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Biomedical subjects

Y Kitamura

Publications and source records attributed to Y Kitamura.

At least 487 records · Page 27Linked to original sources

Expression of osteopontin messenger RNA by macrophages in atherosclerotic plaques. A possible association with calcification.

Calcification is a common complication in atherosclerosis. As osteopontin (OPN) and osteonectin (ON) are not only involved in the physiological but also the pathological calcification of tissues, we examined the expression of OPN and ON messenger (m)RNAs in normal and atherosclerotic human aortas. By Northern blotting, the OPN mRNA expression was related to the severity of the atherosclerosis. However, ON mRNA expression decreased with the development of atherosclerosis. By a combination of in situ hybridization and immunohistochemistry of serial sections, the macrophages surrounding the atheromatous plaques were identified as the OPN mRNA-expressing cells. The ON mRNA-expressing cells in aortas of a newborn baby and a 3-year-old boy were medial smooth muscle cells, but in aortas of adults, smooth muscle cells that had invaded the intima were found to express ON mRNA. As OPN mRNA-expressing macrophages surrounded the atheromatous plaques, and as the level of OPN mRNA expression increased as atherosclerosis advanced, it is possible that OPN plays a role in the calcification of atheromatous plaques.

Aged↗

Detection of low copy numbers of Epstein-Barr virus by in situ hybridization using nonradioisotopic probes prepared by the polymerase chain reaction.

A highly sensitive in situ hybridization procedure was established using digoxigenin-11-dUTP-labeled probes that were prepared by the polymerase chain reaction (PCR). By using 12 sets of primers, BamHI-W fragment of the Epstein-Barr Virus (EBV) was amplified with labeled substrate in individual PCRs. Then the 12 probes (average size, 120 base pairs) were mixed and hybridized with cultured and RNase-treated Namalwa cells, which contain two copies of EBV genomes per cell. The strength of the signals was much stronger as compared with random-primed probe. Our results indicate that the size-averaged PCR probes magnified the sensitivity for detecting low copy numbers of virus genomes by in situ hybridization and that this technique has the potential for investigating latent virus infection in other clinical situations.

Base Sequence↗

[Prevalence of diabetic ocular complications and systemic factors].

The prevalence of diabetic ocular complications and the correlation between diabetic retinopathy and systemic factors were examined in 2,300 cases (4,600 eyes) with non-insulin-dependent diabetes mellitus. The prevalence of cataract was 66.7%, of retinopathy 37.0%, of refractive and accommodative change 6.2%, of glaucoma 1.9% (rubeotic glaucoma was 1.0%), of rubeosis iridis 1.5%, of iridocyclitis 0.8%, of extraocular muscle palsy 0.2%, and of ischemic optic neuropathy 0.1%. Duration of diabetes mellitus, HbA1C value, methods of diabetic control, age, diabetic nephropathy, diabetic neuropathy, hypertension, systolic blood pressure, diastolic blood pressure, and arteriosclerosis obliterans were related with diabetic retinopathy. We suggest that the management of diabetic patients needs sufficient attention in the cases with oral administration of medication, insulin therapy, and diabetic nephropathy.

Adolescent↗

Presence of m3 subtype muscarinic acetylcholine receptors and receptor-mediated increases in the cytoplasmic concentration of Ca2+ in Jurkat, a human leukemic helper T lymphocyte line.

