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A Shirahata

Publications and source records attributed to A Shirahata.

At least 19 recordsLinked to original sources

Structural specificity effects of trivalent polyamine analogues on the stabilization and conformational plasticity of triplex DNA.

Natural polyamines, i.e. putrescine, spermidine and spermine, are excellent promoters of triplex DNA. Using melting temperature (Tm) measurements and CD spectroscopy, we found that structural alterations on spermidine backbone, including methylation, or acetylation at the N1-, N4- and/or N8-positions had a profound influence on the stability and conformation of poly(dA).2poly(dT) triplex. The conformation of the polynucleotide complex underwent sequential changes from B-DNA to triplex DNA as the concentration of spermidine increased from 0 to 50 microM in a buffer containing 10 mM sodium cacodylate and 1 mM EDTA (pH 7.2). At 60 microM spermidine, the CD spectrum of triplex DNA was comparable with that of psi-DNA, with a strong positive band centred around 260 nm. A negative band was also found at 295 nm. At higher concentrations of spermidine, however, the intensity of the positive band progressively decreased and the peak intensity was found at a 1:0.3 molar ratio of DNA phosphate:spermidine. Temperature-dependent CD analysis showed that the psi-DNA structure melted to single-stranded DNA at temperatures above the Tm determined from the absorbance versus temperature profile. Comparable effects were exerted on the conformation of triplex DNA by Co(NH3)6(3+), an inorganic trivalent cation. Substitution of the N4-hydrogen of spermidine by a cyclohexyl ring or the fusion of the N4-nitrogen in a cyclic ring system, as in piperidine, enhanced the ability of spermidine analogues to stabilize triplex and psi-DNA forms over a wider concentration range compared with spermidine. These data demonstrate a differential effect of trivalent cations in stabilizing triplex DNA and provoking unusual conformations such as psi-DNA. Synthetic homologues of spermidine that stabilize triplex DNA over a wider range of concentrations than that stabilized by spermidine itself might have potential therapeutic applications in the development of an anti-gene strategy against several diseases, including cancer and AIDS.

DNA

Comprehensive care for hemophiliacs--activities of North Kyushu Hemophilia Center at the University Hospital of Occupational and Environmental Health, Japan.

One of our objectives in establishing the Hemophilia Center was to create a model of a total care system for chronic diseases which develop in the childhood and continue through adulthood. We also believe that the comprehensive medical care system should be introduced not only for the care of hemophiliacs but also for those with every chronic refractory disease. It may be a surprise that in a university hospital, which is likely to lack cooperation between departments, this kind of cross sectional support system, even extending to activities outside the hospital, has been continued. This success owes much to the understanding and consideration by successive Directors of the Hospital and the Professors (Directors) of every department, the enthusiastic efforts by members of the Center who have continued their volunteer work for the purpose of improving the QOL of patients, and the cooperation by students of the Volunteer Study Club. We also have to mention the advice and guidance by Dr. Minoru Inagaki (now at the National Children's Hospital) who established the first substantial hemophilia center in Ogikubo Hospital, and Dr. Kaneo Yamada, present Visiting Professor in the Faculty of Medicine, St. Marianna University. We would like to thank every one who has supported the activities of the Center. Finally, we strongly hope that this total care system will become popular among those responsible for caring of patients with other chronic refractory diseases.

Adolescent

Determination of covalently bound hypusine and deoxyhypusine to protein using submilligram of protein samples by HPLC.

A sensitive and reliable method for the determination of hypusine and deoxyhypusine in eIF-5A protein, an initiation factor of protein synthesis, was developed. An advantage of this method is the use of N epsilon-(5-aminopentyl)lysine, an analogue of deoxyhypusine, as an internal standard. The application made it possible to determine hypusine in less than a mg of protein samples from cultured HTC cells and rat organs. After acid hydrolysis of protein samples to which had been added the internal standard, the hydrolysates were fractionated by carboxymethyl cellulose column chromatography. Also, diamine fractions containing a few pmol of hypusine and deoxyhypusine were successfully analyzed by a reversed phase HPLC with a fluorescence detection of o-phthalaldehyde. The method was applied for the determination of hypusine and deoxyhypusine in drug-treated HTC cells and normal rat organs. The results from HTC cells were discussed based on the known effects of each drug on hypusine biosynthesis.

Animals

The association of the platelet count and the peripheral CD8+ cell count in Japanese HIV-infected hemophiliacs.

