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T Hosoi

Publications and source records attributed to T Hosoi.

At least 109 records · Page 6Linked to original sources

Porcine brain neurofilament-H tail domain kinase: its identification as cdk5/p26 complex and comparison with cdc2/cyclin B kinase.

Using dephosphorylated neurofilament (NF) proteins as substrates, the kinase with a higher activity for the dephosphorylated NF-H than the phosphorylated form of NF-H was searched for in the porcine brain extract. Most NF-H kinase activity in the brain extract pelleted with microtubules. The NF-H kinase purified from a high salt extract of the microtubule pellets was composed of cdk5 and a 26 kDa protein, a fragment of the 35 kDa regulatory subunit of cdk5. In contrast to the association of the active kinase with microtubules, each of uncomplexed cdk5 and the 35 kDa regulatory subunit was differently distributed in the supernatant fraction and the pellet, respectively, by ultracentrifugation of the brain extract. Dephosphorylated forms of NF-H and NF-M became reactive to antibodies recognizing in vivo phosphorylation sites (SMI31, 34, and 36, JJ31 and 51) by phosphorylation with cdk5/p26. cdk5/p26 showed similar enzymatic properties to p34cdc2/cyclin B kinase; the substrate specificity and inhibition by a p34cdc2 kinase specific inhibitor, butyrolactone I. However, p34cdc2/cyclin B kinase was distinguished from cdk5/p26 by its binding to p13suc1 protein and by its reactivity to anti-p34cdc2 antibodies. In spite of similar enzymatic properties of cdk5/p26 and p34cdc2/cyclin B kinase, cdk5/p26 did not display M-phase promoting activity when assayed with a cell-free system of Xenopus egg extract.

4-Butyrolactone↗

Demonstration of isoforms of the estrogen receptor in the bone tissues and in osteoblastic cells.

Expression of isoforms of estrogen receptor (ER) was examined in the bone tissues. Reverse transcriptase-polymerase chain reaction ((RT-PCR) using specific primers for rat ER cDNA was performed with total RNA from rat bone tissues. Then, we sequenced the amplified products after cloning and identified two isoforms of the ER and the wild-type ER. One of the ER mRNA isoforms did not have the region corresponding to exon 4 and the other isoform did not have the region corresponding to both exon 3 and exon 4. These isoforms were designated as ER delta 4 isoform and ER delta 3/4 isoform, respectively. The existence of these isoforms was also confirmed by ROS-17/2.8 osteoblastic osteosarcoma cells. Chloramphenicol acetyltransferase assay showed that these isoforms lost estrogen dependent transactivation activities. We suggest that the ER isoforms may play some roles in the bone metabolism in which estrogen is essential to maintain bone density.

Animals↗

Evidence for cdk5 as a major activity phosphorylating tau protein in porcine brain extract.

The major kinase capable of phosphorylating tau in a porcine brain extract was suggested to be a brain cdc2-like kinase, called cdk5. Tau protein components of microtubules assembled in the brain extract using ATP were phosphorylated to a higher level, and showed a slower electrophoretic mobility than those assembled with GTP. Most of this phosphorylation and electrophoretic mobility shift, that occurred in the brain extract incubated with ATP, were inhibited by butyrolactone I, a specific inhibitor of cdc2 kinase and cdk5. Further, butyrolactone I inhibited phosphorylation of tau exogenously added to the brain extract by approximately 70%. cdk5 purified from porcine brain decreased the electrophoretic mobility of dephosphorylated tau by in vitro phosphorylation of tau to the level present in microtubules polymerized with ATP. cdc2 kinase purified from starfish oocytes also phosphorylated tau and shifted its electrophoretic mobility to an extent greater than that obtained with cdk5. Western blot analysis showed that cdc2 kinase phosphorylated epitopes recognized by SMI31, 33, 34, and tau 1 antibodies in tau proteins , while cdk5 phosphorylated the site recognized by SMI33 (corresponding to phosphorylation at Ser235 in the longest human tau isoform) and partially phosphorylated the tau 1 site. Phosphorylation experiments performed on tau in brain extracts, in the presence of okadaic acid, suggested the presence of both okadaic acid-sensitive and -insensitive phosphatases acting on phosphorylated Ser235. Rat tau that was prepared immediately after decapitation showed a similar phosphorylation state to tau in microtubules polymerized with ATP, suggesting that tau is relatively phosphorylated in vivo.

