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Biomedical subjects

H Osada

Publications and source records attributed to H Osada.

At least 127 records · Page 7Linked to original sources

Bronchial wall schwannoma removed by sleeve resection of the right stem bronchus without lung resection.

A 28-year-old man presented with a bronchial wall schwannoma occurring in the right main to the intermediate bronchus. The tumor was resected en-bloc with the stem bronchi without pulmonary resection. Airway reconstruction consisted of an end-to-end anastomosis of the intermedius bronchus to the right main bronchus, and an end-to-side anastomosis of the right upper lobe bronchus to the lateral wall of the trachea. Postoperative course was uneventful. Bronchoplastic procedure with preservation of the lung parenchyma seems to be the technique of choice for benign tumors occurring intramurally in the stem bronchus.

Adult↗

[MR cholangiography of congenital biliary malformations in infancy].

We presented MR cholangiography (MRC) of congenital biliary malformations in infancy. MRC was obtained during induced sleeping. In two cases of congenital dilation of bile duct, MRC revealed cystic or spindle dilatation of intra- and extra hepatic bile ducts. In one biliary atresia, MRC revealed the serpentine gall bladder and cystic dilatation of the extrahepatic bile duct without connection to the dilated hilar bile duct. MR cholangiography, which can be obtained noninvasively, is useful for the diagnosis and the preoperative assessment of congenital biliary malformations in infancy.

Bile Ducts↗

Induction of neurite outgrowth in PC12 cells by gamma-lactam-related compounds via Ras-MAP kinase signaling pathway independent mechanism.

Rat pheochromocytoma cells, PC12 cells, undergo differentiation in response to nerve growth factor (NGF). Although the Ras-MAP kinase signaling pathway has been shown to play a central role in the response to NGF, the precise mechanism which induces differentiation remains unclarified. Recently, several gamma-lactam-related microbial products were identified to induce neurite outgrowth in neuroblastoma cells. Therefore, we synthesized a series of gamma-lactam-related compounds and tested for their ability to induce neurite outgrowth in PC12 cells. We found that two compounds, MT-19 and MT-20, induced neurite outgrowth at concentrations as low as 1 microg/ml. MT-19 and MT-20 have an n-hexadecyl group and an n-dodecyl group, respectively, at the position N-1 of the gamma-lactam ring, and the modification of this group leads to partial or complete loss of activity. In addition, the modification of the methyl and hydroxyl group at C-5 leads to complete loss of activity, indicating a strict structure-activity relationship. Interestingly, MT-19 and MT-20 induced neurite outgrowth of PC12 cells which lack normal Ras function. Furthermore, these compounds did not induce MAP kinase activation, suggesting that MT-19 and MT-20 do not require the Ras-MAP kinase signaling pathway which is shown to be necessary and sufficient for NGF-induced neurite outgrowth. Consistent with this, none of the early- or late-response genes tested, which include fos, zif268, Nur77, vgf, and transin, was induced. However, the protein level of three neurofilaments was increased after the incubation with these compounds. Since the level of other cytoskeleton proteins including actin and tubulin remained constant, MT-19 and MT-20 specifically affected neurofilament synthesis and/or turnover. Taken together, these findings indicate that MT-19 and MT-20 induce neurite outgrowth by activating the downstream target of MAP kinase or by a novel mechanism which is distinct from the NGF-activated pathway.

Actins↗

Selective inhibition of platelet-derived growth factor (PDGF) receptor autophosphorylation and PDGF-mediated cellular events by a quinoline derivative.

This report describes the biological effects of our original compound, Ki6783 ((3,4-dimethoxy)-4-phenoxy-6,7-dimethoxyquinoline), a potent and selective inhibitor of platelet-derived growth factor (PDGF) receptor autophosphorylation. This compound strongly inhibited autophosphorylation of the PDGF beta-receptor in cultured rat glomerular mesangial cells (MC) bearing this receptor (IC50 0.1 microM), although it did not inhibit autophosphorylation of other growth factor receptors even at 100 microM. In a cell-free kinase experiment, it showed selective inhibition of PDGF beta-receptor tyrosine kinase. A kinetic study of the compound to this tyrosine kinase revealed a competitive mode of action to ATP. [3H]Thymidine incorporation and cell proliferation of MC were inhibited by Ki6783 in a dose-dependent manner after Ki6783 and PDGF-BB were added to the culture medium. Furthermore, this compound normalized the fibrotic cell shape of v-sis-transformed NIH3T3 cells, which grow in an autocrine manner via the PDGF receptor. These effects could be explained by the inhibition of intracellular signal transduction triggered by PDGF receptor autophosphorylation, in which activation of mitogen-activated protein kinase occurs. These results suggest that Ki6783 is one of the more potent and selective inhibitors of PDGF receptor autophosphorylation and that it may be useful in ameliorating cell abnormalities due to excess action of PDGF and its receptor systems in several diseases.