To determine the factors involved in the pathogenesis of thrombocytopenia frequently found in human immuno-deficiency virus (HIV) infection, we studied the clinical and laboratory findings of 35 Japanese HIV-infected hemophiliacs regarding their association with thrombocytopenia. Seventeen HIV-positive patients were thrombocytopenic. They had fewer CD4+ cells and were in more advanced stages of the disease, compared with the 18 patients without thrombocytopenia. We carried out the stepwise regression analysis on 32 patients in the early stage of HIV infection, with the platelet count as the dependent variable, and with the CD8+ cell count, serum cholinesterase, alanine aminotransferase (ALT), CD4+ cell count and white blood cell count as explanatory variables. The CD8+ cell count, serum cholinesterase, and ALT were entered into the regression model as explanatory variables of the platelet count with statistical significance. A positive linear correlation in these 32 patients between the CD8+ cell count and platelet count (r = 0.50, P < 0.01) was noted. We conclude that the decrease of the CD8+ cell count may play a role in the pathogenesis of thrombocytopenia in Japanese hemophiliacs in the early stage of HIV-infection.

Adult

Inhibition of the growth of various human and mouse tumor cells by 1,15-bis(ethylamino)-4,8,12-triazapentadecane.

Effects of 1,15-bis(ethylamino)-4,8,12-triazapentadecane (BE3333), the least toxic bis(ethyl)pentaamine, on the growth of tumor cells were studied in in vitro systems and with tumor xenografts in mice. BE3333 suppressed ornithine decarboxylase and S-adenosylmethionine decarboxylase, induced spermidine/spermine N1-acetyltransferase, and thus decreased the amount of polyamines. BE3333 accumulated in cells at a concentration 3-5-fold that of spermine in control cells through the polyamine transport system. The accumulated BE3333 inhibited protein synthesis, especially mitochondrial protein synthesis, and decreased the amount of ATP. The inhibition of protein synthesis was correlated with the subsequent inhibition of cell growth. BE3333 showed inhibitory effects in in vitro systems against the growth of mouse FM3A mammary carcinoma cells, human SW480 and SW620 colon tumor cells, Lu-65A and A549 lung tumor cells, MCF-7 breast tumor cells, and MALME-3M and A375 melanoma cells at a range of 0.5-10 microM. Intravenous (30 mg/kg) or i.p. (50 mg/kg) daily injections of BE3333 for 5 or 7 days greatly suppressed the growth of human colon tumor SW620 xenotransplanted into nude mice. Similar antitumor activity was obtained with continuous infusion of BE3333 into the peritoneal cavity (80 mg/kg), but not with p.o. administration (200 mg/kg). BE3333 also showed inhibitory effects against the growth of lung tumors (Lu-65, Lx-1, Lc-1, and Lu-61), stomach tumors (Sc-6 and St-15), and melanoma (SEKI) xenotransplanted into nude mice. The results indicate that BE3333 is effective against both rapid- and slow-growing tumors, with reasonable short-term host toxicity.

Acetyltransferases

Search for novel ligands selective at a polyamine recognition domain on the N-methyl-D-aspartate receptor complex using membrane binding techniques.

Among over 60 polyamine derivatives tested, only N-(3-aminopropyl)octanediamine and bis-(3-aminopropyl)nonanediamine (TE393) markedly inhibited [3H](+)-5-methyl-10,11-dihydro-5H-dibenzo[a,d]cyclohepten-5,10-imi ne (MK-801) binding at equilibrium in the presence of added spermidine (SPD) in "non-washed" rat brain synaptic membranes, without affecting that in the absence of added SPD. Although TE393 significantly potentiated [3H]MK-801 binding before equilibrium in the presence of L-glutamic acid (Glu) alone or both Glu and glycine (Gly) added in "Triton-treated" membranes, the putative polyamine antagonists 1,10-decanediamine (DA10) and arcaine invariably inhibited binding irrespective of the addition of agonists. In the absence of added SPD, in addition, TE393 markedly enhanced abilities of both Glu and Gly to potentiate [3H]MK-801 binding before equilibrium. However, TE393 induced a rightward shift of the concentration-response curve of SPD for [3H]MK-801 binding before equilibrium. Moreover, TE393 was effective in potentiating binding of an antagonist but not an agonist radioligand to the NMDA domain and in inhibiting binding of an antagonist but not an agonist radioligand to the Gly domain. The potentiation of NMDA antagonist binding by TE393 occurred in a manner sensitive to prevention by arcaine but not by DA10. These results suggest that TE393 may be a novel ligand at the polyamine domain with an ability to interact with both the NMDA and Gly recognition domains in antagonist-preferring forms.