Recent studies have demonstrated the presence and the regulatory function of several neurotransmitters in the immune system. In the present study, we examined the presence of acetylcholine receptors, using pharmacological and molecular biological assays, and their transmembrane control and functions, using a biochemical assay, in a cloned human leukemic helper T lymphoma cell line, Jurkat. Several muscarinic agonists, such as acetylcholine, carbachol, muscarine, and oxotremorine-M (Oxo-M), at 100 microM caused a transient elevation of the free cytosolic Ca2+ concentration ([Ca2+]i), in contrast to the tonic elevation of [Ca2+]i induced by 10 micrograms/ml phytohemagglutinin (PHA). It appeared that the elevation induced by Oxo-M, the most potent [Ca2+]i elevator, was more effectively inhibited by p-fluorohexahydrosiladifenidol hydrochloride (p-F-HHSiD) and 4-diphenylacetoxy-N-methylpiperidine methiodine than by pirenzepine and 11-2[[2-[(diethylamino)methyl]-1-piperidinyl]acetyl]-5,11-dihydro- 6H-pyrido[2,3-b] [1,4]benzodiazepine-6-one (AF-DX 116), suggesting that a pharmacological M3 subtype of muscarinic receptors is involved in the elevation of [Ca2+]i. Northern blot analysis showed that the m3 type of receptors are expressed in Jurkat cells. Scatchard analysis of [3H]quinuclidinyl benzilate binding to intact cells indicated a Kd of 14.1 nM and a Bmax of 45,370 binding sites/cell. [3H]Quinuclidinyl benzilate binding to cell membranes was also inhibited by p-F-HHSiD rather than by pirenzepine and AF-DX 116. Oxo-M induced formation of inositol trisphosphate, and 5'-O-(2-thio)diphosphate inhibited the formation. Cholera toxin treatment inhibited the PHA-induced [Ca2+]i rise but did not affect the Oxo-M-induced rise. Neither pertussis nor butulinus (type C) toxin affected the rise induced by Oxo-M or PHA. Thus, bacterial toxin-insensitive GTP-binding proteins seem to be involved in the Oxo-M-induced increase in [Ca2+]i. Treatment with 12-O-tetradecanoylphorbol 13-acetate abolished the Oxo-M-induced [Ca2+]i rise but did not affect that induced by PHA. m3 Muscarinic receptors thus appear to cause Ca2+ mobilization from intracellular stores via bacteria toxin-insensitive GTP-binding proteins, phospholipase C activation, and inositol trisphosphate formation in Jurkat cells. Protein kinase C seems to negatively modulate the m3 receptor system.

Blotting, Northern↗

Predominant expression of nPKC eta, a Ca(2+)-independent isoform of protein kinase C in epithelial tissues, in association with epithelial differentiation.

Of the nine known members of the protein kinase C (PKC) family, we found that novel (n-) PKC eta, a newly isolated Ca(2+)-independent isoform, was expressed at the highest level in the epidermis of mouse skin and epithelia of the digestive and respiratory tracts including the tongue, esophagus, forestomach, glandular stomach, intestine, colon, trachea, and bronchus. Expression of nPKC eta mRNA in these epithelial tissues was 3-10 times that in the brain and was especially high in squamous epithelium. Two other PKC isoforms, conventional (c-) PKC alpha and nPKC delta, were also expressed in these epithelial tissues, but no cPKC gamma was detected. In situ hybridization and immunohistochemical analyses demonstrated the localization of nPKC eta in suprabasal layers of the skin, tongue, esophagus, and forestomach. In the intestine, it was expressed in the epithelial cells of villi, but not of crypts. In the lung, only bronchial epithelium expressed nPKC eta. The localization of nPKC eta in differentiating or differentiated epithelial cells, rather than in proliferating basal cells, suggests the involvement of nPKC eta in epithelial differentiation.

Amino Acid Sequence↗

Two distinct types of cellular mechanisms in the development of delayed hypersensitivity in mice: requirement of either mast cells or macrophages for elicitation of the response.

Using mast cell-deficient mutant W/Wv mice and their normal counterpart we re-evaluated the significance of participation of mast cells in allergic inflammatory response. W/Wv mice developed immediate hypersensitivity (IH) footpad reaction (FPR) to a somewhat lesser degree than the normal mice, suggesting that the mast cell might amplify the response. To exert classical tuberculin (tbc) delayed-type hypersensitivity (DTH) mast cells were not an essential cellular component. Vasoactive amines were essential to develop the response, but it did not necessarily originate from mast cells. When mice were immunized with methylated human serum albumin (MHSA) emulsified in incomplete Freund's adjuvant (IFA), mast cells were required to elicit DTH FPR. This was confirmed by the lack of the response in W/Wv mice, and the restoration of FPR by local transplantation of mature mast cells into mutant mice. This mast cell-dependent (MD) DTH was different from tbc DTH as follows: mast cell dependency, macrophage dependency as revealed by ferritin sensitivity, kinetics of sensitization, effect of host's age and histopathology. Thus we concluded that there are two types of DTH in mice; one is macrophage-dependent tbc and the other is mast cell-dependent DTH. The correspondence of the DTH to the Jones-Mote (JM) DTH is discussed, although the dominance of mast cells in MD DTH lesion was not observed.

