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Biomedical subjects

K Kohno

Publications and source records attributed to K Kohno.

At least 379 records · Page 21Linked to original sources

Distribution patterns of dendrites in motor neuron pools of lumbosacral spinal cord of the chicken.

The morphology of dendritic trees (dendroarchitecture) of motor neurons innervating specific hindlimb muscles (motoneuron pools, MNP) was studied in the chick spinal cord. Motoneurons were labelled by intramuscular injections of horseradish peroxidase conjugated with cholera toxin subunit B. MNPs of posterior iliotibial and femorotibial muscles were located at the dorsolateral part of lateral motor column of lumbosacral segments (LS) 1-4 and 1-3, respectively. Although the dendritic profiles of femorotibialis motoneurons were fewer than those of posterior iliotibialis, these two MNPs had a similar distribution pattern of dendrites. Dendritic profiles were about equally distributed in the gray and white matter. Dendrites from the MNP of posterior iliotibialis radiated in all directions. A large number of dendrites penetrated into the white matter, and some even reached to the subpial regions of the lateral funiculus. One array of dendrites that projected dorsomedialwards extended to the base of the posterior horn. MNPs of both the iliofibularis (LS 4-7) and caudilioflexorius (LS 6-8) had dendritic trees with similar distribution patterns. There were two main arrays of dendritic extensions; one along the dorsal, and another along the ventral border of the lateral motor column. Dendrites from the iliofibularis and caudilioflexorius motoneurons were located more frequently in the white matter than in the gray matter. A large number of dendrites extended in all directions from the MNP of the adductor muscle, which was located in the medial region of lateral motor column of LS 1-2. The distribution of dendrites from a few other MNPs was also examined.(ABSTRACT TRUNCATED AT 250 WORDS)

Animals↗

Descending projections from the hypothalamic paraventricular nucleus to the A5 area, including the superior salivatory nucleus, in the rat.

The descending projection of the hypothalamic paraventricular nucleus (PVN) to the A5 area was elucidated using a technique that combines retrograde labeling with horseradish peroxidase (HRP), anterograde labeling with PHA-L (Phaseolus vulgaris leucoagglutinin and immunohistochemistry for dopamine-beta-hydroxylase (DBH). Following an iontophoretic injection of PHA-L into the PVN, HRP was applied to the greater petrosal nerve. Frozen sections of the hypothalamus and the caudal pons were first treated according to a protocol for HRP histochemistry using tetramethylbenzidine with cobalt-enhanced diaminobenzidine, and then they were processed for displaying PHA-L, and then for DBH immunohistochemistry. PHA-L labeled fibers from the PVN were observed in a ventrolateral part of the pontine reticular formation corresponding to the A5 area, where they give rise to a dense network around the cells of origin of the greater petrosal nerve (GPN cells) and DBH-positive cells. Terminals or varicosities labeled with PHA-L were preferentially observed around the somata of GPN cells, suggesting direct contact. However, apparent contact between both elements was hardly ever observed. On the other hand, terminals or varicosities were occasionally observed in close relation to DBH-positive cells. These results suggest that descending fibers of the PVN project more strongly to GPN cells than to DBH-positive cells. The relationship of this fiber pathway to control of the secretomotor or cardiovascular systems is discussed.

Animals↗

CD28 molecule as a receptor-like function for accessory signals in cell-mediated augmentation of IL-2 production.

IL-2 production by PHA-stimulated MOLT 14 cells (a TcR gamma/delta-bearing human leukemic T cell line) and MOLT 16 cells (a TcR alpha/beta-bearing human leukemic T cell line) was markedly augmented by coculturing with BALL-1 cells ( a human leukemic B cell line), or with recombinant human interleukin-1 alpha (rhIL-1 alpha). We have previously shown that the augmentation of IL-2 production, induced by BALL-1 cells, requires cell to cell contact and is an IL-1-independent pathway. In this report, the expression of the CD28 molecule on MOLT 14 cells and MOLT 16 cells was examined for its role in IL-2 production augmented by BALL-1 cells. A 1-hr preincubation of MOLT 14 cells and MOLT 16 cells with anti-CD28 mAb resulted in the inhibition of BALL-1 cell-induced augmentation of IL-2 production (90 and 62% inhibition of control, respectively). The inhibition was observed in a dose-dependent manner of anti-CD28 mAb added and reached a plateau level at concentrations of 0.05 micrograms/ml of anti-CD28 mAb. This was sufficient to cover all the CD28 molecules expressed on the surface of both T cells as detected by flow cytometric analysis. Flow cytometric analysis also showed that the inhibition was not due to a modulation of CD28 molecules. In contrast, the treatment with anti-CD28 mAb did not inhibit IL-2 production which was augmented by rhIL-1 alpha costimulator. These results suggest that the CD28 molecule on the T cells is important for the interaction with BALL-1 cells which causes the augmentation of IL-2 production and further imply that the CD28 molecule is a receptor for an accessory signal provided by BALL-1 cells.