4-Butyrolactone↗

Expression of immunoreactive and bioactive activin A protein in adult murine lung after bleomycin treatment.

Activin A is a homodimeric protein structurally and functionally related to transforming growth factor beta (TGF-beta), and the expression of activin A is modulated by TGF-beta. Here, we demonstrate the expression of activin A in normal and bleomycin (BLM)-treated murine lungs. ICR mice were treated with BLM intraperitoneally for 10 days, whereas saline vehicle was injected into control mice. Intra-alveolar fibrotic changes were observed in the lung tissue obtained from the mice at day 14 after the final BLM administration. Immunohistochemical studies using a polyclonal antibody to activin A revealed the presence of activin A in the bronchiolar epithelium and smooth muscle cells of veins in both control and BLM-treated mice. In the BLM-treated mice at days 7 and 14, the marked infiltration of immunoreactive alveolar macrophages was observed in the area of fibrotic changes. Bioactivity of activin A measured by erythroid differentiation factor assay in the conditioned medium of alveolar macrophages obtained from BLM-treated mice at day 14 was significantly increased. These findings indicate that alveolar macrophages are a potent source of activin A after BLM treatment. The present study demonstrates for the first time the abundant expression of activin A in murine lung tissues after BLM administration, suggesting that activin A may play a role in the pathogenesis of BLM-induced pulmonary fibrosis.

Activins↗

[Serum concentration of vitamin K in elderly women with involutional osteoporosis].

Oral administration of vitamin K was reported to increase bone mineral density. However, the possible role of vitamin K in the pathogenesis of osteoporosis still remains unclear. Therefore, we measured the serum concentration of vitamin K1 and K2 (menaquinone-4, 7, 8) in 24 elderly women with osteoporotic vertebral compression fracture and in 36 elderly women without fracture. Major forms of vitamin K present in sera in this study were vitamin K1 and menaquinone-7. On the other hand, serum menaquinone-4 and -8 were undetectable in most women. Serum concentration of menaquinone-7 was significantly lower in women with fracture than in those without fracture (3.29 +/- 3.63 ng/ml vs 6.26 +/- 5.62, mean +/- SD, respectively), while no difference was found in serum vitamin K1 concentration (0.837 +/- 0.620 ng/ml vs 0.820 +/- 0.686, respectively). There was no difference between both groups in background data such as age, body height, body weight, and body mass index, as well as serum level of calcium, inorganic phosphate, creatinine, albumin, and alkaline phosphatase. These results suggest the possibility that deficiency of vitamin K, particularly that of menaquinone-7, is one of the risk factors for developing osteoporosis.

Aged↗

[A case of pulmonary infiltration with eosinophilia (PIE) syndrome associated with syndrome of inappropriate secretion of ADH (SIADH) in the elderly patient].

A 76-year-old woman was admitted to our hospital because of productive cough, fever and anorexia in January 1995. She had suffered from bronchial asthma for 25 years. From 1983, exacerbation of PIE was recorded three times, on which occasions prednisolone and antibiotics were quite effective. On admission, marked leukocytosis (28,000/microliters) and eosinophilia (18,000/microliters) were found. However, plasma IgE level was normal, and specific antigen for eosinophilia was not detected by RAST or the skin allergic reaction test. Chest X-ray film and CT scan revealed extensive bilateral pulmonary infiltration. Increase in eosinophils (33%) was demonstrated in bronchoalveolar lavage. Furthermore, biopsy specimen of the affected lung revealed diffuse infiltration of eosinophils into alveolar septa. On the basis of these findings, the patient was diagnosed as chronic eosinophilic pneumonia (PIE syndrome). Hyponatremia (117 mEq/l) was persistent after the hydration with normal saline. Plasma ADH was not suppressed (2.29 pg/ml) in spite of hypoosmolality of plasma. Laboratory examination showed that renal, adrenal and thyroid function as well as plasma renin activity were normal. Taking these findings together, she was diagnosed as having SIADH. Treatment with prednisolone improved not only the PIE syndrome but also SIADH.

