Search PubMed⌕ Search

Biomedical subjects

Ryosuke Nakamura

Publications and source records attributed to Ryosuke Nakamura.

7 recordsLinked to original sources

Presence and primary sequence of a high-affinity IgG receptor on canine mastocytoma (CM-MC) cells.

Mast cells play a central role in IgE-dependent allergic responses. Although they have been reported to express only low-affinity IgG receptors and no high-affinity receptors (FcgammaRI), our recent study showed that canine mastocytoma CM-MC cells are activated by monomeric canine IgG, suggesting the presence of FcgammaRI on CM-MC cells. In the present study, we measured the affinity of canine IgG with CM-MC cells, determined the presence of the FcgammaRI protein and mRNA, and identified the cDNA sequence of it. The results showed that (7.5+/-3.1)x10(4) receptor molecules are expressed on a CM-MC cell with a Ka of (9.1+/-1.6)x10(7)M(-1) for binding to monomeric canine IgG. Canine IgG-conjugated beads precipitated an approximately 72-kDa surface protein, whose size is consistent with that of the FcgammaRI alpha subunit of humans and mouse. The expression of FcgammaRI mRNA was detected by reverse transcriptase polymerase chain reaction (RT-PCR), and the cDNA encoding the FcgammaRI alpha subunit was found to be 84% and 78% similar to that of humans and the mouse, respectively. The predicted amino acid sequence was 72% and 63% identical, respectively. Canine mastocytoma CM-MC cells are therefore very useful for studying FcgammaRI-mediated signal transduction in mast cells.

Amino Acid Sequence↗

A decrease in interleukin-1 receptor antagonist expression in the prefrontal cortex of schizophrenic patients.

Interleukin-1 (IL-1) mediates psychological stress responses by regulating monoamine metabolism and secretion of corticotropin-releasing factor, and is therefore, implicated in various psychiatric diseases. To evaluate the contribution of IL-1 signaling to the brain pathology of schizophrenia, we measured protein and/or mRNA levels for IL-1beta and endogenous IL-1 receptor antagonist (IL-1RA) in the postmortem brain tissues of prefrontal and parietal cortex, putamen, and hypothalamus. Both protein and mRNA levels of IL-1RA were specifically decreased in the prefrontal cortex of schizophrenic patients, whereas IL-1beta levels were not significantly altered in all the regions examined. The IL-1RA decrease was not correlated with the dose of antipsychotics given to patients. There was no influence of this illness on protein levels for IL-1 receptor type 1 in the prefrontal cortex, either. In contrast, IL-1RA serum levels were increased in schizophrenic patients, especially in drug-free patients, as reported previously. These findings suggest that chronic schizophrenia down-regulates IL-1RA production the prefrontal cortex, irrespective of its impact on the periphery. IL-1RA reduction might reflect an immunopathologic trait of the prefrontal region in schizophrenic patients.

Adult↗

Application of human Fc epsilon RI alpha-chain-transfected RBL-2H3 cells for estimation of active serum IgE.

We transfected the alpha-chain of human FcepsilonRI into rat basophilic leukemia cell line RBL-2H3, established several stable transfected cells, and screened them by beta-hexosaminidase release induced by sensitization with human IgE and stimulation with anti-human IgE antibody. A cloned cell line RBL-hEIa-2B12 was the strongest responder among the transfected cell clones. The concentrations of cytosolic free Ca2+ concentration in the human IgE-sensitized cells increased after stimulation with anti-human IgE antibody. Thus, it is suggested that the alpha-chain of human FcepsilonRI is associated with the beta-chain and/or gamma-chain of rat FcepsilonRI, and that they form functional high affinity IgE receptor complexes. The total IgE concentrations of the sera from allergic patients were determined by using the beta-hexosaminidase release assay, where the transfected cells were sensitized with diluted and heat-inactivated (at 56 degrees C for 30 min) serum and stimulated with anti-human IgE antibody. The IgE concentration obtained correlated with those measured by an enzyme immunoassay method. beta-Hexosaminidase release induced by stimulation with 5 times diluted serum was sometimes less than the release induced by the same serum; diluted 25 times or 125 times, suggesting that these serum contained factors that blocked IgE binding to FcepsilonRI or cross-linking by anti-human IgE antibody. The results suggested that our system will be useful for detecting FcepsilonRIalpha-bindable IgE in human serum.

Animals↗

[An autopsy case of argyrophilic grain dementia with abundant neurofibrillary tangles].

We reported an autopsy case of "senile dementia" showing neuropathologically abundant neurofibrillary tangles(NFT) and argyrophilic grains(AG) without senile plaques. A Japanese woman developed memory disturbance when she was 70 years old. The patient was hospitalized at age 80 and a cranial CT scan revealed bilateral mild atrophy of the temporal lobes and mild enlargement of the lateral ventricle, especially in the inferior horn. She died at the age of 80. Autopsy showed that her brain weighted 1220 g. Numerous NFT were found in the entorhinal (trans-entorhinal) region, subiculm, CA1-CA4, dentate gyrus, amygdala, nucleus basalis of Meynert, substantia nigra, and locus coeruleus. Furthermore, numerous AG were seen in the temporal lobe(T3, T4), amygdala, prominently in the basolateral nuclei. Obvious neuronal loss with gliosis was noted in the temporal lobes, including the hipocampal regions. Few senile plaques was detected in temporal lobe(T4). Sarkosyl-insoluble tau extracted from the temporal lobe consisted predominantly of four-repeat tau isoforms. To our knowledge, this is the first report of argyrophilic grain dementia complicated with tangle only dementia.

Aged↗

Effect of dialkyl phthalates on the degranulation and Ca2+ response of RBL-2H3 mast cells.