Antibodies, Monoclonal↗

Epidermal growth factor (EGF)-nonresponsive variants of normal rat kidney cell line: response to EGF and transforming growth factor-beta.

Anchorage-independent growth in soft agar of normal rat kidney (NRK) fibroblasts depends on both transforming growth factor-beta (TGF-beta) and epidermal growth factor (EGF) (or TGF-alpha). We have isolated two EGF-nonresponsive cell lines, N-3 and N-9, from chemically mutagenized NRK cells, after selection of mitogen-specific nonproliferative variants in the presence of EGF and colchicine. Saturation binding kinetics with 125I-EGF showed one-half or fewer EGF receptors in N-3 and N-9 than in their parental NRK. Cellular uptake of 2-deoxy-D-glucose was enhanced in all NRK, N-3, and N-9 cell lines by TGF-beta treatment, whereas treatment with EGF significantly enhanced the cellular uptake of the glucose analog in NRK cells, but not in N-3 and N-9 cells. DNA synthesis of NRK during the quiescent state, but not that of N-3 and N-9, was stimulated by EGF. Anchorage-independent growth of N-9 could not be observed even in the presence of both EGF and TGF-beta, whereas that of N-3 was significantly enhanced by TGF-beta alone. EGF stimulated phosphorylation of a membrane protein with molecular size 170 kDa of NRK, but not of N-3, when immunoprecipitates reacting with anti-phosphotyrosine antibody were analyzed. Exposure of NRK cells to EGF increased cellular levels of TGF-beta mRNA, but there appeared little expression of TGF-beta mRNA in N-3 and N-9 cells. Exposure of N-3 cells to EGF or TGF-beta enhanced the secretion of EGF into culture medium, but exposure of NRK or N-9 cells did not. Altered response to EGF of N-3 or N-9 might be related to their aberrant growth behaviors.

Animals↗

Successful treatment of adult Arnold-Chiari malformation associated with basilar impression and syringomyelia by the transoral anterior approach.

A case of adult type I Arnold-Chiari malformation associated with basilar impression, syringomyelia, atlantoaxial dislocation, and occipitalization of the atlas is reported. Preoperative magnetic resonance imaging clearly revealed evidence of severe anterior compression of the cervicomedullary junction due to basilar impression and a sharp clivoaxial angle. Therefore, transoral anterior decompression and fusion were performed, resulting in an improvement of the patient's neurologic signs and symptoms. Postoperative magnetic resonance imaging showed an obvious reduction of the tonsillar herniation and syringomyelia, as well as an improvement of the cervicomedullary compression.

Adult↗

Expression of ret proto-oncogene in human neuroblastomas.

We examined the expression of ret proto-oncogene (proto-ret) in surgically resected human neuroblastomas. Slot blot RNA hybridization revealed that all 29 neuroblastomas examined expressed the proto-ret, the relative intensity of the hybridization ranging from 1 to 48. No correlation was found between the level of expression of proto-ret and the clinical stage. The level of expression was also not correlated with N-myc amplification, the patient's age or the histological type of the tumor. Based on the previous finding that proto-ret expression is very rarely detected in tumor cell lines other than those of neuroblastoma, proto-ret expression was suggested to be a characteristic of neuroblastomas, and possibly to be involved in the genesis of neuroblastomas.

Actins↗

Reversal by two dihydropyridine compounds of resistance to multiple anticancer agents in mouse P388 leukemia in vivo and in vitro.

