• Title/Summary/Keyword: spermine synthase

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A New Assay Method for Spermidine and Spermine Synthases Using Antibody Against MTA

  • Lee, Sung-Ho;Cho, Young-Dong
    • BMB Reports
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    • v.30 no.6
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    • pp.443-447
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    • 1997
  • We have developed a novel method for assays of spermidine and spermine synthase (aminopropyltransferase) activities using antibody against 5'-deoxy-5'-methylthioadenosine (MTA). A new assay is reported here which is based on the observation that MTA is formed as a stoichiometric by-product of the spermidine and spermine synthases reactions. In order to determine MTA, a radioimmunoassay method with sensitivity and rapidity was used. (Lee and Cho, 1997). In this assay, adenine must be added in the reaction mixture, since it effectively inhibits the action of MTA phosphorylase by which MTA is metabolized. This assay is a improvement in term of sensitivity and time saving, compared to the currently used methods. It has a level of sensitivity (100 fmol) sufficient to monitor aminopropyltransferase activities in incubations containing as little as $10{\mu}g$ protein prepared from rat tissue homogenate. The results obtained showed that this method is particularly useful for cultured cells with low enzyme concentration. Moreover, this assay has the advantage which allows studies using alternative substrates (other amines). Spermidine synthase activity was high in rat liver, but low in rat kidney. The activity of spermine synthase was in most rat tissues very low as compared to that of spermidine synthase, but was high in brain.

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Effects of Polyamine on the Self-splicing Inhibition of Group I Intron by Spectinomycin (Polyamine이 Spectinomycin에 의한 Group I Intron의 Splicing 억제에 미치는 영향)

  • Park, In-Kook
    • Korean Journal of Microbiology
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    • v.35 no.4
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    • pp.253-257
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    • 1999
  • Effects of polyamines such as cadaverine, putrescine, spermidine and spermine on the self-splicig inhibition of the T4 phage thymidylate synthase(td) intron by spectinomycin have been investrigated. Without polyamine 7mM spectinomycin caused 40% reduction of the splicing rate. Cadaverine reduced the splicing rate over the concentrations of 0.1 to 5 mM. Putrescine at 0.5 mM increased the splicing rate by 13%. Spermidine at 0.5 mM enhanced the splicing rate by 11% while spermine at 0.01 mM enhanced the splicing rate by 16%. Of the all polyamines tested, spermine exhibited the maximum activation effect to counteract the splicing inhibition by spectinomycin. This effect appears to be due to the role of polyamine in stabilizing the conformation of td intron ribozyme essential for the catalytic function.

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The Mechanism of Polyamines on Ethylene Biosynthesis in Tobacco Suspension Cultures (담배 현탁 배양세포에서 Ethylene 생합성에 미치는 Polyamine의 작용기작)

  • 이순희
    • Journal of Plant Biology
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    • v.31 no.4
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    • pp.267-275
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    • 1988
  • Effects of polyamines on ethylene biosynthesis were studied in synchronized suspension cultured cells from leaf segments of Nicotiana tabacum L. Putrescine, spermidine and spermine inhibited the endogenous production of both ACC and ethylene. Those production was more remarkably inhibited by spermidine and spermine than putrescine. These results were the same tendency with those obtained from exogenous application of SAM and ACC. Polyamines had more inhibitory effect on hte conversion of ACC to ethylene than that of SAM to ACC, but ACC was not accumulated. The inhibition rate of exogenously applied ACC conversion to ethylene was well coincident with that of exogenously applied SAM conversion to ethyene via ACC by polyamines. However, polyamines inhibited more the activity of ACC synthase than that of EFE. From these results we can suggest that polyamines inhibit both steps of SAM to ACC and ACC to ethylene, and more effectively the latter than the former.