Animals↗

Localization and developmental expression of a novel protein kinase C delta gene.

The expression and localization of a novel protein kinase C delta (nPKC delta) mRNA were investigated using Northern blotting and in situ hybridization in the developmental process of mouse brain. In adult mice, nPKC delta was abundantly expressed in the thalamus, moderately in the pons and the cerebellum, but faintly in the cerebral cortex and the spinal cord. By in situ hybridization, the signals were observed specifically at the sensory and motor relay nuclei of the thalamus, the dorsal cochlear nuclei of the pons, and the molecular layer of the cerebellum. When developmental changes in the expression of nPKC delta gene were analyzed by in situ hybridization, it was not detectable in embryonic and neonatal brains, very weakly expressed in the thalamus in the first week, and highly expressed at two weeks of age. These results suggest that the gene expression of nPKC delta is strictly controlled by both the cell type and the developmental process.

Animals↗

BALB/3T3 fibroblast-conditioned medium attracts cultured mast cells derived from W/W but not from mi/mi mutant mice, both of which are deficient in mast cells.

Proliferation of murine mast cells is induced by both T-cell-derived and fibroblast-derived growth factors. Because the most potent T-cell-derived mast cell growth factor, interleukin-3, promotes the migration of mast cells, we investigated whether fibroblast-derived growth factors had the chemoattractive activity as well. Conditioned medium (CM) of BALB/3T3 fibroblasts induced the migration of cultured mast cells (CMC) derived from normal (+/+) mice. BALB/3T3-CM contained the mast cell growth factor (MGF)/stem cell factor (SCF)/kit ligand (KL), which is the ligand for the receptor encoded by the W (c-kit) gene. CMC derived from the spleen of W/W mice lack the extracellular domain of the W (c-kit) receptor, and W/W CMC did not proliferate in response to BALB/3T3-CM. However, W/W CMC did migrate normally toward BALB/3T3-CM and, moreover, the antibody to the extracellular domain of the W (c-kit) receptor did not inhibit the chemoattractive activity of +/+ CMC toward BALB/3T3-CM. These results indicated that MGF/SCF/KL itself did not represent the major chemoattractive activity. On the other hand, BALB/3T3-CM induced neither proliferation nor migration of CMC derived from mi/mi mice. Both W/W and mi/mi mice are deficient in mast cells, but the present results suggest that the mechanism of the abnormality is different between W/W and mi/mi mice.

Animals↗

Nonconservative recombination in Escherichia coli.

Homologous recombination between two duplex DNA molecules might result in two duplex DNA molecules (conservative) or, alternatively, it might result in only one recombinant duplex DNA molecule (nonconservative). Here we present evidence that the mode of homologous recombination is nonconservative in an Escherichia coli strain with an active RecF pathway (a recBC sbcBC mutant). We employed plasmid substrates that enable us to recover both recombination products. These plasmids carry two mutant alleles of neo gene in direct orientation, two drug-resistance marker genes, and two compatible replication origins. After their transfer to the cells followed by immediate selection for the recombination to neo+, we could recover only one recombination product. A double-strand break at the region of homology increased this nonconservative recombination. If a nonconservative exchange should leave an end, this end may stimulate another exchange. Such "successive half crossing-over events" can explain several recombination-related phenomena in E. coli, including the origin of plasmid linear multimers and of transcribable, nonreplicated recombination products, and also in yeast and mammalian cells.

Bacterial Proteins↗

Nonrandom integration of retroviral DNA in vitro: effect of CpG methylation.

