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Biomedical subjects

H Tokuda

Publications and source records attributed to H Tokuda.

At least 181 records · Page 10Linked to original sources

Inhibition of 12-O-tetradecanoylphorbol-13-acetate promoted mouse skin papilloma by digalactosyl diacylglycerols from the fresh water cyanobacterium Phormidium tenue.

To search for possible antitumor-promoters, two digalactosyl diacylglycerols (DGDGs), which were obtained from the freshwater cyanobacterium Phormidium tenue and possessed a single pair of acyl residues, were evaluated for their inhibitory effects on the two-stage carcinogenesis test in mouse skin. Papillomas in mouse skin were initiated with 390 nmol of 7,12-O-dimethylbenz[a]anthracene and 1 week later, were promoted twice a week with 1.7 nmol of 12-O-tetradecanoylphorbol-13-acetate (TPA). Two DGDGs effectively inhibited tumor formation in the sensitive mouse stock even when these compounds were given 1 h before TPA treatment.

9,10-Dimethyl-1,2-benzanthracene↗

Inhibitory effect of iridoids on Epstein-Barr virus activation by a short-term in vitro assay for anti-tumor promoters.

The in vitro anti-tumor promoting effect of the methanolic extracts of iridoids containing three plants and several pure iridoids isolated from other plants, has been evaluated. The alcoholic extracts of Paederia scandens, P. scandens var. mairei and the Ayurvedic herbal remedy Picrorhiza kurrooa were tested against the Epstein-Barr virus. Among the 15 iridoids evaluated, the glycoside, paederoside, displayed the highest order of anti-tumor promoting activity.

Anticarcinogenic Agents↗

Inversion of the membrane topology of SecG coupled with SecA-dependent preprotein translocation.

E. coli preprotein translocase comprises SecA and SecY/E/G complex. SecA delivers the preprotein to the putative protein-conducting channel formed by SecY/E by undergoing ATP-driven cycles of membrane insertion and deinsertion. SecG renders the translocase highly efficient. An antibody raised against the C-terminal region of SecG inhibits preprotein translocation into everted membrane vesicles despite the exposure of this region to the inside of membrane vesicles in the absence of preprotein translocation. When preprotein translocation was started with ATP and then blocked by the inhibition of ATP hydrolysis, the C-terminal region was exposed to the outside of membrane vesicles. Another region of SecG showed a change in membrane sidedness upon preprotein translocation, indicating that SecG undergoes topology inversion. This topology inversion was tightly coupled to the SecG function and linked with the insertion-deinsertion cycle of SecA.

Adenosine Triphosphatases↗

Inhibition of protein serine/threonine phosphatases by fumonisin B1, a mycotoxin.

Fumonisin B1 (FB1), a mycotoxin produced by the fungus Fusarium moniliforme, which is a common contaminant of corn, is suspected to be a cause of human esophageal cancer. FB1 is hepatotoxic and hepatocarcinogenic in rats, and although the mechanisms involved have not been clarified, the latter is associated with a weak initiating activity. The effects of FB1 on the activity of protein serine/threonine phosphatases (PPs) (PP1, PP2A, PP2B, PP2C and PP5/T/K/H) were investigated in the present study. Inhibition of dephosphorylation was noted for all five PPs with IC50 values of 80 microM-3000 microM. Among the five PPs examined, PP5 was most sensitive with an IC50 of 80 microM. This concentration is comparable to that estimated to be reached in the rat body by feeding FB1 to obtain hepatic tumors. Inhibition of PP5 could thus play important roles in the toxicity and carcinogenic action of FB1.

Animals↗

Chemoprevention of lung and skin cancer by Beta vulgaris (beet) root extract.

The in vitro inhibitory effect of Beta vulgaris (beet) root extract on Epstein-Barr virus early antigen (EBV-EA) induction using Raji cells revealed a high order of activity compared to capsanthin, cranberry, red onion skin and short and long red bell peppers. An in vivo anti-tumor promoting activity evaluation against the mice skin and lung bioassays also revealed a significant tumor inhibitory effect. The combined findings suggest that beetroot ingestion can be one of the useful means to prevent cancer.

Animals↗

SecG plays a critical role in protein translocation in the absence of the proton motive force as well as at low temperature.

