• 제목/요약/키워드: Conversion pathway

검색결과 140건 처리시간 0.025초

벼 HMG-CoA 환원효소의 특성연구 (Characterization and Purification of a Microsomal 3-Hydroxy-3-Methylglutaryl-CoA Reductase in Rice Seedling)

  • 김제현;백융기;김종범;김종국;황영수;하선화
    • Applied Biological Chemistry
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    • 제41권1호
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    • pp.47-52
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    • 1998
  • 3-Hydroxy-3-methylglutaryl-coenzyme A (HMG-CoA) 환원효소는 식물의 병원균 방어물질 (phytoalexin), 광합성 색소 (the phytol of chlorophyll), 성장 호르몬 (abscisic acid와 gibberellin 등) 및 스테롤 (phytosterol) 등의 생합성에 관여하는 주효소이다. 암조건 하에서 발아 후 4일째의 벼 유묘 microsome을 재료로 비이온성 detergent 인 Brij W-1 (final 0.4%)을 사용하여 가용화 시킨 후, DEAE-Sephadex A-50 크로마토그래피 칼럼과 hexaneagarose를 matrix로 기질인 HMG-CoA를 결합시켜 제조한 친화성 크로마토그래피 칼럼을 이용하여 세포막 결합효소인 HMG-CoA 환원효소를 정제하였다. 정제된 HMG-CoA 환원효소의 최종 회수율은 7.14% 였고, 분자량은 10% SDS-PAGE에서 55 kDa이였다 HMG-CoA 환원효소의 최적 반응 온도는 $37^{\circ}C$, 최적 반응 pH는 6.9였고, 기질인 HMG- CoA에 대한 HMG-CoA 환원효소의 $K_m$$V_{max}$ 값은 $180\;{\mu}M$과 107 pmol/mg, 수소공여체인 NADPH에 대한 $K_m$$V_{max}$값은 $810\;{\mu}M$과 32.1 pmol/min/mg이였다.

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Ginsenoside Rb2 suppresses cellular senescence of human dermal fibroblasts by inducing autophagy

  • Kyeong Eun Yang;Soo-Bin Nam;Minsu Jang;Junsoo Park;Ga-Eun Lee;Yong-Yeon Cho;Byeong-Churl Jang;Cheol-Jung Lee;Jong-Soon Choi
    • Journal of Ginseng Research
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    • 제47권2호
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    • pp.337-346
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    • 2023
  • Background: Ginsenoside Rb2, a major active component of Panax ginseng, has various physiological activities, including anticancer and anti-inflammatory effects. However, the mechanisms underlying the rejuvenation effect of Rb2 in human skin cells have not been elucidated. Methods: We performed a senescence-associated β-galactosidase staining assay to confirm cellular senescence in human dermal fibroblasts (HDFs). The regulatory effects of Rb2 on autophagy were evaluated by analyzing the expression of autophagy marker proteins, such as microtubule-associated protein 1A/1B-light chain (LC) 3 and p62, using immunoblotting. Autophagosome and autolysosome formation was monitored using transmission electron microscopy. Autophagic flux was analyzed using tandem-labeled GFP-RFP-LC3, and lysosomal function was assessed with Lysotracker. We performed RNA sequencing to identify potential target genes related to HDF rejuvenation mediated by Rb2. To verify the functions of the target genes, we silenced them using shRNAs. Results: Rb2 decreased β-galactosidase activity and altered the expression of cell cycle regulatory proteins in senescent HDFs. Rb2 markedly induced the conversion of LC3-I to LC3-II and LC3 puncta. Moreover, Rb2 increased lysosomal function and red puncta in tandem-labeled GFP-RFP-LC3, which indicate that Rb2 promoted autophagic flux. RNA sequencing data showed that the expression of DNA damage-regulated autophagy modulator 2 (DRAM2) was induced by Rb2. In autophagy signaling, Rb2 activated the AMPK-ULK1 pathway and inactivated mTOR. DRAM2 knockdown inhibited autophagy and Rb2-restored cellular senescence. Conclusion: Rb2 reverses cellular senescence by activating autophagy via the AMPK-mTOR pathway and induction of DRAM2, suggesting that Rb2 might have potential value as an antiaging agent.

NO/cGMP Pathway is Involved in Exocrine Secretion from Rat Pancreatic Acinar Cells

  • Ahn, Seong-Hoon;Seo, Dong-Wan;Ko, Young-Kwon;Sung, Kae-Suk;Bae, Gyu-Un;Yoon, Jong-Woo;Hong, Sung-Youl;Han, Jeung-Whan;Lee, Hyang-Woo
    • Archives of Pharmacal Research
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    • 제21권6호
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    • pp.657-663
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    • 1998
  • The enzyme responsible for the synthesis of nitric oxide (NO) from L-arginine in mammalian tissues is known as nitric oxide synthase (NOS) (EC.1.14.13.39). In the present study, the role of NO in the regulation of exocrine secretion was investigated in rat pancreatic acinar cells. Treatment of rat pancreatic acinar cells with cholecystokinin-octapeptide (CCK-OP) resulted in an increase in the arginine conversion to citrulline, the amount of $NO_X$, the release of amylase, and the level of CGMP. Especially, CCK-OP-stimulated increase of arginine to citrulline transformation, the amount of $NO_X$, and CGMP level were completely counteracted by the inhibitor of NOS, NG-monomethyl-L-arginine (MMA), by contrast, that of amylase release was partially reduced. Furthermore, MMA-induced decrease of NOS activity and amylase release showed dose-dependent pattern. The data on the time course of CCK-OP-induced citrulline formation and CGMP rise indicate that NOS and guanylate cyclase were activated by treatment of CCK-OP. However, the mechanism of agonist-stimulated guanylate cyclase activation in acinar cells remains unknown. Therefore, activation of NOS is one of the early events in receptor-mediated cascade of reactions in pancreatic acinar cells and NO, not completely, but partially mediate pancreatic enzyme exocrine secretion.

