of BOOP developing in ATL. Bronchiolitis obliterans organizing pneumonia should be considered in the differential diagnosis of pulmonary complications in HTLV-1 carriers or ATL patients since BOOP can be successfully treated by corticosteroids.

Cryptogenic Organizing Pneumonia↗

A stress distribution analysis of a ceramic lunate replacement for Kienbock's disease.

To determine the usefulness of a ceramic lunate replacement for the wrist joint as a possible treatment for Kienböck's disease, stress distribution of five wrist joint models (a normal wrist, one with the lunate bone removed, one with a coiled tendon replacement, one with a coiled tendon replacement with a ceramic core, and one with a ceramic lunate replacement coated with sheets of tendon) were analysed by the finite element method. The results of finite element method analyses were compared with those of pressure distribution analyses on the wrist joint using pressure-sensitive film and measurement of pressure on the radio-lunate joint with a tactile sensor. Both the coiled tendon model and ceramic core model were unable to resist applied force. Stress and pressure were well-distributed in the wrist joint of the ceramic lunate implant model. These results indicate that the ceramic lunate implant could be expected to prevent carpal collapse.

Cadaver↗

Impaired core promoter recognition caused by novel yeast TAF145 mutations can be restored by creating a canonical TATA element within the promoter region of the TUB2 gene.

The general transcription factor TFIID, which is composed of TATA-binding protein (TBP) and an array of TBP-associated factors (TAFs), has been shown to play a crucial role in recognition of the core promoters of eukaryotic genes. We isolated Saccharomyces cerevisiae yeast TAF145 (yTAF145) temperature-sensitive mutants in which transcription of a specific subset of genes was impaired at restrictive temperatures. The set of genes affected in these mutants overlapped with but was not identical to the set of genes affected by a previously reported yTAF145 mutant (W.-C. Shen and M. R. Green, Cell 90:615-624, 1997). To identify sequences which rendered transcription yTAF145 dependent, we conducted deletion analysis of the TUB2 promoter using a novel mini-CLN2 hybrid gene reporter system. The results showed that the yTAF145 mutations we isolated impaired core promoter recognition but did not affect activation by any of the transcriptional activators we tested. These observations are consistent with the reported yTAF145 dependence of the CLN2 core promoter in the mutant isolated by Shen and Green, although the CLN2 core promoter functioned normally in the mutants we report here. These results suggest that different promoters require different yTAF145 functions for efficient transcription. Interestingly, insertion of a canonical TATA element into the TATA-less TUB2 promoter rescued impaired transcription in the yTAF145 mutants we studied. It therefore appears that strong binding of TBP to the core promoter can alleviate the requirement for at least one yTAF145 function.

Base Sequence↗

A method for identifying underlying causes of death in epidemiological study.

To obtain the underlying causes of death in individuals of a cohort (male only), the items of date of birth, date of death and address code at the time of death were linked between the data of resident cards and the death tapes of National Vital Statistics supplied by the Ministry of Health and Welfare. As a result, the persons who have the same information for above mentioned three items between the resident cards and the death tapes accounted for 97.4%. If the persons who had the same information for three items except one item were considered to be identical, they accounted for 99.4%. It would be concluded that underlying cause of death can be obtained by record linkage of death tapes of National Vital Statistics with three informations in residence cards, dates of birth, dates of death and address codes at the time of death, even without names of the individual in the death tapes. The matched rate would be high enough for epidemiological studies.

Cause of Death↗

Treatment with low-dose cytosine arabinoside followed by administration of macrophage colony-stimulating factor prolongs the survival of patients with RAEB, RAEB-T, or leukemic phase myelodysplastic syndrome: a pilot study.

The treatment of patients with aggressive subclasses of myelodysplastic syndrome (MDS) remains a challenge. In an effort to improve the survival of patients with refractory anemia with excess blasts (RAEB), RAEB in transformation (RAEB-t), or acute myelogenous leukemia transformed from MDS (MDS-AML), we conducted a small trial in which 28 such patients were treated with low-dose cytosine arabinoside (LDAraC) followed by administration of macrophage colony-stimulating factor (M-CSF). The overall rate of response to the treatment was 61%, including 39% with a complete response, which is higher than rates obtained in previous studies in which LDAraC alone was administered to patients with MDS. Median survival was 23.5 months in cases of RAEB, 16.7 months in cases of RAEB-t, and 19.7 months in cases of MDS-AML. The overall survival of the study group appeared to be prolonged in comparison with a historical control group of patients treated with LDAraC alone. It is suggested that M-CSF added to the administration of LDAraC plays an active role in the therapy. No therapy-related death occurred. Some unique actions of M-CSF were suggested in this trial. It is concluded that therapy with LDAraC + M-CSF is a useful treatment option for patients with aggressive subclasses of MDS and MDS-AML to provide better response and survival.