Aged↗

Demonstration of activin-A in arteriosclerotic lesions.

We previously reported that follistatin, an activin-binding protein, is produced in arteriosclerotic lesions. Here, the expression of activin-A which promotes the growth of vascular smooth muscle cells was examined in arteriosclerotic lesions of WHHL (Watanabe heritable hyperlipidemic) rabbits. Activin-A mRNA was detected in normal aorta by reverse transcriptase-polymerase chain reaction using specific primers for activin-A cDNA and was increased remarkably in arteriosclerotic lesions. In addition, using the cloned rabbit activin-A cDNA, RNA probe was prepared and in situ hybridization histochemistry was performed. Activin-A transcripts were detected abundantly in neointima of the diseased artery. Furthermore, immunohistochemistry also detected activin-A at the protein level. These observations suggest that activin-A is a cytokine expressed in arteriosclerotic lesions and might be involved in the pathogenesis of atherosclerosis.

Activins↗

Effects of 1 alpha,25-dihydroxyvitamin D3 on macrophage colony-stimulating factor production and proliferation of human monocytic cells.

1 alpha-25-Dihydroxyvitamin D3 [1 alpha,25(OH)2D3] stimulates the proliferation of human monocytes in vitro. In the present study, we investigated a possible role of macrophage colony-stimulating factor (M-CSF) in 1 alpha,25(OH)2D3-induced proliferation of human circulating monocytes and the effects of 1 alpha,25(OH)2D3 on M-CSF production by human monocytic cells. Both 1 alpha,25(OH)2D3 and recombinant human M-CSF increased 2.5-fold the nucleus number of human circulating monocytes on day 6 of the culture. These effects were inhibited by antihuman M-CSF antibody as well as by anti-c-fms antibody, although these antibodies themselves did not affect the nucleus number when added to control culture. These results indicated that M-CSF is required for 1 alpha,25(OH)2D3-stimulated monocyte proliferation. In addition, 1 alpha,25(OH)2D3 stimulated M-CSF secretion from human circulating monocytes. Secretion and mRNA expression of M-CSF by 12-0-tetradecanoylphorbol-13-acetate (TPA)-treated THP-1 cells (human monocytic leukemia cell line) and TPA-treated HL-60 cells (human promyelocytic leukemia cell line) were also increased by 1 alpha,25(OH)2D3. M-CSF secretion from TPA-treated THP-1 cells was increased by 1 alpha,25(OH)2D3 in a dose-dependent and metabolite-specific manner. The present study demonstrates that 1 alpha,25(OH)2D3 is a potent stimulator for M-CSF production by human monocytic cells and that the proliferative effect of 1 alpha,25(OH)2D3 on human monocytes may be attributed, at least in part, to the stimulated secretion of M-CSF.

Blotting, Northern↗

Immunocytochemical identification of androgen receptor in mouse osteoclast-like multinucleated cells.

Expression of androgen receptor (AR) in mouse osteoclast-like multi-nucleated cells (OCs) was examined with immunocytochemical techniques. Murine OCs were obtained by co-culturing mouse osteoblastic cells and bone marrow cells. Three preparations of polyclonal anti-AR antibody which were raised in rabbit against different parts of the human AR were employed for the experiments. Specific staining for AR was demonstrated in the nuclei and the perinuclear area of mouse OCs. This is the first report demonstrating the presence of AR in osteoclast-like cells.

Animals↗

Localization of follistatin, an activin-binding protein, in bone tissues.