We have developed a PCR-based system that allows us to assess the relative frequency of use of specific bases as targets for the avian leukosis virus in vitro integration system. Using this system, we tested the effect of 5-methylation of cytosine in runs of CpG on the distribution of integration target sites. We found that the distribution of preferred integration sites was not uniform along the target DNA; rather, there was a distinct and reproducible pattern of frequently used sites. This pattern was independent of orientation of the integrated DNA, and of overall structure and sequence of the target and fragment amplified. Methylation did not inhibit integration into CpG dinucleotides; on the contrary, this modification created highly preferred targets within runs of alternating CpG. Finally, similar but not identical specificity was observed by using preintegration complexes in infected extracts or purified integrase and DNA as enzyme and substrate. Thus, most of the specificity observed is conferred by interaction of integrase and targets, although it may be modified by other viral and/or cellular components.

Animals↗

Age-related changes in transmitter glutamate and NMDA receptor/channels in the brain of senescence-accelerated mouse.

The senescence-accelerated mouse (SAM-P/8) is known as a murine model of aging and memory dysfunction. In the hippocampus and cerebral cortex of P/8, the contents of glutamic acid and glutamine were significantly higher than those of normal strain R/1 during 2 and 14 months. High K(+)-evoked endogenous glutamic acid release from the slices of P/8 was increased in comparison with R/1 at 9 and 11 months. In addition, the Bmax of [3H]dizocilpine (MK-801, channel blocker for N-methyl-D-aspartic acid receptor/channel) binding in the cerebral cortex was age-dependently decreased in P/8 but not in R/1. These results suggest that synaptic dysfunctions in the glutamatergic system occur in the CNS of SAM-P/8.

Aging↗

Necessity of extracellular domain of W (c-kit) receptors for attachment of murine cultured mast cells to fibroblasts.

The receptor encoded by the W (c-kit) locus (W receptor) is expressed on the surface of cultured mast cells (CMC) derived from normal (+/+) mice, whereas its ligand encoded by the Sl locus (Sl ligand) is expressed on the surface of fibroblast cell lines derived from murine embryos. Involvement of W receptors and Sl ligands in attachment of CMC to fibroblasts was investigated. CMC were cocultured with fibroblasts; nonattaching CMC were removed and the remaining CMC were counted. CMC derived from mice of the W/W genotype did not express the extracellular domain of W receptors, and attachment of W/W CMC to +/+ fibroblasts was significantly impaired. Fibroblasts derived from embryos of the Sl/Sl genotype did not express Sl ligands, and the attachment of +/+ CMC to Sl/Sl fibroblasts was also impaired. The Wv and W42 alleles are point mutations at the intracellular tyrosine kinase domain. Attachment of either Wv/Wv, W/Wv, or W/W42 CMC to +/+ fibroblasts was comparable with that of +/+ CMC. Moreover, the addition of monoclonal antibody against the extracellular domain of W receptors inhibited the attachment of +/+ CMC to +/+ fibroblasts. Thus, the extracellular domain of W receptors appeared to be necessary for attachment of CMC to fibroblasts.

Alleles↗

Spatial expression of genes encoding c-kit receptors and their ligands in mouse cerebellum as revealed by in situ hybridization.

Expression of mRNA for c-kit receptors and their ligands was examined in the cerebellum of mice by in situ hybridization technique. The c-kit receptors were expressed in the molecular layer of the cerebellum and the ligands for the c-kit receptors were detected at the boundary of molecular and granular layers. The expression of the c-kit ligands was not detectable in the cerebellum of lurcher (Lc/+) mutant mice that lack Purkinje cells, indicating the cells expressing the c-kit ligands were Purkinje cells. The cells expressing c-kit receptors decreased but were present in the cerebellum of Lc/+ mice. The c-kit mRNA-positive cells appeared to represent basket cells and stellate cells from their appearance and location. Since neurons in the molecular layer construct suppressive neurojunctions with Purkinje cells, the present result suggests that c-kit receptors and their ligands may play an important role for the construction of their junctions.

Animals↗

Maintenance by androgen and thyroid hormone of androgen-induced convoluted tubular cells in mouse submandibular glands.