Adult↗

Dissociation of epistatic effects involved in fasting and postprandial hyperglycemia.

The Otsuka Long-Evans Tokushima Fatty (OLETF) rat is an animal model for obese-type non-insulin-dependent diabetes mellitus (NIDDM) in humans. Our previous study has identified four epistatic interactions between Niddel (chromosome 7) and 2/of (chromosome 14), Niddel and 3/of (chromosome 15), Nidde2 and 4/of (chromosome 15), and Nidde2 and 5/of (chromosome 17), which exerted effects on NIDDM, by performing least squares analysis of variance of all pairs of informative markers in 160 F2 progenies bred from the OLETF rat. In the present study, we found that the four interactions affect postprandial glucose metabolism, but not glucose levels during fasting states. In addition, we identified novel interactions between Nidde6 (chromosome 1) and 7/of (chromosome 13), and Nidde8 (chromosome 5) and 9/of (chromosome 19), which is involved in fasting glucose levels but not postprandial glucose levels. These findings demonstrate that distinction between genetic bases of fasting hyperglycemia and postprandial hyperglycemia is made by not only single main effect but also epistatic interaction effect of NIDDM loci.

Animals↗

The gene for an exopolyphosphatase of Pseudomonas aeruginosa.

In Pseudomonas aeriginosa, a gene, ppx, that encodes exopolyphosphatase [exopoly(P)ase; EC 3.6.1.11] of 506 amino acids (56,419 Da) was found downstream of the gene for polyphosphate kinase, ppk. Since ppx is located in the opposite direction of the ppk gene, they do not constitute an operon. The predicted amino acid sequence of PPX is 41% identical with Escherichia coli PPX. The gene product of ppx (paPPX) was overproduced in E. coli, and its activity was evaluated. Orthophosphate (Pi) is released from polyphosphate [poly(P)], the average chain lengths of which are 79 and 750, respectively. The amount of Pi released matched the amount of poly(P) lost. Thus ppx encodes an enzyme that has exopoly(P)ase activity.

Acid Anhydride Hydrolases↗

Role of the sulphate assimilation pathway in utilization of glutathione as a sulphur source by Saccharomyces cerevisiae.

Mutants unable to grow on medium containing glutathione as a sole source of sulphur (GSH medium) were isolated from Saccharomyces cerevisiae strains carrying met17(deficiency of O-acetylserine and O-acetylhomoserine sulphydrylase). They were defective in the high-affinity glutathione transport system, GSH-P1. Newly acquired mutations belonged to the same complementation group, gsh11. However, it became apparent that gsh11 conferred the mutant phenotype not by itself but in collaboration with met17. Moreover, mutations conferring the defect in sulphate assimilation made the cell unable to grow on GSH medium in collaboration with gsh11. From this finding, we propose that the sulphate assimilation pathway acts as a sulphur-recycling system and that this function is especially vital to the cell when the supply of glutathione is limited.

Glutathione↗

Development of dermal denticles in skates (Chondrichthyes, Batoidea): patterning and cellular differentiation.

