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Biomedical subjects

T Kusakabe

Publications and source records attributed to T Kusakabe.

At least 19 recordsLinked to original sources

Changes in the peptidergic innervation in the carotid body of rats chronically exposed to hypercapnic hypoxia: an effect of arterial CO2 tension.

The abundance of neuropeptide Y (NPY)-, vasoactive intestinal polypeptide (VIP)-, substance P (SP)-, and calcitonin gene-related peptide (CGRP)-immunoreactive nerve fibers in the carotid body was examined in chronically hypercapnic hypoxic rats (10% O2 and 6-7% CO2 for 3 months), and the distribution and abundance of these four peptidergic fibers were compared with those of previously reported hypocapnic- and isocapnic hypoxic carotid bodies to evaluate the effect of arterial CO2 tension. The vasculature in the carotid body of chronically hypercapnic hypoxic rats was found to be enlarged in comparison with that of normoxic control rats, but the rate of vascular enlargement was smaller than that in the previously reported hypocapnic- and isocapnic hypoxic carotid bodies. In the chronically hypercapnic hypoxic carotid body, the density per unit area of parenchymal NPY fibers was significantly increased, and that of VIP fibers was unchanged, although the density of NPY and VIP fibers in the previously reportetd chronically hypocapnic and isocapnic hypoxic carotid bodies was opposite to that in hypercapnic hypoxia as observed in this study. The density of SP and CGRP fibers was decreased. These results along with previous reports suggest that different levels of arterial CO2 tension change the peptidergic innervation in the carotid body during chronically hypoxic exposure, and altered peptidergic innervation of the chronically hypercapnic hypoxic carotid body is one feature of hypoxic adaptation.

Animals↗

Observation of the isomer effect on charge transfer from C3H4 molecules (allene and propyne) at keV energies.

The apparent isomer effect on charge transfer processes in collisions of the ground-state C+ ions with allene and propyne, which have the same C3H4 molecular chemical notation, has been observed experimentally in the collision energy from 0.2 to 4.5 keV. The difference in total charge transfer cross sections between the two isomers was found to be 32% at 0.2 keV, although it decreases to 10% at 4.5 keV. This difference is out of experimental uncertainty of 14.6% at least below the collision energy of 0.5 keV and should be regarded as a real isomer effect. Theoretical analysis based on a molecular orbital expansion method has also confirmed the experimental finding and provided the rationale.

Journal Article↗

Ci-opsin1, a vertebrate-type opsin gene, expressed in the larval ocellus of the ascidian Ciona intestinalis.

A novel gene encoding visual pigment, Ci-opsin1, was identified in a primitive chordate, the ascidian, Ciona intestinalis. Molecular phylogenetic analysis and the exon-intron organization suggest that Ci-opsin1 is closely related to the retinal and pineal opsins of vertebrates. During embryogenesis, Ci-opsin1 transcripts were first detected in part of the brain of mid tailbud embryos; its expression was confined to photoreceptor cells of the ocellus (eye spot) in the larval brain as development proceeded. These results suggest a common descent of the ascidian ocellus and the vertebrate eyes. The ocellus of ascidian larvae may represent an ancestral state of the vertebrate eye.

Amino Acid Sequence↗

Solid-phase microextraction and gas chromatography-mass spectrometry analysis of p,p' -DDE in biological samples.

A simple and rapid extraction method for the analysis of p,p'-DDE from rat whole blood and tissues was developed using headspace solid-phase microextraction (SPME). A vial containing a sample of p,p'-DDE, sodium hydroxide, and benzophenone as internal standard was heated at 120 degrees C. A polydimethylsiloxane-coated SPME fiber was exposed for 15 min in the headspace of the vial. The fiber needle was then injected and desorbed by exposing the fiber in the injection port of a capillary gas chromatography-mass spectrometry system. The calibration curve demonstrated good linearity throughout the concentration range from 0.02 to 50 microg/g for rat whole blood and liver samples. The limit of detection for p,p'-DDE was 0.020 microg/g using 0.5 g rat whole blood and liver samples. Coefficients of variation ranged from 7.0 to 7.9%. This method was used to analyze a rat whole blood sample after administration of p,p'-DDE.