Animals

Specific depletion of spermidine and spermine in HTC cells treated with inhibitors of aminopropyltransferases.

The effects of a potent spermidine synthase inhibitor, trans-4-methylcyclohexylamine (4MCHA), and a spermine synthase inhibitor, N-(3-aminopropyl)cyclohexylamine (APCHA), on polyamine biosynthesis and cell growth have been studied in rat hepatoma cells (HTC cells) in culture. Treatment of HTC cells with 4MCHA or APCHA caused a marked decrease of spermidine or spermine with a compensatory increase of putrescine and spermine or spermidine, respectively, in a dose-dependent manner, suggesting specific and potent inhibition of each target enzyme. When 250 microM 4MCHA or APCHA was administered to the cells for 8 days, spermidine was decreased to 2% of control culture or spermine below 1%, respectively, while total polyamine (sum of putrescine, spermidine, and spermine) remained almost unchanged during the culture. There were no significant changes in the growth rate during treatment with the inhibitors at 250 microM concentration. The results suggest that in the growth of HTC cells, putrescine and spermine can be substituted for most of the fraction of cellular spermidine, and spermidine for most of the fraction of cellular spermine. Of five enzymatic activities involved in polyamine biosynthesis and interconversion, S-adenosylmethionine decarboxylase activity increased 8-fold with 250 microM 4MCHA, and 3-fold with 250 microM APCHA during the treatment. This increase was partially due to the increase of half-life of the enzyme. Separate roles for spermidine and spermine in the biosynthesis of the enzyme protein were also suggested.

Acetyltransferases

Inhibition of cell growth by combination of alpha-difluoromethylornithine and an inhibitor of spermine synthase.

The inhibitory effect on cell growth of a combination of alpha-difluoromethylornithine (DFMO) and an inhibitor of aminopropyl transferase was examined. N-(3-aminopropyl)cyclohexylamine (APCHA) and trans-4-methylcyclohexylamine (4MCHA) were used as inhibitors of spermine and spermidine synthases, respectively. Combination of DFMO and APCHA showed strong inhibitory effects on the growth of FM3A cultured cells and P388 leukemia cells in mice, compared with DFMO alone. The prolongation of survival time of P388 leukemia-bearing mice by DFMO (1,500 mg/kg) was 1.12-fold, while that by DFMO (1,500 mg/kg) plus APCHA (25 mg/kg) was 1.30-fold. The prolongation of survival time nearly paralleled the decrease of P388 leukemia cells in mice. However, the antiproliferative effect of DFMO was not strengthened by 4MCHA in the above two experimental systems. In the FM3A cell culture system, both putrescine and spermidine contents were decreased by DFMO, but spermine content did not decrease significantly. When APCHA was added to the medium with DFMO, spermine content was decreased greatly but a compensatory increase in spermidine was observed. Spermidine content in P388 leukemia cells was also decreased by DFMO, the increase in spermine was suppressed but a compensatory increase in spermidine was observed. Nevertheless, the spermidine content remained significantly low compared with the value in non-treated P388 leukemia cells. Thus, the results indicate that the antiproliferative effect of DFMO was strengthened by APCHA due to the decrease in spermine content, and that the decrease in total amount of spermidine and spermine, especially the decrease in spermine, is necessary for inhibition of cell growth.

Animals

Enzymatic aminopropylation of certain secondary amines.

Two unusual aminopropyl acceptors found in a survey of putrescine binding sites of mammalian spermidine synthase, N-methylputrescine (I) and 4-aminomethylpiperidine (II), were examined for their aminopropyl derivatives. Studies under in vitro incubation conditions suggested that the aminopropyl derivatives of the secondary amine of I and II, N4-methylspermidine (Is) and 1-N-(3-aminopropyl)-4-aminomethylpiperidine (IIs), and of the primary amine of I and II, N8-methylspermidine (Ip) and 4-[N-(3-aminopropyl)aminomethyl]piperidine (IIp), respectively, were biosynthesized by rat spermidine synthase. Studies on the cell culture system of cultured rat hepatoma (HTC) cells treated with alpha-difluoromethylornithine, an ornithine decarboxylase inhibitor, clearly showed the presence of Is and Ip when I was administered, and IIs and IIp when II was administered, with no detection of putrescine or spermidine. These results suggested that mammalian spermidine synthase can transfer the aminopropyl moiety of decarboxylated S-adenosylmethionine to certain secondary amines in living cells.