We have previously reported that activin-A has a mitogenic effect on osteoblast-like MC3T3-E1 cells and that these cells produce an activin-binding protein, follistatin (Hashimoto, M., Shoda, A., Inoue, S., Yamada, R., Kondo, T., Sakurai, T., Ueno. N., and Muramatsu, M. (1992) J. Biol. Chem. 267, 4999-5004). Activin-A was also detected abundantly in bone matrix tissues and was found to act as an osteoclast differentiation factor. Here, we studied the expression of follistatin in bone tissues by in situ hybridization with a follistatin cRNA probe. Follistatin transcript was detected in the osteoblasts and a fraction of osteocyte population in the developing mouse mandible. Immunohistochemistry using anti-follistatin antibody supported this observation at the protein level. Follistatin mRNA was also detected in the callus of repairing bone after fracture. These findings suggest that activin and follistatin may play significant roles in the bone system in vivo.

Animals↗

Immunohistochemical and in situ hybridisation detection of adenovirus early region 1A (E1A) gene in the microglia of human brain tissue.

To investigate whether brain tissue is infected latently by adenovirus via a monocyte/microglia-mediated entry mechanism, brain tissue resected at necropsy from seven senile subjects (five with senile dementia of Alzheimer type (SDAT) and two subjects without pathological changes) was examined for adenovirus early region 1A (E1A) gene and its expression using in situ hybridisation and immunohistochemical staining. HLA-DR positive, reactive microglial cells in both SDAT and normal brain tissue showed positive hybridisation and immunoreactive expression of adenovirus E1A. Thus there may be monocyte/microglia-mediated entry of adenovirus in the central nervous system which would be a novel and presumably common interaction between brain tissue and adenovirus.

Adenoviridae↗

Cell cycle-dependent expression of estrogen receptor and effect of estrogen on proliferation of synchronized human osteoblast-like osteosarcoma cells.

Dual fluoroimmunohistochemical staining of estrogen receptor (ER) and bromodeoxyuridine was performed in a human osteoblastic osteosarcoma cell line, HOS TE85 cells. ER immunoreactivity was observed preferentially in the nuclei of the cells that were bromodeoxyuridine positive. ER expression at various phases of the cell cycle was investigated in HOS TE85 cells, which were synchronized at the G1/S phase boundary by intermittent exposure to thymidine and hydroxyurea. ER immunoreactivity became detectable in the S phase, decreased in the G2/M and G1 phases, and then reappeared in the S phase of the next cell cycle. Western blot analysis also showed that ER protein exists in these cells and increases in the S phase. Moreover, Northern blot analysis demonstrated that the expression of ER messenger RNA increases in the early S phase, gradually decreases during the progress of the cell cycle, and increases again in the S phase of the subsequent cell cycle. Interestingly, 17 beta-estradiol (10(-8) M) increased cell number and [3H]thymidine incorporation into DNA in the synchronized HOS TE85 cells, whereas this effect was not observed in the nonsynchronized HOS TE85 cells. The present studies suggest that the cell cycle-dependent regulation may contribute to the heterogeneity of ER expression in osteoblastic cells.

Animals↗

Genomic binding-site cloning reveals an estrogen-responsive gene that encodes a RING finger protein.

Estrogen receptor (ER)-binding fragments were isolated from human genomic DNA by using a recombinant ER protein. Using one of these fragments as a probe, we have identified an estrogen-responsive gene that encodes a putative zinc finger protein. It has a RING finger motif present in a family of apparent DNA-binding proteins and is designated estrogen-responsive finger protein (efp). efp cDNA contains a consensus estrogen-responsive element at the 3' untranslated region that can act as a downstream estrogen-dependent enhancer. Moreover, efp is regulated by estrogen as demonstrated at both the mRNA and the protein level in ER-positive cells derived from mammary gland. These data suggest that efp may represent an estrogen-responsive transcription factor that mediates phenotypic expression of the diverse estrogen action. Thus, the genomic binding-site cloning may be applicable for isolation of the target genes of other transcription factors.

Amino Acid Sequence↗

Vascular smooth muscle cells as target for estrogen.

ER mRNA was detected as 6.0 kb band by Northern blot analysis in vascular smooth muscle cells (VSMC) derived from rat aorta. The presence of ER mRNA in VSMC was confirmed by reverse transcriptase-polymerase chain reaction using specific primers for rat ER cDNA. In addition, the immunocytochemistry of ER was performed in VSMC using a monoclonal anti-ER antibody which recognizes DNA-binding domain of ER. The immunoreactivity was distributed in the cytoplasm as well as in the nuclei. Thus, the expression of ER in VSMC was demonstrated at both the protein and the mRNA level. Furthermore, the expression of c-fos mRNA in VSMC was found up-regulated by 17 beta-estradiol treatment within 30 min. The observation that VSMC possess ER and respond to estrogen supports the idea that estrogen may directly influence vascular cell system through the ER.