SecG is an integral membrane component of E. coli protein translocase. However, a discrepancy exists as to the importance of SecG for protein translocation at 37 degrees C between cells and reconstituted proteoliposomes; protein translocation in deltasecG cells is defective at 20 degrees C but normal at 37 degrees C, indicating that SecG is dispensable at 37 degrees C, whereas SecG remarkably stimulates protein translocation into reconstituted proteoliposomes at 37 degrees C. In this study, protein translocation into membrane vesicles containing or not containing SecG was examined in the presence and absence of the proton motive force at 37 degrees C and 20 degrees C. We found that the absence of the proton motive force renders protein translocation strongly dependent on SecG even at 37 degrees C. Protein translocation into proteoliposomes in the absence of the proton motive force thus required SecG whereas that in cells, which always generate the proton motive force, did not.

Bacterial Outer Membrane Proteins↗

Function of Ca2+ in phosphatidylcholine-hydrolyzing phospholipase D activation in osteoblast-like cells.

We investigated the function of Ca2+ in the activation of phosphatidylcholine (PC)-hydrolyzing phospholipase D (PLD) in osteoblast-like MC3T3-E1 cells. Fetal calf serum (FCS) stimulated the formation of choline in a dose-dependent manner in the range between 0.6% and 10%. The effect of a combination of FCS and 12-O-tetradecanoylphorbol-13-acetate, a protein kinase C (PKC) activator, on the formation of choline was additive. Staurosporine, an inhibitor of protein kinases, enhanced the formation of choline induced by FCS. BAPTA/AM, a chelator of intracellular Ca2+, inhibited the formation of choline induced by FCS. The depletion of extracellular Ca2+ by EGTA markedly reduced the FCS-induced formation of choline. SK&F 96365, an inhibitor of receptor-operated Ca2+ entry, significantly inhibited the choline formation induced by FCS. On the other hand, nifedipine, an inhibitor of L-type voltage-dependent Ca2+ channels, had little effect on the choline formation. TMB-8, an inhibitor of Ca2+ mobilization from intracellular Ca2+ store, significantly inhibited FCS-induced choline formation. These results strongly suggest that Ca2+ mobilization, through both the influx via receptor-operated Ca2+ channel and the release from intracellular Ca2+ store, plays an important role in the activation of PLD in osteoblast-like cells.

3T3 Cells↗

Roles of the conserved cytoplasmic region and non-conserved carboxy-terminal region of SecE in Escherichia coli protein translocase.

SecE, an essential membrane component of the Escherichia coli protein translocase, consists of 127 amino acid residues. Only a part of the second putative cytoplasmic region comprising some 13 residues is essential for the SecE function as long as the proper topological arrangement is retained. The Trp84 and Pro85 residues of this region are conserved in all eubacterial SecE homologues. The conservation of positively charged residues corresponding to Arg80 and Lys81 is also substantial. We deleted or replaced these residues to assess their roles in the SecE function. Deletion of the Arg80-Lys81 dipeptide did not abolish the SecE function whereas that of Trp84 or Pro85 caused a loss of the function. Strikingly, however, replacement of Pro85 with either Gly, Ser, or Ala, and that of Trp84 with Lys did not abolish the SecE function. These results indicate that the strong conservation of these residues does not reflect their obligatory requirement for the SecE function. A chimeric SecE possessing the cytoplasmic region of the E. coli SecE and the following region of the Bacillus subtilis SecE was able to form the translocation machinery together with SecA, SecY, and SecG. Although a Leu to Arg mutation at position 108 has been thought to cause a loss of signal recognition fidelity and thereby suppress a signal sequence defect, the same mutation at position 111 caused a complete loss of the function. The levels of SecY and SecG in the secEcsE501 mutant, which expresses SecE at a decreased level and is sensitive to low temperature, increased upon the expression of functional SecE derivatives, irrespective of the site of mutation, suggesting that the levels of SecY and SecG are co-operatively determined by the level of functional, but not non-functional, SecE. Based on these results, the SecE function in the translocase is discussed.

Adenosine Triphosphatases↗

Anti-tumor-promoting activities of triterpenoids from ferns. I.