We investigated whether two representative 1,4-dihydropyridine derivatives, NK-250 and NK-252, could potentiate the antitumor activity of multiple anticancer agents including vincristine (VCR), vinblastine, vindesine and actinomycin D in drug-resistant tumor cells and their parental drug-sensitive tumor cells. NK-250 and NK-252 at 5-10 microM almost completely reversed VCR resistance in cultured VCR-resistant P388/VCR cells derived from the mouse drug-sensitive P388/S leukemia cell line and also potentiated the cytocidal activity of VCR in drug-sensitive P388/S cells. NK-250 and NK-252 at 1-10 microM inhibited the photoaffinity labeling by [3H]azidopine of the cell-surface 170,000-molecular-weight P-glycoprotein. In chemotherapeutic experiments with leukemia-bearing mice, NK-250 or NK-252 was orally administered in combination with different drugs of the MDR phenotype administered intraperitoneally. The antitumor activity of the various combinations was found to be augmented in mice bearing P388/S- and P388/VCR-leukemia. Among the combinations examined, the combination of NK-250 and VCR was the most effective. These two 1,4-dihydropyridines, NK-250 and NK-252, are unique compounds because they were effective not only in circumventing the drug resistance, but also in potentiating the action of antitumor drugs against drug-sensitive tumors.

ATP Binding Cassette Transporter, Subfamily B, Mem↗

Immunoscintigraphy of human tumors transplanted in nude mice with radiolabeled anti-ras p21 monoclonal antibodies.

Anti-ras p21 monoclonal antibody (RASK-3) was used for immunoscintigraphy of human cancer cell lines in nude mice. Iodine-125-labeled RASK-3 was injected into nude mice with either human colon cancers (FCC-1 or BM-314) or lung cancer (KNS-62). Clear images were obtained in all three cancers 7 days after the injection of antibody. No localization of 125I-labeled control monoclonal antibody was observed. The ratio of tissue/blood radioactivity and % ID/g in the tumor were significantly higher than other organs by Day 8. The specific localization index examined by 131I-RASK-3 and 125I-control monoclonal antibody was also higher in the tumor than in other tissues. In the in vitro study, binding of RASK-3 to tumor cells increased significantly by treatment of cells with either lysolecithin or periodate-lysine-paraformaldehyde, which confirmed the intracellular localization of ras p21. The mechanism by which anti-ras p21 antibodies accumulate in tumor sites could be the necrotic changes in tumor cells or changes in membrane permeability of non-necrotic cells. These results provide a strong rationale for the utilization of ras p21 as a target antigen in the imaging of a variety of human cancers.

Animals↗

[Regulation of the multidrug resistance (MDR)1 gene expression].

MDR1 gene encodes a gp-170 membrane protein which acts as a energy-dependent pump to transport anticancer agents out of the cells. In this article, we briefly summarize the MDR gene family, gene amplification, gene expression by differentiation and gene expression in clinical tumors. We also describe the characterization of the promotor and tissue specific enhancer of the MDR1 gene and our recent study of the regulatory mechanism of this gene expression.

Antineoplastic Agents↗

The direct activation of human multidrug resistance gene (MDR1) by anticancer agents.

Enhanced expression of a multidrug-resistance gene (MDR1) is observed in some cancer patient, but any regulatory mechanisms of MDR1 gene expression in this phenomenon is not yet known. In this study, the regulation of MDR1 gene was analysed by transient expression assays in the presence of anticancer agents. We found that MDR1 promoter could be activated directly on the addition of anticancer agents including vincristine, daunomycin, adriamycin and colchicine. The results suggest that the level of MDR1 mRNA expression is associated with previous chemotherapy, including drugs that select the multidrug resistance phenotype.

ATP Binding Cassette Transporter, Subfamily B, Mem↗

Increased expression of glutathione S-transferase gene in cis-diamminedichloroplatinum(II)-resistant variants of a Chinese hamster ovary cell line.

We have isolated cis-diamminedichloroplatinum(II) (CDDP)-resistant variants, C/CDP-1 and C/CDP-2, from a Chinese hamster ovary (CHO) cell line after a stepwise exposure to increasing concentrations of CDDP, and a CDDP-sensitive revertant, R-1, from C/CDP-2 after continuous incubation for 5 months in the absence of CDDP, C/CDP-1 and C/CDP-2 showed 7- and 10-fold higher resistance to CDDP, respectively, compared to CHO cells. C/CDP-2 was cross-resistant to carboplatin, L-phenylalanine mustard (melphalan), and CdSO4, but not to other anticancer agents. Alkaline elution of DNA showed an increased amount of DNA interstrand cross-linking formation in CHO cells, but not in C/CDP-2 cells, when CHO and C/CDP-2 cells were cultured with CDDP. By contrast, alkaline elution of DNA showed increased formation of DNA cross-links when nuclei of C/CDP-2 cells were treated with CDDP. The activity of glutathione S-transferase (GST) of C/CDP-1 and C/CDP-2 was 4- and 6-fold higher than that of CHO cells, respectively. The cellular level of GST activity of R-1 was almost similar to that of CHO cells. Northern blotting analysis revealed that GST-pi mRNA in both C/CDP-1 and C/CDP-2 cell lines was increased more than 5-fold over that of CHO and R-1 cells. There is no apparent gene amplification of GST-pi gene in CDDP-resistant cell lines. Immunoblot assays showed a specific increase of GST-pi in C/CDP-1 and C/CDP-2, but no increase in GST-mu and GST-alpha. We also compared CDDP-resistant properties of a resistant variant, P/CDP-5, derived from human prostate cancer PC-3 cell line, with those of C/CDP-1 and C/CDP-2 cells and found no increased GST activity in P/CDP-5 cells. Multiple mechanisms might be considered for acquisition of CDDP resistance in various cell lines in culture.