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Changes of Enzyme Activity in Nitrogen Metabolism on Induced Association of N. muscorum with Cultured Tobacco Cells (N. muscorum과 담배 배양세포의 공생유도에 따른 질소대사에 관여하는 효소활성의 변화)

  • 정현숙
    • KSBB Journal
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    • v.5 no.2
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    • pp.151-158
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    • 1990
  • Investigations on the liability of nitrogen usuage by Nostoc muscorum that has nitrogen fixing ability, and cultured tobacco cells as they were associately cultured on nitrogen-free media and effects of polyamine on the associated culture condition were carried out. In addition, measurement on the activity of nitrate reductase, glutamine synthetase, glutamate dehydrogenase and glutamate synthase that take part in the metabolic pathway of nitrogen fixation product were performed. Among enzymes participating in the metabolic pathway of nitrogen fixation products, the activity of nitrogen reductase stimulated five times in associated culture, and that of glutamine synthetase of N. muscorum increased two times after heterocyst differentiated. Activity of glutamate dehydrogenase increased markedly when cultured tobacco cells were solely incubated on nitrogen-free media, but inhibited when cultured associately. And, glutamate synthase was showed the highest activity in 0.1 mM of spermine treated group.

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Enhancement of Spermidine Content and Antioxidant Capacity by Modulating Ginseng Spermidine synthase in Response to Abiotic and Biotic Stresses

  • Parvin, Shohana;Lee, Ok-Ran;Sathiyaraj, Gayathri;Kim, Yu-Jin;Khorolragchaa, Altanzul;Yang, Deok-Chun
    • Proceedings of the Plant Resources Society of Korea Conference
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    • 2011.10a
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    • pp.14-14
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    • 2011
  • Polyamines (putrescine, spermidine and spermine) play pivotal roles in plant defense to different abiotic and biotic stresses. In order to understand the function of ginseng spermidine synthase gene, a key gene involved in biosynthesis of polyamines, transgenic plant was generated in Arabidopsis. The transgenic plants exhibited high levels of polyamines compared to the untransformed control plants. We investigated the tolerance capacity of transgenic plants to abiotic stresses such as salinity and copper stress. In addition, transgenic plants also showed increased resistance against one of the important fungal pathogens of ginseng, the wilt causing Fusarium oxysporum and one of important bacteria, bacterial blight causing Pseudomonas syringae. However, an activity of the polyamine catabolic enzyme, diamine oxidase (DAO) was increased significantly in F. oxysporum and P. syringae infected transgenic plant. Polyamine catabolic enzymes which may trigger the hypersensitive response (HR) by producing hydrogen peroxide ($H_2O_2$) seem act as an inducer of PR proteins, peroxidase and phenyl ammonium lyase activity. The transgenic plants also contained higher antioxidant enzyme activities, less MDA and $H_2O_2$ under salt and copper stress than the wild type, implying it suffered from less injury. These results strongly suggest an important role of spermidine as a signaling regulator in stress signaling pathways, leading to build-up of stress tolerance mechanisms.

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Development of Immunological Methods for Analysis of 5' -deoxy-5' -methylthioadenosine

  • Lee, Sung-Ho;Cho, Young-Dong
    • BMB Reports
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    • v.30 no.6
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    • pp.403-409
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    • 1997
  • Studies were undertaken to develop a competitive radioimmunoassay (RIA) and indirect antigen capture enzyme-linked immunosorbent assay (ELISA) for the determination of 5'-deoxy-5'-methylthioadenosine (MTA), which is formed from decarboxylated S-adenosylmethionine by spermidine and spermine synthase. Specific antiserum against MTA was raised in rabbits by immunization with MTA-BSA which was prepared by coupling BSA to oxidized MTA with periodate. Since MTA is oxidized easily to the sulfoxide, the sulfhydryl reagent, DTT. was added to the immunogen. For RIA, immunocomplexes were separated from free MTA by using ammonium sulfate precipitation. The antiserum showed almost no cross-reactivity with a variety of other nucleotides and riboses. But, the level of cross-reactivity of 5'-isobutylthioadenosine (SIBA) was high. These results showed the importance of hydrophobicity adjacent to the 5'-OH for determining antigenicity. The lower limit of detection by this assay was 100 fmol of MTA per tube. Using this assay. MTA levels were more easily and precisely determined in biological samples when compared with HPLC analysis. The RIA procedure is less time consuming. More than 24 analyses can be carried out in 2 h and required only a very small amount of sample ($20{\mu}l$ serum). In ELISA, biotin conjugated MTA-BSA was used as the labelled MTA. The sensitivity limit of this assay was lower than 100 pmol.