To search for possible anti-tumor-promoters (cancer chemopreventive agents), we carried out primary screening of 23 triterpenoid hydrocarbons (1-23) isolated from ferns using an in vitro synergistic assay system. Of these triterpenoids, hop-17(21)-ene (2), neohop-13(18)-ene (3), neohop-12-ene (4), taraxerane (17), multiflor-9(11)-ene (18), multiflor-8-ene (19), glutin-5(10)-ene (21) and taraxastane (23) exhibited remarkable inhibitory effects on Epstein-Barr virus (EBV) activation induced by the tumor promoter, 12-O-tetradecanoylphorbol-13-acetate (TPA). Further, compounds 2 and 3 exhibited remarkable anti-tumorpromoting effects on mouse skin tumor promotion in an in vivo two-stage carcinogenesis test using 7,12-dimethybenz[a]anthracene (DMBA) as an initiator and TPA as a promoter.

Animals↗

Antitumor-promoting activities of various synthetic 1-O-acyl-3-O-(6'-O-acyl-beta-D-galactopyranosyl)-sn-glycerols related to natural product from freshwater cyanobacterium Anabaena flos-aquae f. flos-aquae.

1-O-Acyl-3-O-(6'-O-acyl-beta-D-galactopyranosyl)-sn-glycerol, which was isolated from a nitrogen-fixing fresh water cyanobacterium, Anabaena flos-aquae f. flos-aquae, was synthesized by utilizing lipase-catalyzed acylation. The antitumor-promoting activities of these galactolipids were evaluated using a short-term in vitro assay of Epstein-Barr virus activation in Raji cells induced by 12-O-tetradecanoyl- phorbol 13-acetate (TPA). The glyceroglycolipids which have a palmitoleoyl residue at the 1-O-position exhibited more potent activities than the others in this assay.

Anabaena↗

[A case of hepatocellular carcinoma responding to oral administration of 5'-DFUR].

A 65-year-old female patient with liver cirrhosis complicated with hepatocellular carcinoma (HCC) was treated with oral administration of 5'-DFUR (600 mg/day). The titer of serum alpha-fetoprotein gradually decreased, and reduction of the hepatic tumor size was observed by abdominal computed tomography (CT) following 5'-DFUR treatment. HCC was obviously diminished since the start of 5'-DFUR administration and almost disappeared in fifteen months. This case suggests the treatment with 5'-DFUR for hepatocellular carcinoma is completely effective.

Administration, Oral↗

[Examination of percutaneous minocycline hydrochloride injection therapy for hepatic cyst by one puncture method].

Minocycline hydrochloride (MINO) at a dose of 500 mg (in principle) was injected into each of 11 hepatic cysts/10 cases (mean maximum diameter: 12.6 cm) that exhibited symptoms or a tendency toward growth by percutaneous transhepatic one puncture method, and the relation between therapeutic efficacy and pH of cystic fluid was examined. The efficacy was evaluated by abdominal CT after 3 months, and when a shrink of 50% or more in the maximum diameter was observed, it was judged as marked response. Marked effect was observed in 9 lesions of 11 (82%). This MINO injection therapy by one puncture method is very safe, simple and useful. Reduction in intra-cystic pH was not always related to the therapeutic efficacy, so involvement of cytotoxicity of MINO was suggested in degenerating the cystic epithelial cells.

Adult↗

[A case of video-assisted thoracoscopic surgery for patent ductus arteriosus under transesophageal echocardiography].

A six-year-old boy with patent ductus arteriosus was successfully treated by thoracoscopic surgery under transesophageal echocardiography, by which interruption of the ductal flow was confirmed. Postoperative course was uneventful and the patient was discharged on the 3rd postoperative day. The transesophageal echocardiography was effective to confirm disappearance of the flow in the operating room real-time. Video-assisted endoscopic surgery have reduced operative trauma in adult thoracic and general surgery, and can be safely applied to pediatric patients with patent ductus arteriosus. This technique may be an effective addition to the staged management of more complex forms of congenital heart disease.

Child↗

Preferential interaction of Sec-G with Sec-E stabilizes an unstable Sec-E derivative in the Escherichia coli cytoplasmic membrane.

SecY, SecE and SecG form a membrane part of the protein translocation machinery. A SecG-overproducing plasmid was constructed by placing the secG gene under the control of the tac promoter. From the extent of SecG overproduction, the number of SecG molecules in one normal cell was estimated to be about 1,000, which is similar to those of SecY and SecE. Overproduction of SecG stabilized the overproduction of SecE-C, an unstable truncated derivative of SecE, as effectively as SecY does. SecG overproduction also stabilized the overproduction of SecY. However, the SecG-dependent stabilization of SecY was less potent than the SecE-dependent stabilization. These results indicate that SecG preferentially interacts with SecE, which associates with SecY, the SecG-SecE-SecY complex thus being formed in the cytoplasmic membrane.