We examined the effect of three dialkyl phthalates, di-n-butylphthalate (DBP), di-isobutylphthalate (DIBP) and di(2-ethylhexyl)phthalate (DEHP), on antigen-induced degranulation of RBL-2H3 mast cells. Exposure to 50-500 microM DBP, 50-500 microM DIBP, and 500 microM DEHP significantly potentiated antigen-induced beta-hexosaminidase release. Without antigen stimulation, the phthalates did not cause any significant increase in degranulation. Next, we examined the Ca2+ response of RBL-2H3 cells after exposure to these phthalates. The cytosolic calcium ion concentration ([Ca2+]i) of the cells clearly increased when the cells were stimulated with 50-500 microM and 50-500 microM DIBP, and increased slightly when stimulated with 50-500 microM DEHP. Digital imaging fluorescence microscope analysis showed that the addition of DBP evoked Ca2+ oscillation in individual mast cells. Finally, we investigated the relationship between the DBP-sensitive Ca2+ stores and thapsigargin (TG)-sensitive Ca2+ stores. A rise in [Ca2+](i) following challenge with DBP after TG was observed, and thus the DBP-sensitive and TG-sensitive Ca2+ stores in RBL-2H3 cells seem to be different. In conclusion, some dialkyl phthalates increase antigen-induced degranulation in RBL-2H3 cells dependent on the increase of [Ca2+]i.

Animals↗

Selective reduction of a PDZ protein, SAP-97, in the prefrontal cortex of patients with chronic schizophrenia.

Many postsynaptic density proteins carrying postsynaptic density-95/discs large/zone occludens-1 (PDZ) domain(s) interact with glutamate receptors to control receptor dynamics and synaptic plasticity. Here we examined the expression of PDZ proteins, synapse-associated protein (SAP) 97, postsynaptic density (PSD)-95, chapsyn-110, GRIP1 and SAP102, in post-mortem brains of schizophrenic patients and control subjects, and evaluated their contribution to schizophrenic pathology. Among these PDZ proteins, SAP97 exhibited the most marked change: SAP97 protein levels were decreased to less than half that of the control levels specifically in the prefrontal cortex of schizophrenic patients. In parallel, its binding partner, GluR1, similarly decreased in the same brain region. The correlation between SAP97 and GluR1 levels in control subjects was, however, altered in schizophrenic patients. SAP102 levels were also significantly reduced in the hippocampus of schizophrenic patients, but this reduction was correlated with sample storage time and post-mortem interval. There were no changes in the levels of the other PDZ proteins in any of the regions examined. In addition, neuroleptic treatment failed to mimic the SAP97 change. These findings suggest that a phenotypic loss of SAP97 is associated with the postsynaptic impairment in prefrontal excitatory circuits of schizophrenic patients.

Adaptor Proteins, Signal Transducing↗

IgG-mediated signal transduction in canine mastocytoma-derived cells.

BACKGROUND: We have reported canine cutaneous mastocytoma-derived cells named CM-MC sensitized with monomeric IgG released histamine upon anti-IgG stimulation. However, IgG or IgE-mediated signal transduction in the cells remains to be examined. METHODS: Monomeric IgG-binding to cells was measured by flow cytometry using FITC-anti-IgG. IgG-mediated protein tyrosine phosphorylation was studied by Western blotting using anti-phosphotyrosine antibody. We monitored the intracellular Ca(2+) concentration ([Ca(2+)](i)) when IgG-primed cells were activated with anti-canine IgG. Release of Ca(2+) from intracellular stores was analyzed with thapsigargin in the absence of extracellular Ca(2+). The Ca(2+) entry via store-operated Ca(2+) channel from the external environment was characterized using Ba(2+), Ni(2+) and EGTA. Cells sensitized with canine serum abundant in IgG and IgE or heat-inactivated serum were activated by anti-canine IgG or anti-canine IgE. The effect of extracellular Ca(2+) and reaction time on IgG-mediated histamine release was examined. Staurosporine and ER-27319 were used to clarify the IgG-mediated protein tyrosine phosphorylation. RESULTS: Abundant IgG-binding sites on the cell were detected by FACS analysis. Anti-IgG induced rapid protein tyrosine phosphorylation and [Ca(2+)](i) elevation. When extracellular Ca(2+) was excluded by EGTA, a mild and transient increase in [Ca(2+)](i) was observed, indicating the release of Ca(2+) from anti-IgG-sensitive intracellular Ca(2+) stores. The constant Ba(2+) entry from external environment proved the Ca(2+) influx occurred mainly via a store-operated Ca(2+) channel which was inhibited by Ni(2+) and EGTA. Canine serum-sensitized cells showed a rapid and sustained increase in [Ca(2+)](i) upon both anti-IgG and anti-IgE stimulation. The [Ca(2+)](i) elevation induced by anti-IgE was decreased in the cells sensitized with heat-inactivated serum. Histamine release from CM-MCs was absolutely dependent on extracellular Ca(2+), and reached equilibrium within 5 min. Staurosporine inhibited the tyrosine phosphorylation of 38-, 65-, 70-, 80-kD proteins. ER-27319 inhibited the tyrosine phosphorylation of 38- and 70-kD proteins. Staurosporine also inhibited IgG-mediated [Ca(2+)](i) elevation and histamine release in a dose-dependent manner. CONCLUSIONS: Canine cutaneous mastocytoma-derived (CM-MC) cells were activated by both IgG- and IgE-mediated mechanisms. IgG-mediated protein tyrosine phosphorylation and Ca(2+) influx were similar to those mediated by IgE. CM-MC cells are useful for the study of allergic inflammation caused by IgG-dependent mechanisms.

Acridines↗