3T3 Cells↗

Specific activation of a c-Jun NH2-terminal kinase isoform and induction of neurite outgrowth in PC-12 cells by staurosporine.

Staurosporine, a protein kinase inhibitor, is known to mimic the effect of nerve growth factor (NGF) in promoting neurite outgrowth. To elucidate the mechanism by which staurosporine induces neurite outgrowth in PC-12 cells, we performed an in-gel kinase assay using myelin basic protein as a substrate, and found that staurosporine induced the activation of a kinase with an apparent molecular mass of 57 kDa. The dose of staurosporine required to activate this kinase was consistent with that required to induce neurite outgrowth. Interestingly, the staurosporine-activated kinase was immunoprecipitated by anti-c-Jun NH2-terminal kinase (JNK) isoforms antibody, but not by anti-JNK1-specific antibody or anti-ERK1 antibody, raising the possibility that this kinase is a novel JNK isoform. The substrate specificity of the kinase was distinct from those of osmotic shock-activated JNKs and NGF-activated ERK1. The kinase phosphorylates transcription factors including c-Jun, Elk-1, and ATF2, as well as myelin basic protein, suggesting that it plays a role in gene induction. Furthermore, staurosporine induced immediate-early genes including Nur77 and fos, but not jun. The activation of the staurosporine-activated kinase, as well as the induction of neurite outgrowth, did not require Ras function, while Ras was required for the activation of ERKs and neurite outgrowth induced by NGF. Taken together, these results indicate staurosporine specifically activates a JNK isoform, which may contribute to biological activities including neurite outgrowth.

Activating Transcription Factor 2↗

The LIM-only protein Lmo2 is a bridging molecule assembling an erythroid, DNA-binding complex which includes the TAL1, E47, GATA-1 and Ldb1/NLI proteins.

The LIM-only protein Lmo2, activated by chromosomal translocations in T-cell leukaemias, is normally expressed in haematopoiesis. It interacts with TAL1 and GATA-1 proteins, but the function of the interaction is unexplained. We now show that in erythroid cells Lmo2 forms a novel DNA-binding complex, with GATA-1, TAL1 and E2A, and the recently identified LIM-binding protein Ldb1/NLI. This oligomeric complex binds to a unique, bipartite DNA motif comprising an E-box, CAGGTG, followed approximately 9 bp downstream by a GATA site. In vivo assembly of the DNA-binding complex requires interaction of all five proteins and establishes a transcriptional transactivating complex. These data demonstrate one function for the LIM-binding protein Ldb1 and establish a function for the LIM-only protein Lmo2 as an obligatory component of an oligomeric, DNA-binding complex which may play a role in haematopoiesis.

Adaptor Proteins, Signal Transducing↗

Hypercoagulable state in a hypobaric, hypoxic environment causes non-bacterial thrombotic endocarditis in rats.

High-altitude hypoxia causes polycythaemia and a hypercoagulable state in humans and animals. This study examines the effects of a hypobaric, hypoxic environment (HHE) on the blood coagulation system in rats. A total of 170 male Wistar rats were housed in a chamber at the equivalent of 5500 m in altitude for 1-12 weeks. After 2 weeks of exposure to HHE, platelet counts decreased significantly; after 4 weeks, the prothrombin and activated partial thromboplastin times were significantly prolonged, compared with those of control rats. In addition, individual coagulation factors (VII, IX, X, XI, and XII) were significantly decreased at 8 weeks (P < 0.05). Levels of anti-thrombin III and alpha 2-plasmin inhibitor also decreased (between 4 and 8 weeks). After 4-12 weeks of exposure to HHE, 30 of 56 rats (54 per cent) developed (i) non-bacterial thrombotic endocarditis (NBTE) or (ii) infarction of the myocardium or kidney, or both (i) and (ii). The incidence of NBTE increased from 33 per cent (5/15 rats) at 4 weeks to 100 per cent (7/7 rats) at 12 weeks. Electron microscopy showed detached endothelial cells in the mitral valves at 1 week; platelets adhered to the subendocardial matrix and platelet aggregation with thrombus formation was seen at 2 weeks of exposure. The results suggest that exposure to HHE induces a hypercoagulable state and causes an NBTE in rats that may result in consumption coagulopathy.