Animals↗

Linearization and integration of DNA into cells preferentially occurs at intrinsically curved regions from human LINE-1 repetitive element.

A bent DNA library was constructed from human genomic DNA, from which a new clone belonging to the human LINE-1 sequence family was isolated and characterized. This clone, with a length of 378 base pairs and termed HBC-1 (human bent clone-1), contained an intrinsically occurring curved DNA structure. By permutation analysis, the center of curvature of this fragment was mapped onto the nucleotide position 886 from the 5' terminus of the complete LINE-1 sequence. Reporter plasmids, which contain HBC-1, were effectively integrated into human chromosome, indicating that the bent DNA structure provides a preferential donor site for the integration of human LINE-1 sequences. The present finding may provide an explanation as to why some inactivated LINE-1 sequences on human chromosomes carry the deletion at their 5' termini.

3T3 Cells↗

Expression of glucose transporter-1 in human gastric carcinoma: association with tumor aggressiveness, metastasis, and patient survival.

BACKGROUND: Malignant cells show increased glucose uptake in vitro and in vivo, which is believed to be facilitated by glucose transporters (Gluts). Expression of Glut1, one of the Gluts, has been described in malignancies of the esophagus, colon, pancreas, lung, and brain, but to the authors' knowledge the significance of Glut1 expression in human gastric carcinoma has not been elucidated. The objective of the current study was to examine the expression and distribution of Glut1 and its relation to clinicopathologic parameters in patients with gastric carcinoma. METHODS: Immunohistochemistry with anti-Glut1 antibody was performed on 617 gastric carcinomas and 50 tubular adenomas of the stomach. Glut1-positive and Glut1-negative carcinomas were analyzed for their clinicopathologic characteristics including histologic subtype, depth of invasion, vascular permeation, lymph node and hepatic metastasis, peritoneal dissemination, and prognosis. RESULTS: None of the adenomas expressed Glut1, whereas 182 of 617 carcinomas (29.5%) were positive for the protein. Signet ring cell carcinoma and mucinous adenocarcinoma rarely were positive (2.0% and 6.3%, respectively) and papillary adenocarcinoma (44%) showed slightly higher positivity for Glut1 than tubular (32%) or poorly differentiated adenocarcinoma (28%). Glut1-positive tumor cells were localized mainly in the central part of tumor nests with or without peripheral distribution (92%) but peripheral distribution alone was very limited (8%) (P = 0.0001). Glut1 positivity was associated with depth of invasion (P = 0.0001), lymphatic permeation (P = 0.0001), venous invasion (P = 0.0001), lymph node metastasis (P = 0.0001), hepatic metastasis (P = 0.0001), and carcinoma stage (P = 0.0001). However, peritoneal dissemination was not found to be associated with Glut1 positivity (P = 0.0833). The survival of patients who had tumors that expressed Glut1 was significantly shorter than that of patients with Glut1-negative tumors (P = 0.0001). CONCLUSIONS: In human gastric carcinoma, Glut1 is expressed late in carcinogesis and increases with disease progression. Glut1 expression is associated with tumor aggressiveness and patient survival.

Adult↗

Occurrence of ovalbumin in ovarian yolk of chicken during oogenesis.

Yolk specimens from chicken ovaries during oogenesis gave a positive signal for ovalbumin as analyzed by Western blotting, indicating that the ovarian yolk contains ovalbumin. Northern blotting and reverse transcriptase-polymerase chain reaction gave a negative signal for ovalbumin mRNA in the liver and other organs except oviduct, whereas the laying hen serum was found to indicate immunologically the presence of ovalbumin. It was therefore assumed that ovalbumin synthesized in the oviduct might partly be secreted into the blood circular system, from which it is taken up into the oocyte.

Animals↗

Role of interaction between two silkworm RecA homologs in homologous DNA pairing.