Patterning, cellular differentiation, and developmental sequences of dermal denticles (denticles) are described for the skate Leucoraja erinacea. Development of denticles proceeds caudo-rostrally in the tail and trunk. Once three rows of denticles form in the tail and trunk, denticles begin to appear in the region of the pelvic girdle, medio-caudal to the eyes and on the pectoral fins. Although timing of cellular differentiation of denticles differs among different locations of the body, cellular development of a denticle is identical in all locations. Thickening of the epidermis as a denticle lamina marks initiation of development. A single lamina for each denticle forms, and a small group of mesenchymal cells aggregates underneath it. The lamina then invaginates caudo-rostrally to form the inner- and outer-denticle epithelia (IDE and ODE, respectively). Before nuclei of IDE cells are polarized, enameloid matrix appears between the basement membrane of the IDE and the apical surface of the pre-odontoblasts. Pre-dentin is then laid down along with collagenous materials. Von Kossa stain visualizes initial mineralization of dentin, but not enameloid. During the growth of a denticle, dense fibrous connective tissue of the dermis forms the deep dermal tissue over the dorsal musculature. Attachment fibers and tendons anchor denticles and dorsal musculature, respectively, on deep dermal tissue. Basal tissue of the denticles develops as the denticle crown grows. If the basal tissue is bone of attachment, then the cells along the basal tissue would be osteoblasts. However, these cells could not be distinguished from odontoblasts using immunolocalization of type I pro-collagen (Col I), alkaline phosphatase (APase), and neural cell adhesion molecule (N-CAM). Well-developed dentin, (not pre-dentin), the enameloid matrix (probably when it begins to mineralize), and deep dermal tissue are Verhoeff stain-positive, suggesting that these tissues contain elastin and/or elastin-like molecules. Our study demonstrates that the cellular development of denticles resembles tooth development in elasmobranchs, but that dermal denticles differ from teeth in forming from a single denticle lamina. Whether the basal tissue of denticles is bone of attachment remains undetermined. Confirmation and function of Verhoeff-positive proteins in enameloid, dentin, and deep dermal tissue remain to be determined. We discuss these issues along with an analysis of recent findings of enamel and enameloid matrices.

Animals↗

Identification of novel non-insulin-dependent diabetes mellitus susceptibility loci in the Otsuka Long-Evans Tokushima fatty rat by MQM-mapping method.

The Otsuka Long-Evans Tokushima Fatty (OLETF) rat is an animal model for obese-type, non-insulin-dependent diabetes mellitus (NIDDM) in humans. We have previously identified 11 quantitative trait loci (QTLs) responsible for NIDDM susceptibility on Chromosomes (Chrs) 1, 5, 7, 8, 9, 11, 12, 14, and 16 (Nidd1-11/of for Non-insulin-dependent diabetes 1-11/oletf) by using the interval mapping method in 160 F(2) progenies obtained by mating the OLETF and the Fischer-344 (F344) rats. MQM-mapping, which was applied for QTL analysis based on multiple-QTL models, is reported to be more powerful than interval mapping, because in the process of mapping one QTL the genetic background, which contains the other QTLs, is controlled. Application of MQM-mapping in the F(2) intercrosses has led to a revelation of three novel QTLs on rat Chrs 5 (Nidd12/of), 7 (Nidd13/of), and 17 (Nidd14/of), in addition to Nidd1-11/of loci. The three QTLs, together with the Nidd1-11/of, account for a total of approximately 70% and approximately 85% of the genetic variance of the fasting and postprandial glucose levels, respectively, in the F(2). While the OLETF allele corresponds with increased glucose levels as expected for Nidd12 and 14/of, the Nidd13/of exhibits heterosis: heterozygotes showing significantly higher glucose levels than OLETF or F344 homozygotes. There is epistatic interaction between Nidd2 and 14/of. Additionally, our results indicated that the novel QTLs could show no linkage with body weight, but Nidd12/of has an interaction with body weight.

Animals↗

Neural expression of hikaru genki protein during embryonic and larval development of Drosophila melanogaster.

Hikaru genki (HIG) is a putative secreted protein of Drosophila that belongs to immunoglobulin and complement-binding protein superfamilies. Previous studies reported that, during pupal and adult stages, HIG protein is synthesized in subsets of neurons and appears to be secreted to the synaptic clefts of neuron-neuron synapses in the central nervous system (CNS). Here we report the analyses of distribution patterns of HIG protein at embryonic and larval stages. In embryos, HIG was mainly observed in subsets of neurons of the CNS that include pCC interneurons and RP5 motorneurons. At third instar larval stage, this protein was detected in a limited number of cells in the brain and ventral nerve cord. Among them are the motorneurons that extend their axons to make neuromuscular junctions on body wall muscle 8. Immunoelectron microscopy showed that these axonal processes as well as the neuromuscular terminals contain numerous vesicles with HIG staining, suggesting that HIG is in a pathway of secretion at this stage. Some neurosecretory cells were also found to express this protein. These data suggest that HIG functions in the nervous system through most developmental stages and may serve as a secreted signalling molecule to modulate the property of synapses or the physiology of the postsynaptic cells.

Animals↗