Injection of 5 alpha-dihydrotestosterone (DHT) into castrated adult female mice stimulated the proliferation of a small proportion of the convoluted tubular cells in the submandibular glands. We investigated the effects of DHT and thyroxine (T4) on the maintenance of these proliferated convoluted tubular cells. For this, castrated adult female mice that had been treated daily with DHT for 3 days and then once with [3H]thymidine, received a first series of daily injections of DHT for various periods or T4 for 10 days, and then a second series of injections of treatment with DHT or T4, or no further treatment. The second series of treatments with DHT or T4 maintained the percentages of 3H-labeled convoluted tubular cells at similar or slightly lower levels than those at the end of the first series of treatments. In mice that did not receive the second series of treatments, the percentages of 3H-labeled convoluted tubular cells decreased markedly, becoming significantly lower than those at the end of the second series of treatment with DHT or T4. We also examined the effect of DHT on the proliferation of convoluted tubular cells of castrated adult female mice that had received 10 daily injections of DHT and then no treatment for 28 days. In these mice, the cells did not proliferate markedly on stimulation with DHT. These results suggest that androgen and thyroid hormone maintain convoluted tubular cells that have proliferated in response to androgen, and that the convoluted tubular cells may become unresponsive to androgen in terms of proliferation after their exposure to androgen.

Animals↗

Magnetic resonance imaging detection of aortic and pulmonary artery wall thickening in the acute stage of Takayasu arteritis. Improvement of clinical and radiologic findings after steroid therapy.

OBJECTIVE: Early diagnosis of Takayasu arteritis in the acute stage (prepulseless stage) is extremely difficult. Identification of a useful approach to detecting the initial changes of arteritis is therefore desirable. METHODS: Careful clinical examination of a young woman with persistent fever and dry cough revealed faintly audible bruits at the cervical, supraclavicular, and abdominal regions. Aortographic features suggested thickening of the wall of the descending thoracic aorta. Magnetic resonance imaging (MRI) of this area was diagnostic. RESULTS: MRI demonstrated involvement of the ascending aorta and right main pulmonary artery. Steroid therapy (prednisolone 60 mg/day) induced dramatic clinical and radiologic improvement in 2 months. CONCLUSION: This is the first report of MRI-documented reduction in the thickness of the walls of both the aorta and the pulmonary artery following steroid therapy.

Acute Disease↗

Localization of mRNA for c-kit receptor and its ligand in the brain of adult rats: an analysis using in situ hybridization histochemistry.

Localization of mRNA for the c-kit receptor and its ligand (Sl factor) in the brain of adult rats was studied using in situ hybridization histochemistry. The mRNA for the c-kit receptor was detected in the forebrain, the lower brain stem and the cerebellum. In the forebrain, the c-kit mRNA signals were detected in the olfactory bulb, the caudate-putamen, throughout the superficial cortex, the accumbens nucleus, the nucleus of vertical limb diagonal band, the bed nucleus of anterior commissure, Ammon's horn, the entopeduncular nucleus, the subthalamic nucleus, the dorsal raphe nucleus, the parasubiculum, the presubiculum, the ventricular nucleus of lateral lemniscus, and the entorhinal cortex. In the lower brain stem, the signals were detected in the inferior colliculus, the spinal vestibular nucleus, the spinal tract nucleus of trigeminal nerve, and the pyramidal tract. In the cerebellum, the signals were detected in the molecular layer of the cortex and cerebellar nuclei. By contrast, the signals of mRNA for Sl factor were detected in the forebrain and the cerebellum. In the forebrain, the signals were detected in the olfactory bulb, the endopiriform nucleus, the septohippocampal nucleus, the habenular nuclei, and most of the thalamic nuclei. In the cerebellum, the signals were detected in Purkinje cells. Several pairs of structures were found in which mRNA of either the c-kit receptor or the Sl factor was expressed and between which the synaptic connection had been reported, suggesting that the interaction between the c-kit receptor and the Sl factor may play some roles in the development of such synaptic connections.

Animals↗