Recombinant BmRad51 and BmDmc1, silkworm homologs of the Escherichia coli RecA proteins catalyzing the homologous DNA pairing, were purified from E. coli cells carrying expression vectors. These possessed different enzymatic properties in the joint molecule formation between single-stranded circular DNA and homologous linear double-stranded DNA. The requirement of single-stranded circular DNA for the efficient reaction was twofold higher in BmRad51 than in BmDmc1. Although able to mediate the joint molecule formation independently, a complex of the two enzymes formed prior to single-stranded DNA binding was found to have augmented efficiency of the pairing reaction.

Animals↗

Prevention of lethal acute graft-versus-host disease in mice by oral administration of T helper 1 inhibitor, TAK-603.

Acute graft-versus-host diseases (GVHD) is a major cause of morbidity and mortality in patients undergoing allogeneic bone marrow transplantation (BMT). T helper 1 (Th1)-type cytokines such as interferon-gamma or tumor necrosis factor-alpha have been implicated in the pathogenesis of acute GVHD. TAK-603 is a new quinoline derivative, which is now in clinical trials for use as a disease-modifying antirheumatic drug. In preclinical studies, it inhibited delayed-type hypersensitivity, but not Arthus-type reaction, in mice, and selectively suppressed Th1 cytokine production. Thus, the present study was designed to investigate whether the Th1 inhibitor (TAK-603) ameliorates lethal acute GVHD in a mouse model. Administration of TAK-603 into BALB/c mice given 10 Gy total body irradiation followed by transplantation of bone marrow and spleen cells from C57BL/6 mice markedly reduced the mortality in association with minimal signs of GVHD pathology in the liver, intestine, and skin. TAK-603 reduced not only the production of Th1-type cytokines, but also the proportion of Th1 cells in CD4(+) helper T cells in this GVHD mouse model. These results suggest that TAK-603 could be a potent therapeutic agent for acute lethal GVHD.

Acute Disease↗

Long-term survival and late-onset complications of cancer patients treated with high-dose chemotherapy followed by autologous peripheral blood stem cell transplantation.

The antitumor effect of high-dose chemotherapy (HDC) followed by autologous peripheral blood stem cell transplantation (auto-PBSCT) is considered superior to that of conventional chemotherapy. However, the long-term benefits of this strategy in Japan remain unclear. Therefore, in this study, 109 cancer patients enrolled between 1989 and 1999 were treated with HDC and auto-PBSCT. Patients were evaluated for long-term survival and late-onset complications, including secondary malignancy. The mean number of CD34+ cells harvested per apheresis was larger in the group receiving high-dose cytosine arabinoside or high-dose etoposide plus granulocyte colony-stimulating factor (G-CSF) than in the group receiving conventional chemotherapy plus G-CSF. The 5-year overall survival rates for non-Hodgkin's lymphoma patients in first complete remission (CR) (83.2%), second or subsequent CR (74.1%), or first partial remission (PR) (66.7%) at the time of transplantation were significantly higher than those with no remission (35.7%) at the time of transplantation (first CR, P < .05; second or subsequent CR, P < .05; first PR, P < .05). The 5-year overall survival (OS) rates for breast cancer was 40.8%, and the disease-free survival rate was extremely low (8.8%). The 5-year OS rates for chemotherapy-sensitive and chemotherapy-resistant diseases at the time of transplantation were 32.7% and 35.7%, respectively, a difference that was not considered significant. The 5-year OS for germ cell tumor was 80.0%, and the disease-free survival rate was 77.9%. The rate of therapy-related death was 8.2%. The occurrence rate of secondary malignancy was 0.9%. Late-onset complications were observed in 4 cases (glomerulonephritis, interstitial pneumonitis, ulcerative colitis, and acute myelogenous leukemia). At 3.7%, the occurrence rate was not very high, but most complications of auto-PBSCT were life threatening and interfered with patients' quality of life. A careful follow-up is required for at least 2 years after transplantation, because the mean occurrence time of late-onset complications is 16.7 months posttransplantation.

Adult↗

A cis-regulatory element essential for photoreceptor cell-specific expression of a medaka retinal guanylyl cyclase gene.