Altitude Sickness↗

Screening of cell cycle inhibitors from microbial metabolites by a bioassay using a mouse cdc2 mutant cell line, tsFT210.

We have established a bioassay system using a mouse cdc2 mutant cell line, tsFT210, to detect inhibitors of the mammalian cell cycle. When cultured at the high temperature, restrictive temperature at 39.4 degrees C, tsFT210 cells can be arrested at G2 phase and are large in size. Four hours after release from G2 arrest, the cells entered into the G1 phase. At this time, G1 phase cells were easily discriminated from the G2/M-cells by their size under microscopic observation. The cell-morphology-based bioassay utilizing tsFT210 cells is very simple and sensitive for detecting cdc2 kinase inhibitors and also G2/M-phase inhibitors of the mammalian cell cycle. To demonstrate the merits of this bioassay, the effects of protein kinase inhibitors isolated from actinomycetes were investigated. RK-286C and RK-1409, which are structurally related to staurosporine, inhibited cell cycle progression at the G2 phase in both G2-synchronized and nonsynchronized cultures of tsFT210 cells. Another kinase inhibitor, sangivamycin, inhibited cell cycle progression at the G2 phase of cells released from temperature arrest but did not inhibit that of the exponentially growing cells. Using the bioassay system, we carried out screening of the cell cycle inhibitors from the microbial metabolites and have discovered several new inhibitors, including novel compounds such as tryprostatins A, B and acetophthalidin. Thus, this bioassay allowed for the detection of cell cycle inhibitors and provided a convenient and useful method for the screening of new inhibitors from the microbial metabolites.

Actinomycetales↗

Stevastelins, a novel group of immunosuppressants, inhibit dual-specificity protein phosphatases.

BACKGROUND: Since the molecular target of the immunosuppressive reagents FK506 and cyclosporin A was revealed to be protein phosphatase PP2B (calcineurin), many researchers have been screening the protein phosphatase inhibitors from microbial metabolites to develop new immunosuppressive reagents. We isolated stevastelin B, which is composed of valine, threonine, serine and 3,5-dihydroxy-2,4-dimethyl stearic acid, and stevastelin A, which is a sulphonylated derivative of stevastelin B. To understand the action mechanism of stevastelins A and B, we synthesized a series of stevastelin derivatives and investigated their structure-activity relationships. RESULTS: A series of stevastelin derivatives have been systematically synthesized. Stevastelin B inhibited gene expression that is dependent on interleukin-2 (IL-2) or IL-6 promoters in situ, but it had no inhibitory activity against any protein phosphatases in vitro. In contrast, stevastelin A, which is a sulphonylated derivative of stevastelin B, inhibited the phosphatase activity of a dual-specificity phosphatase, VH1-related human protein (VHR), in vitro, but it had no inhibitory activity against gene expression or cell-cycle progression in situ. CONCLUSIONS: Stevastelin B is a novel immunosuppressant. It inhibited IL-2 or IL-6 dependent gene expression but did not inhibit the phosphatase activity of calcineurin. The structure-activity relationships show that the acidic functional group on the threonine residue and the stearic acid moiety in the stevastelin molecule are important for inhibitory effects on the dephosphorylation activity of VHR in vitro. Stevastelin B might be sulphonylated or phosphorylated after incorporation into the target cell, and then it interacts with protein tyrosine phosphatases and regulates cell-cycle progression.

Anti-Bacterial Agents↗

RKS-1778, a new mammalian cell-cycle inhibitor and a key intermediate of the [11]cytochalasin group.