Bacterial Proteins↗

Inhibitory effects of quassinoids on Epstein-Barr virus activation.

Short-term in vitro assays for tumor promoters and anti-tumor promoters (Epstein-Barr virus activation test) were carried out for 45 quassinoids. As a result, some quassinoids showed potent activity, more than 50% inhibition at a molar ratio of 1:1 (TPA/quassinoids). These results led to the following structure-activity relationships: (1) a methyleneoxy bridge and side chain enhance the activity and (2) a sugar moiety reduces the activity.

Antiviral Agents↗

A novel periplasmic carrier protein involved in the sorting and transport of Escherichia coli lipoproteins destined for the outer membrane.

Lipoproteins are localized in the outer or inner membrane of Escherichia coli, depending on the species of amino acid located next to the N-terminal fatty acylated Cys. The major outer membrane lipoprotein (Lpp) expressed in spheroplasts was, however, retained in the inner membrane as a mature form. A novel protein that is essential for the release of Lpp from the inner membrane was discovered in the periplasm and purified. The partial amino acid sequence of this 20 kDa protein (p20) was determined and used to clone a gene for p20. Sequencing of the gene revealed that p20 is synthesized as a precursor with a signal sequence. p20 formed a soluble complex only with outer membrane-directed lipoproteins such as Lpp, indicating that p20 plays a critical role in the sorting of lipoproteins. Lpp released from the inner membrane in the presence of p20 was specifically assembled into the outer membrane in vitro. These results indicate that p20 is a periplasmic carrier protein involved in the translocation of lipoproteins from the inner to the outer membrane.

Amino Acid Sequence↗

Overexpression of phosphatidylglycerophosphate synthase restores protein translocation in a secG deletion mutant of Escherichia coli at low temperature.

The E. coli secG deletion mutant is unable to grow and is defective in protein translocation at low temperature. A gene of Bacillus subtilis, which is able to restore the growth of the deletion mutant at low temperature, was found as a multi-copy suppressor. Sequencing of this gene revealed significant homology to E. coli pgsA, which encodes phosphatidylglycerophosphate synthase, an enzyme involved in acidic phospholipid synthesis. A plasmid carrying E. coli pgsA also restored the growth of the deletion mutant. Furthermore, protein translocation in the deletion mutant was stimulated when it harbored a plasmid carrying pgsA. A possible mechanism underlying the pgsA-dependent suppression of the secG deletion mutation is discussed.

Amino Acid Sequence↗

Glucocorticoid amplifies vasopressin-induced phosphoinositide hydrolysis in aortic smooth muscle cells.

It has been reported that glucocorticoid modifies phosphoinositide (PI) hydrolysis stimulated by vasoactive agents in vascular smooth muscle cells. In the present study, we investigated the point at which glucocorticoid affects vasopressin-induced PI hydrolysis in primary cultured rat aortic smooth muscle cells. The pretreatment with dexamethasone significantly amplified the formation of inositol trisphosphate (IP3) induced by vasopressin in a dose-dependent manner in a range of 1 pM to 10 nM. The effect of dexamethasone was dependent on the time of pretreatment up to 8 h. Dexamethasone had little effect on the number of vasopressin receptor and its affinity to vasopressin. The pretreatment with dexamethasone also amplified the formation of IP3 induced by NaF, a GTP-binding protein activator, or angiotensin II. 12-O-Tetradecanoylphorbol-13-acetate, a protein kinase C (PKC)-activating phorbol ester, significantly reduced the dexamethasone-induced enhancement of IP3 formation stimulated by vasopressin, angiotensin II or NaF 4 alpha-Phorbol-12, 13-didecanoate, a PKC-nonactivating phorbol ester, had little effect on the enhancement by dexamethasone. These results strongly suggest that glucocorticoid amplifies vasopressin-induced PI hydrolysis at a point downstream from GTP-binding protein in primary cultured rat aortic smooth muscle cells, and that the activation of PKC has a negative feedback effect on the amplification by glucocorticoid of vasopressin-induced PI hydrolysis.

Animals↗