We examined the spatial expression pattern of an orphan receptor guanylyl cyclase gene, OlGC3, during embryogenesis of medaka, and we analyzed the cis-regulatory region required for its photoreceptor cell-specific expression by introducing promoter-green fluorescent protein gene (GFP) fusion constructs into medaka embryos. Zygotic expression of OlGC3 first appears at stage 36 and is confined to retinal photoreceptor cells. The 5' flanking sequence up to -388 is sufficient to drive the photoreceptor cell-specific gene expression. When a mutation was introduced into the orthodenticle-related homeobox (OTX)-binding consensus sequence at -36/-31, reporter gene expression was completely abolished in retinal photoreceptor cells. The mutation seemed not to impair promoter elements for general transcription factors, because ectopic GFP expression in yolk epithelium was not diminished by the same mutation. These results suggest that the proximal cis-regulatory element containing a consensus binding sequence for OTX transcription factors is essential for OlGC3 expression in photoreceptor cells.

Animals↗

Autoradiographic studies using L-[(14)C]DOPA and L-DOPA reveal regional Na(+)-dependent uptake of the neurotransmitter candidate L-DOPA in the CNS.

We previously proposed that L-3,4-dihydroxyphenylalanine (L-DOPA) is a neurotransmitter in the CNS. Receptor and transporter molecules for L-DOPA, however, have not been determined. In the present study, in order to localize the uptake sites of L-DOPA in the CNS, we performed autoradiographic uptake studies using L-[14C]DOPA and L-[3H]DOPA in the uptake study on rat brain slice preparations, and further analyzed the properties of L-DOPA uptake. Image analysis of the L-[14C]DOPA autoradiogram showed a unique heterogeneous distribution of uptake sites in the brain. The intensity was relatively high in the cerebral cortex, the hypothalamus, the cerebellum and the hippocampus, while the density was moderate or even low in the striatum and the substantia nigra. L-DOPA and phenylalanine, but not dopamine (10mM) were able to almost completely inhibit the uptake of L-[14C]DOPA to basal levels. Microautoradiographic studies using L-[3H]DOPA revealed accumulation of dense grains in the median eminence, the supraoptic nucleus of the hypothalamus, the cerebral cortex (layer I) and the hippocampus. In the cerebellum, grains formed in clusters surrounding the Purkinje cells. This grain accumulation was concluded to be in Bergmann glial cells, since the morphological pattern of grain accumulation was similar to that of the immunoreactivity of the glutamate aspartate transporter, a marker protein for Bergmann glial cells. In the hippocampus, the grain density significantly decreased under Na(+)-free conditions. In addition, grain density also decreased in the absence of Cl(-). In contrast, grains in the choroid plexus and the ependymal cell layer, were not affected by the absence of Na(+). These findings indicated that the uptake of L-DOPA occurs via various types of large neutral amino acid transport mechanisms. It appears that neuronal and/or glial cells, which take up L-DOPA in a Na(+)-dependent manner, exist in the CNS. Our finding further supports the concept that L-DOPA itself may act as a neurotransmitter or neuromodulator.

Animals↗

Biological characteristics and chemosensitivity profile of four human anaplastic thyroid carcinoma cell lines.

Anaplastic thyroid carcinoma is a rapidly growing, aggressive neoplasm affecting the elderly which does not respond to most of the therapies. We established cultured cell lines from four untreated tumors. The cultures grew in a monolayer of spindle-shaped cells in three cell lines and of small polygonal cells in one line, having relatively long doubling times and chromosomal abnormalities. The xenotransplantation of the lines in athymic nude mice produced tumors with a histology similar to the original tumors. The immunocytochemical staining showed the expression of PCNA, HLA-class 1, cytokeratin, vimentin and FAS (fatty acid synthase) but not CEA, desmin or P-glycoprotein. The lines secreted TPA, IL-6, IL-8 and few or no thyroid-related hormones in the culture supernatant. One cell line produced G-CSF. The chemosensitivity assay revealed intrinsic drug resistance to nine out of 11 antineoplastic agents. The reverse transcriptase-polymerase chain reaction (RT-PCR) detected MRP (multidrug resistance-associated protein) mRNA but not mdr (multidrug resistance protein)-1 and mdr-3 mRNAs. This finding indicates that the multidrug resistance of these lines is mediated by a P-glycoprotein-unrelated mechanism. The RT-PCR also presented FAS mRNA in all the lines, and IL-6 and IL-8 mRNAs in some of the lines.