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Insight Into Genes Involved in the Production of Extracellular Chitinase in a Biocontrol Bacterium Lysobacter enzymogenes C-3

  • Choi, Hoseong;Kim, Hyun Jung;Lee, Jin Hee;Kim, Ji Soo;Park, Seur Kee;Kim, In Seon;Kim, Young Cheol
    • The Plant Pathology Journal
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    • v.28 no.4
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    • pp.439-445
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    • 2012
  • The chitinase producing Lysobacter enzymogenes C-3 has previously been shown to suppress plant pathogens in vitro and in the field, but little is known of the regulation of chitinase production, or its role in antimicrobial activity and biocontrol. In this study, we isolated and characterized chitinase-defective mutants by screening the transposon mutants of L. enzymogenes C-3. These mutations disrupted genes involved in diverse functions: glucose-galactose transpoter (gluP), disulfide bond formation protein B (dsbB), Clp protease (clp), and polyamine synthase (speD). The chitinase production of the SpeD mutant was restored by the addition of exogenous spermidine or spermine to the bacterial cultures. The speD and clp mutants lost in vitro antifungal activities against plant fungal pathogens. However, the gluP and dsbB mutants showed similar antifungal activities to that of the wild-type. The growth of the mutants in nutrient rich conditions containing chitin was similar with that of the wild-type. However, growth of the speD and gluP mutants was defective in chitin minimal medium, but was observed no growth retardation in the clp and dsbB mutant on chitin minimal medium. In this study, we identified the four genes might be involved and play different role in the production of extracellular chitinase and antifungal activity in L. enzymogenes C-3.

Arginase inhibition by rhaponticin increases L-arginine concentration that contributes to Ca2+-dependent eNOS activation

  • Koo, Bon-Hyeock;Lee, Jonghoon;Jin, Younghyun;Lim, Hyun Kyo;Ryoo, Sungwoo
    • BMB Reports
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    • v.54 no.10
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    • pp.516-521
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    • 2021
  • Although arginase primarily participates in the last reaction of the urea cycle, we have previously demonstrated that arginase II is an important cytosolic calcium regulator through spermine production in a p32-dependent manner. Here, we demonstrated that rhaponticin (RPT) is a novel medicinal-plant arginase inhibitor and investigated its mechanism of action on Ca2+-dependent endothelial nitric oxide synthase (eNOS) activation. RPT was uncompetitively inhibited for both arginases I and II prepared from mouse liver and kidney. It also inhibited arginase activity in both aorta and human umbilical vein endothelial cells (HUVECs). Using both microscope and FACS analyses, RPT treatments induced increases in cytosolic Ca2+ levels using Fluo-4 AM as a calcium indicator. Increased cytosolic Ca2+ elicited the phosphorylations of both CaMKII and eNOS Ser1177 in a time-dependent manner. RPT incubations also increased intracellular L-arginine (L-Arg) levels and activated the CaMKII/AMPK/Akt/eNOS signaling cascade in HUVECs. Treatment of L-Arg and ABH, arginase inhibitor, increased intracellular Ca2+ concentrations and activated CaMKII-dependent eNOS activation in ECs of WT mice, but, the effects were not observed in ECs of inositol triphosphate receptor type 1 knockout (IP3R1-/-) mice. In the aortic endothelium of WT mice, RPT also augmented nitric oxide (NO) production and attenuated reactive oxygen species (ROS) generation. In a vascular tension assay using RPT-treated aortic tissue, cumulative vasorelaxant responses to acetylcholine (Ach) were enhanced, and phenylephrine (PE)-dependent vasoconstrictive responses were retarded, although sodium nitroprusside and KCl responses were not different. In this study, we present a novel mechanism for RPT, as an arginase inhibitor, to increase cytosolic Ca2+ concentration in a L-Arg-dependent manner and enhance endothelial function through eNOS activation.