In the course of screening for the mammalian cell-cycle inhibitors, we have isolated a new [11]cytochalasin, RKS-1778 (1), and epoxycytochalasin H (2) from a fungus, Phoma sp. SNF-1778. The structure of 1 was determined to be 21-acetoxy-18-hydroxy-10-phenyl-5,6,16,18- tetramethyl[11]cytochalasa-6,13,19-trien-1-one, one the basis of spectroscopic methods, including 1H- and 13C-2D NMR techniques, RKS-1778 (1) may be a precursor of 2 and the key direct product of a proposed biosynthetic intramolecular Diels-Alder reaction. Both 1 and 2 completely arrested the cell-cycle progression of tsFT210 cells in the M phase at concentrations of 2.1 and 2.0 microM, respectively.

Animals↗

Molecular cloning of CISH, chromosome assignment to 3p21.3, and analysis of expression in fetal and adult tissues.

The murine cytokine inducible SH2-containing (Cis) protein gene (Cish) was recently cloned and shown to have a growth inhibitory function. We have isolated cDNAs coding for its human homologue (CISH) and assigned the gene to 3p21.3 by fluorescence in situ hybridization. Northern blot analysis showed CISH expression in various epithelial tissues including lung and kidney, in which tumors frequently exhibit 3p21.3 deletions.

Adult↗

Inhibitory action of reveromycin A on TGF-alpha-dependent growth of ovarian carcinoma BG-1 in vitro and in vivo.

The antitumor effect of reveromycin A (RM-A), an inhibitor of EGF-dependent cell proliferation on murine and human tumor cell lines, was examined in vitro and in vivo, RM-A showed little antitumor effect against three murine tumors tested, but showed strong antitumor effect (a minimum treated/control ratio of 36%) against a human ovarian carcinoma BG-1, which is known to be a transforming growth factor alpha (TGF-alpha)-secreting and estrogen receptor-expressing cell line. In BG-1 cells, RM-A inhibited the cell proliferation induced by TGF-alpha at the concentration range 30-300 nM, but did not inhibit the proliferation induced by 17 beta-estradiol (E2).RM-A is a possible new antitumor drug with a novel mechanism of action and may also be a useful tool for the analysis of epidermal growth factor receptor (EGFR)-mediated cell proliferation in tumor cells.

Animals↗

Altered transcriptional regulation of the insulin-like growth factor 2 gene in human hepatocellular carcinoma.

The insulin-like growth factor 2 (IGF2) gene is regulated in a complex manner, involving developmentally regulated use of four different promoters as well as transcriptional repression of the maternal allele due to genomic imprinting. It has been well documented that liver is an exceptional organ in which overall transcription from the four IGF2 promoters is markedly imbalanced towards preferential paternal expression only in fetal life, this being relaxed during the postnatal period, resulting in biallelic expression thereafter. We previously reported a marked allelic-expression imbalance in the overall transcription of IGF2 in hepatocellular carcinoma (HCC), leading to preferential expression nonrandomly from the paternal allele. The study presented here, using 18 HCC specimens taken directly from patients, showed that this molecular change often reflects promoters switching from the adult P1 promoter to the fetal P2, P3, and P4 promoters. Interestingly, however, we found that restoration of allele-specific expression of the P1 promoter nonrandomly from the paternal allele was also frequent in HCC suggesting retention of an imprint for paternal expression from the P1 promoter of IGF2 in adult normal liver and altered availability of its modifying factor or factors in HCC. Further studies of the molecular mechanisms involved in the fluctuation of promoter usage and genomic imprinting of IGF2 are warranted to gain an insight into the biology of the liver in terms of development and oncogenesis.

Adult↗

Chromosomal translocations and leukaemia: a role for LMO2 in T cell acute leukaemia, in transcription and in erythropoiesis.

The LMO2 gene associated with T cell acute leukaemia has been used as an example of a gene activated by association with the T cell receptor genes after chromosomal translocations. The gene is shown to encode a LIM protein which is involved in protein interactions and during normal haematopoiesis is necessary for erythroid development. LMO2 has been shown to cause tumours when aberrantly expressed and to be able to heterodimerise with TAL1 to facilitate tumour development.

Adaptor Proteins, Signal Transducing↗