ATP Binding Cassette Transporter, Subfamily B↗

Identification of three annexin IX isoforms generated by alternative splicing of the carboxyl-terminal exon in silkworm, Bombyx mori.

Annexins (ANXs) are a family of structurally related proteins with Ca(2+)-dependent phospholipid-binding properties. Here we report the cloning of three cDNAs each encoding annexin IX (ANX IX) isoforms from unfertilized eggs of the silkworm, Bombyx mori. The analysis of exon/intron structures showed that the three mRNAs, named ANX IX-A (2300bp), ANX IX-B (1884bp) and ANX IX-C (1409bp), respectively, were generated from a single gene by alternative usage of a 3'-splice site of the last exon. Thus the three isoforms have an identical sequence from amino acid residues 1 to 307 and this region shows approximately 77% identity to Drosophila melanogaster ANX IX. Only amino acid residues 308-324 (A) or 308-323 (B and C), which correspond to the C-terminal tail, are different in the three proteins. A RT-PCR analysis indicated that the three isoforms of silkworm ANX IX were specifically expressed in various larval tissues and development stages. Interestingly, the C-terminal tail in ANXs I, II and V were previously confirmed as a binding region for protein kinase C. Thus generation of the three ANX IX isoforms in the silkworm, that are different from other ANXs, may have a functional significance other than binding to Ca(2+).

Alternative Splicing↗

Effects of substance P and calcitonin gene-related peptide on axonal transport in isolated and cultured adult mouse dorsal root ganglion neurons.

Substance P and calcitonin gene-related peptide (CGRP) released from primary sensory neurons are known to play important roles in nociception and nociceptive transmission. In the present study, we attempted to clarify the roles of these neuropeptides in the regulation of axonal transport in sensory neurons. Cells were isolated from adult mouse dorsal root ganglia and cultured in F-12 medium containing fetal bovine serum for 48 h until their neurites were grown. These isolated and cultured DRG cells were mostly (>98%) small (diameter <25 microm) and medium (diameter, 25-40 microm) in size, and were immunoreactive for substance P and CGRP (85.9 and 66. 0% of total cells, respectively). Video-enhanced microscopy was applied to observe particles transported within neurites. Application of substance P (100 nM) decreased the number of particles transported in both anterograde and retrograde directions in each of DRG neurons tested (n=5). The instantaneous velocities of individual particles transported in anterograde and retrograde directions were also reduced by substance P. In contrast, alpha-CGRP (100 nM) increased the number of particles transported in both directions in each of DRG neurons tested (n=5), and also increased the instantaneous velocities of particles transported bidirectionally. Application of beta-CGRP (100-1000 nM) did not elicit any effect on axonal transport. Therefore, axonal transport in sensory neurons seems to be modulated by substance P and alpha-CGRP, both of which can be derived from its own and adjacent sensory neurons.

Animals↗

Photoreceptors and olfactory cells express the same retinal guanylyl cyclase isoform in medaka: visualization by promoter transgenics.

We examined the spatial expression patterns of two orphan receptor guanylyl cyclase genes OlGC4 and OlGC5 during embryogenesis of medaka and characterized the 5' flanking region required for tissue-specific expression of OlGC4 by introducing promoter-GFP fusion constructs into medaka embryos. Expression of OlGC5 is confined to retinal photoreceptor cells, while OlGC4 is expressed in the retina, pineal organ, and olfactory pits. The OlGC4 upstream region between -2374 and +343 is sufficient to drive the sensory organ-specific gene expression. Mutations in the consensus binding sequences for OTX/CRX transcription factors did not impair the reporter gene expression. Our results suggest that the same isoform of guanylyl cyclase is utilized in both photoreceptors and olfactory cells, and that transcription factors other than OTX/CRX primarily activate the OlGC4 expression.

Animals↗