Animals↗

Structure and expression of elongation factor 2 gene during development of Dictyostelium discoideum.

A cDNA library constructed from poly(A)+ RNA isolated from Dictyostelium discoideum cells at 12 h of development was screened with the hamster elongation factor 2 (EF-2) cDNA. Several different cDNA clones which hybridized were isolated after a second screening. A cDNA clone representing the 5'-end of the mRNA was obtained by primer extension. By comparing the amino acid sequence deduced from the nucleotide sequences of these clones with that of hamster EF-2, we found enough homology between them to conclude that the isolated clones were complementary to the mRNA of D. discoideum EF-2. The N terminus which is the GTP-binding domain and the C-terminal half where it interacts with a ribosome showed a high degree of homology. The amino acid sequence of the carboxyl half includes that it contain a site of ADP-ribosylation by diphtheria toxin. From the Northern blotting analysis, the size of the mRNA was estimated to be 2.6 kilobases. The expression of the mRNA was high in vegetative cells, became maximal at the aggregation stage, and decreased thereafter through development. Upon differentiation of prespore and prestalk cells, the mRNA was highly enriched in the former over the latter. ADP-ribosylation assay of EF-2 protein by diphtheria toxin showed nearly the same developmental changes for the protein as the mRNA. However, prestalk cells were found to contain the same amount of the protein as prespore cells. The Southern blot analyses indicated that the gene encoding EF-2 is unique.

Amino Acid Sequence↗

Effects of tumor necrosis factor and epidermal growth factor on cell morphology, cell surface receptors, and the production of tissue inhibitor of metalloproteinases and IL-6 in human microvascular endothelial cells.

The effect of human TNF on cultured human microvascular endothelial (HME) cells was examined. Incubation with TNF alone transformed the morphology of HME cells from a cobblestone-like appearance into a disordered array of criss-crossed, elongated, spindle-shaped cells. Coadministration of epidermal growth factor (EGF) and TNF caused even more dramatic morphologic changes than TNF alone. Addition of basic fibroblast growth factor or insulin-like growth factor-I showed rather weak effects on cell morphology than EGF. Cell growth of HME cells was stimulated up to two-fold by TNF whereas addition of EGF additively enhanced the growth rate. Treatment of HME cells with 10 ng/ml EGF increased the binding of 125I-TNF, and Scatchard analysis showed increased TNF-R number by EGF treatment. Cellular response to TNF in the absence or presence of EGF was assessed by analyzing SDS-PAGE patterns of secreted proteins from HME cells. TNF enhanced the secretion of a protein of molecular weight 25,000 Da (25 kDa) which was found to be IL-6. In contrast, secretion of a polypeptide of 29 kDa was significantly increased when HME cells were treated with EGF, but not with TNF. Coadministration of TNF and EGF synergistically increased the secretion of the 29-kDa protein. This 29-kDa protein was found to be tissue inhibitor of metalloproteinases when assayed with antitissue inhibitor of metalloproteinases antibody. TNF and EGF also enhanced secretion of collagenase with Mr of approximately 55 kDa. Increased steady state levels of the inhibitor mRNA were observed when HME cells were treated with EGF, and coadministration of TNF further increased the levels. The morphologic transformation of HME cells by TNF and/or EGF is discussed in relation to their expression of the secreted proteins.

Cell Division↗

Induction of manganese superoxide dismutase by tumor necrosis factor in human breast cancer MCF-7 cell line and its TNF-resistant variant.