Animals

Structural requirement for neurotrophic activity of spermine in cultured rat hippocampal neurons.

We investigated the structure-activity relationship for the neurotrophic activity of spermine by comparing the effects of several synthetic spermine analogues on the survival of cultured rat hippocampal neurons. N,N'-bis(3-aminopropyl)-1,6-hexanediamine and N,N'-bis(3-aminopropyl)-1,3-propanediamine did not promote the neuronal survival, suggesting that the central butanediamine structure is essential for the neurotrophic activity. Furthermore, N1,N12-bis(ethyl)spermine significantly promoted the neuron survival, but its maximum effect was smaller than that of spermine, indicating that two terminal primary amines are required for full agonist activity. The structural requirement for the neurotrophic activity of spermine was different from those for any other reported activities of polyamines.

Animals

Antagonistic effect of N-(3-Aminopropyl)cyclohexylamine on neurotrophic action of spermine in primary cultured rat hippocampal and cerebellar neurons.

We previously found that spermine potently promotes the neuronal survival and regeneration of primary cultured brain neurons. N-(3-Aminopropyl)cyclohexylamine (APCHA) was originally developed as a spermine synthase inhibitor. To test if endogenous spermine biosynthesis contributes to neuronal survival and morphogenesis, we examined the effects of APCHA in primary cultured rat hippocampal and cerebellar neurons. APCHA at concentrations up to 10(-6) M did not affect the neuronal survival, but significantly blocked the survival-promoting effect of spermine (10(-8) M). APCHA also blocked the spermine-induced promotion of neurite regeneration following axotomy. Unlike APCHA, another cyclohexylamine derivative trans-4-methylcyclohexylamine did not affect the neurotrophic effect of spermine. These results suggest that in primary cultured brain neurons, APCHA works as a spermine antagonist rather than as a spermine synthesis inhibitor.

Animals

Transforming growth factor beta 1 and beta 2 induce down-modulation of thrombomodulin in human umbilical vein endothelial cells.

To investigate the effects of transforming growth factor-betas (TGF-betas) on endothelial anticoagulant activity, we assayed thrombomodulin (TM) activity and antigen levels of human umbilical vein endothelial cells (HUVECs) incubated with TGF-betas in vitro. TGF-beta 1 suppressed surface TM activity and surface TM antigen levels maximally 12 h after incubation in dose-dependent manners. TGF-beta 2 was almost equipotent with TGF-beta 1 for the suppression of them. Both TGF-betas suppressed total TM antigen level in HUVECs, and the time course of the suppression was similar to that of the cell surface TM antigen level. The maximal reductions of TM mRNA levels by TGF-betas were observed at several hours ahead of those observed in both surface and total TM antigens levels, suggesting that the TGF-beta-mediated suppression of TM antigen of HUVECs is primarily regulated at the TM mRNA level. Our present work suggests that the down-modulation of TM level induced by TGF-betas in HUVECs contributes in vivo to promoting the thrombogenesis either at the sites of injury of vessel walls, such as atherosclerotic lesions where TGF-beta 1 is released from platelets, smooth muscle cells and monocytes, or at neovascular walls in tumors secreting TGF-beta 2.

Cells, Cultured

[Hand-mirror cells acute lymphoblastic leukemia (L3)].

To our knowledge, this report represents the first confirmed case in Japan of a 15-year-old boy with acute lymphoblastic leukemia (ALL).L3 with hand-mirror cells (HMC) in the bone marrow. HMC lymphoid leukemia is an unusual variant of ALL in which the bone marrow lymphoblasts manifest distinctive hand-mirror morphologic features. HMC lymphoblast is characterized by an asymmetric foot-like cytoplasmic process that extends from the portion of the cell, thus giving it the light-microscopic appearance responsible for its name. Besides ALL, HMC has been reported in acute myeloblastic leukemia (AML), blastic crisis of chronic myelogenous leukemia, non-Hodgkin's lymphoma, and infectious mononucleosis. HMC has been reported to be prevalent in ALL.L1 and L2 as compared with L3.