Animals↗

Immunohistochemical detection and northern blot analysis of estrogen receptor in osteoblastic cells.

Expression of estrogen receptor (ER) was studied in MC3T3-E1 cells (mouse osteoblastic cell line), HOS TE85 cells (human osteosarcoma cell line), and primary osteoblastic cells derived from mouse calvaria with immunohistochemical techniques. The staining of ER was readily detectable in MC3T3-E1 cells, HOS TE85 cells, and primary osteoblastic cells by using a monoclonal anti-ER antibody that recognizes the DNA binding domain of ER. The immunoreactivity was distributed in the cytoplasm as well as in the nuclei. 17 beta-Estradiol (10(-8) M) did not alter this staining pattern. The expression of ER was confirmed by Northern blot analysis using rat ER cDNA probe, which revealed a 6.5 kb band in MC3T3-E1 cells and a 6.2 kb band in HOS TE85 cells. The mRNA level of ER was not altered by 17 beta-estradiol (10(-8) M). The immunohistochemical studies showed that ER was not detectable in all cells but in a small population of each cell type. This study is the first report to demonstrate the presence of ER immunohistochemically, and our results suggest the heterogeneity of ER expression among osteoblastic cells.

3T3 Cells↗

Effects of estrogen replacement on insulin-like growth factor I concentrations in serum and bone tissue and on interleukin 1 secretion from spleen macrophages in oophorectomized rats.

Oophorectomy (OOX) has been known to increase bone turnover, but its precise mechanism is not fully understood. In order to further investigate the mechanism, we determined insulinlike growth factor I (IGF-I) concentrations in serum and bone tissue and interleukin 1 (IL-1) release from spleen macrophages in oophorectomized rats because it has been demonstrated that IGF-I stimulates bone formation and IL-1 stimulates bone resorption. Female 8-week-old Wistar rats were divided into four groups: (1) control, (2) OOX, (3) OOX given estradiol, and (4) control given estradiol. Ten micrograms/kg of 17 beta-estradiol was given daily by subcutaneous injection. After 5 weeks of treatment, IGF-I concentrations in the extract from right femur and in serum were determined by specific radioimmunoassay. IL-1 activity released from lipopolysaccharide (LPS)-stimulated spleen macrophages was determined by bioassay. IGF-I contents in the femur and IGF-I concentrations in serum in oophorectomized rats were significantly higher than those in control rats. Treatment by estradiol inhibited the increase in IGF-I concentrations both in femur and in serum. IL-1 release from LPS-stimulated spleen macrophages in oophorectomized rats was increased, and treatment by estradiol also inhibited the stimulated IL-1 release. The ash weights and the calcium contents of left femur in oophorectomized rats were lower than those in control rats. These results suggest that both IGF-I and IL-1 may be involved in the mechanism of the regulation of bone turnover in oophorectomized rats.

Animals↗

Expression of follistatin, an activin-binding protein, in vascular smooth muscle cells and arteriosclerotic lesions.

Activin-A has a mitogenic effect on vascular smooth muscle cells (SMCs) and is produced by monocyte/macrophage lineage cells. Here, we studied the expression of follistatin, an activin-binding protein, in both A10 cells, a rat aortic SMC line, and vascular SMCs derived from adult rat aorta. Follistatin mRNA was detected in these cells by Northern blot analysis. Ligand blot and immunoblot analyses demonstrated that follistatin was produced in the conditioned medium at a higher level by A10 cells than by SMCs. Furthermore, immunostaining and in situ hybridization of the arteriosclerotic lesions showed that follistatin was highly expressed in the diseased artery, where abnormal proliferation of SMCs occurred. We suggest that follistatin is produced by vascular SMCs and is involved in the course of atherogenesis.

Activins↗