Tumor necrosis factor (TNF)-resistant variant of human mammary cancer MCF-7 cell line was isolated by stepwise selection. The final TNF-resistant variant Tnf-1000 showed more than 100-fold higher resistance than the parental MCF-7 cell. Saturation kinetics for 125I-TNF binding showed that TNF-1000 cells had similar TNF receptor numbers as MCF-7 cells, but of a lower affinity. Induction of superoxide dismutase (SOD) was compared between MCF-7 and Tnf-1000 cells treated with TNF: SOD scavenges potentially toxic superoxide radicals. TNF induced more mitochondrial manganese SOD (SODm) in MCF-7 than in Tnf-1000 whereas there appeared to be no significant induction of cytosolic copper/zinc SOD (SODc) by TNF in both MCF-7 and Tnf-1000 cell lines. Acquirement of TNF-resistance in MCF-7 cells might be correlated with expression of SODm.

Breast Neoplasms↗

S. cerevisiae encodes an essential protein homologous in sequence and function to mammalian BiP.

The endoplasmic reticulum (ER) of mammalian cells contains a 78 kd protein (BiP) that is believed to assist in the folding of secretory and transmembrane proteins. We have used a cDNA encoding mouse BiP to isolate the homologous gene from S. cerevisiae, which encodes a sequence of 682 amino acids, 431 of which are identical to mouse BiP. Like its mammalian counterpart, yeast BiP is encoded by an HSP70-like gene whose transcription is stimulated by the presence of unfolded polypeptides in the ER. The gene encoding yeast BiP is essential for cell growth and, unexpectedly, is identical to the recently cloned KAR2 gene. Expression of mammalian BiP in S. cerevisiae can complement a mutant allele of KAR2 that is temperature sensitive for growth and nonconditionally defective for karyogamy. These results suggest that deficiencies in BiP may cause generalized failure of protein folding in the ER, leading to pleiotropic effects on cellular metabolism.

Amino Acid Sequence↗

The histidine residue of codon 715 is essential for function of elongation factor 2.

Several mutant cDNAs of elongation factor 2 (EF-2) were constructed by site-directed mutagenesis and their products expressed in mouse cells were investigated. Amino acid substitution for the histidine residue of codon 715, which is modified post-translationally to diphthamide, resulted in non-functional EF-2 and this substitution did not render EF-2 resistant to Pseudomonas aeruginosa exotoxin A, which inactivates EF-2 transferring ADP-ribose to the diphthamide residue. These non-functional EF-2s with replacements of the histidine-715 residue showed various extents of inhibition of protein synthesis by competing with functional EF-2 in vivo. These results suggest that histidine-715 is essential for the translocase activity of EF-2 and that the region around diphthamide functions in recognition of, and/or binding to ribosomes. Substitution of proline for the alanine-713 residue and substitution of glutamine for the glycine-717 residue converted EF-2 to partially toxin-resistant forms. Two-dimensional gel analysis with fragment A of diphtheria toxin of these toxin-resistant EF-2s revealed that their ADP-ribosylations by toxin were much less than that of wild-type EF-2.

Adenosine Diphosphate Ribose↗

Establishment of tumor cell lines from a patient with head and neck cancer and their different sensitivities to anti-cancer agents.

The authors established five cell lines from a human head and neck tumor. The five cell lines (HC-2, HC-3, HC-4, HC-7, and HC-9) exhibited different sensitivities to Adriamycin, cisplatin, bleomycin, 5-fluorouracil, vincristine, and daunomycin. The D50 was 200 ng/ml Adriamycin (doxorubicin) for HC-7 and 45 ng/ml for HC-2. At the inception of long-term culture (11 months) in the absence of any drug, the sensitivity to Adriamycin of HC-7-5 (subcloned from HC-7) was 3.4 times greater than that of HC-2-6 (subcloned from HC-2); by 11 months, it decreased to 1.6 times that of HC-2-6. The cytocidal action of Adriamycin on HC-2-6 and HC-7-5 was potentiated when Adriamycin was combined with verapamil or cepharanthine. Cepharanthine also potentiated daunomycin and vincristine (VCR) against HC-2-6 and HC-7-5 cells, and it almost completely overcame drug-resistance to daunomycin and vincristine in HC-7-5/VCR, a multidrug-resistant variant isolated after long exposure to vincristine of HC-7-5 cells in culture. The cellular accumulation of [3H]-daunomycin by HC-7-5 cells was about 70% that of HC-2-6 cells. By Northern blot analysis, using a multidrug-resistance gene (mdr-1) probe, neither HC-2-6 nor HC-7-5 expressed the mdr-1 gene, but HC-7-5/VCR or other multidrug-resistant variants showed active expression of the mdr-1 gene. Differential sensitivities among the five cell lines to 5-fluorouracil, cisplatinum, and bleomycin appear to be mediated through other mechanism beside the mdr-1 gene.

Alkaloids↗