Adolescent

[Vitamin K].

Explore the source record for details and available documents.

Humans

N-(3-aminopropyl)-cyclohexylamine blocks facilitation by spermidine of N-methyl-DL-aspartate-induced seizure in mice in vivo.

The facilitating or antagonizing effects of polyamine analogues on N-methyl-DL-aspartate (NMDLA)-induced seizures were investigated using mice. Intracerebroventricular injection of spermidine and spermine, but not putrescine, shortened the latency to appearance of clonic convulsion induced by subcutaneous administration of NMDLA. Injection of N-(3-aminopropyl)cyclohexylamine (APCHA) alone did not affect the NMDLA-induced seizure. However, APCHA, when administered together with spermidine, clearly antagonized the facilitating effect of spermidine on the NMDLA-induced seizure. Another cyclohexylamine derivative, trans-4-methylcyclohexylamine, did not block the effect of spermidine. APCHA also antagonized the facilitation by D-serine of NMDLA-induced seizure, although the blocking effect for D-serine was weaker than that for spermidine. APCHA should be useful as a new tool for pharmacological studies on the neuromodulatory action of polyamines.

Animals

Correlation between the inhibition of cell growth by bis(ethyl)polyamine analogues and the decrease in the function of mitochondria.

The antiproliferating effect of nine kinds of bis(ethyl)polyamine analogues [three kinds each of bis(ethyl)triamine, bis(ethyl)tetraamine and bis(ethyl)pentaamine] was compared using FM3A cells. The inhibitory effect was in the order BE4444 > BE3443 > BE4334 > or = BE444 > BE343 > BE333 > BE44 > BE34 > BE33. Our results indicate that not only polyamine deficiency but also the accumulation of polyamine analogues is involved in the inhibition of cell growth. Accumulation of bis(ethyl)polyamine analogues caused the inhibition of protein synthesis and the decrease in the ATP content. The protein synthetic system in mitochondria was more strongly inhibited by bis(ethyl)polyamine analogues than that in the cytoplasm. Under conditions such that cytoplasmic protein synthesis was inhibited by 50% by bis(ethyl)polyamine analogues, mitochondrial protein synthesis was almost completely inhibited. Mitochondrial Ile-tRNA formation was inhibited by bis(ethyl)polyamine analogues at the concentrations that cytoplasmic Ile-tRNA formation was stimulated. This may be one of the reasons for the selective inhibition of mitochondrial protein synthesis. This inhibition was followed by the decrease in ATP content, swelling of mitochondria and depletion of mitochondrial DNA. These results suggest that the early event of metabolic change caused by bis(ethyl)polyamine analogues in cells is the inhibition of protein synthesis, especially of mitochondrial protein synthesis.

Adenosine Triphosphate

Correlation between the inhibition of cell growth by accumulated polyamines and the decrease of magnesium and ATP.

The mechanism of the antiproliferation effect of spermidine and spermine was studied using a cell culture system of mouse FM3A cells. The addition of either 10 mM spermidine or 2 mM spermine to the growth medium containing 0.9 mM Mg2+ greatly inhibited cell growth (more than 90%). A decrease in the Mg2+ concentration to 50 microM in the growth medium, but without the polyamine addition, did not influence cell growth. However, the concentrations of spermidine and spermine necessary for the inhibition of cell growth when cells were cultured in the presence of 50 microM Mg2+ were much smaller (2 mM spermidine and 0.15 mM spermine). Nevertheless, the amount of polyamines accumulating in cells which could cause the inhibition of cell growth was almost the same, regardless of the large difference in the added polyamine concentrations. At the early stage of polyamine accumulation, the inhibition of cell growth correlated with the decrease of Mg2+ content, but not with a decrease of the ATP content. The decrease in Mg2+ content correlated well with the inhibition of macromolecular synthesis, especially protein synthesis. Thus, the inhibition of cell growth at the early stage of polyamine accumulation was thought to be due to the inactivation of ribosomes through the replacement of Mg2+ on magnesium-binding sites by polyamines. The decrease in Mg2+ content was mainly caused by the inhibition of Mg2+ transport by polyamines. At the later stage of polyamine accumulation, a decrease in ATP content was also observed. This was followed by swelling of the mitochondria, which may be a symptom of the subsequent cell death.

Adenosine Triphosphate