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ZnO 나노구조체를 이용한 염료감응형 태양전지의 광전효율 (Photovoltaic Performence of Dye-sensitized Solar Cells using ZnO nanostructures)

  • 이정관;천종훈;김나리;김재홍
    • 한국신재생에너지학회:학술대회논문집
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    • 한국신재생에너지학회 2010년도 춘계학술대회 초록집
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    • pp.90.1-90.1
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    • 2010
  • Due to the rapidly diminishing energy sources and higher energy production cost, the interest in dye-sensitized solar cells (DSSCs) has been increasing dramatically in recent years. A typical DSSC is constructed of wide band gap semiconductor electrode such as $TiO_2$ or ZnO that are anchored by light-harvesting sensitizer dyes and surrounded by a liquid electrolyte with a iodide ion/triiodide ion redox couple. DSSCs based on one-dimensional nano-structures, such as ZnO nanorods, have been recently attracting increasing attention due to their excellent electrical conductivity, high optical transmittance, diverse and abundant configurations, direct band gap, absence of toxicity, large exiton binding energy, etc. However, solar-to-electrical conversion performances of DSSCs composed of ZnO n-type photo electrode compared with that of $TiO_2$ are not satisfactory. An important reason for the low photovoltaic performance is the dissolution of $Zn^{2+}$ by the adsorption of acidic dye followed by the formation of agglomerates with dye molecules which could block the I-diffusion pathway into the dye molecule on the ZnO surface. In this paper, we prepared the DSSC with the ZnO electrode using the chemical bath deposition (CBD) method under low temperature condition (< $100^{\circ}C$). It was demonstrated that the ZnO seed layers played an important role on the formation of the ZnO nanostructures using CBD. To achieve truly low-temperature growth of the ZnO nanostructures on the substrates, a two-step method was developed and optimized in the present work. Firstly, ZnO seed layer was prepared on the FTO substrate through the spin-coating method. Secondly, the deposited ZnO seed substrate was immersed into an aqueous solution of 0.25M zinc nitrate hexahydrate and 0.25M hexamethylenetetramine at $90^{\circ}C$ for hydrothermal reaction several times.

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Assessment of Potential Radiation Dose Rates to Marine Organisms Around the Korean Peninsula

  • Lee, Dong-Myung;Lee, Jun-ho
    • Journal of Radiation Protection and Research
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    • 제41권1호
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    • pp.1-6
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    • 2016
  • Background: It is very difficult to set a regulatory guidance or criteria for the protection of non-human species from the ionizing radiation, because there are no generally or internationally accepted methods for demonstrating the compliance with such criteria. It is needed that Korea develop the primary dose rate standards for the protection of both aquatic and terrestrial biota in the near future. Materials and Methods: The potential dose rates due to both external and internal radiation exposures to marine organisms such as plaice/flounder, gray mullet, and brown seaweed collected within territorial seas around the Korean Peninsula were estimated. Results and Discussion: The total dose rates to plaice/flounder, gray mullet and brown seaweed due to $^{40}K$, a primordial radionuclide in marine environment, were found to be 0.2%, 0.08% and 0.3% of approximately the values of the Derived Consideration Reference Levels (DCRLs, i.e. $1-10mGy{\cdot}d^{-1}$), respectively, as suggested by the International Commission on Radiological Protection (ICRP) publication 124. The total dose rates to marine fishes and brown seaweed due to anthropogenic radionuclides such as $^{90}Sr$, $^{137}Cs$ and $^{239+240}Pu$ were considered to be negligible compared to the total dose rate due to $^{40}K$. The external exposure to benthic fish due to all radionuclides was much higher than that of pelagic fish. Conclusion: From this study, it is recommended that the further study is required to develop a national regulatory guidance for the evaluation of doses to non-human species.

Biotransformation of Ginsenoside Rb1 to Prosapogenins, Gypenoside XVII, Ginsenoside Rd, Ginsenoside F2, and Compound K by Leuconostoc mesenteroides DC102

  • Quan, Lin-Hu;Piao, Jin-Ying;Min, Jin-Woo;Kim, Ho-Bin;Kim, Sang-Rae;Yang, Dong-Uk;Yang, Deok-Chun
    • Journal of Ginseng Research
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    • 제35권3호
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    • pp.344-351
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    • 2011
  • Ginsenoside $Rb_1$ is the main component in ginsenosides. It is a protopanaxadiol-type ginsenoside that has a dammarane-type triterpenoid as an aglycone. In this study, ginsenoside $Rb_1$ was transformed into gypenoside XVII, ginsenoside Rd, ginsenoside $F_2$ and compound K by glycosidase from Leuconostoc mesenteroides DC102. The optimum time for the conversion was about 72 h at a constant pH of 6.0 to 8.0 and the optimum temperature was about $30^{\circ}C$. Under optimal conditions, ginsenoside $Rb_1$ was decomposed and converted into compound K by 72 h post-reaction (99%). The enzymatic reaction was analyzed by highperformance liquid chromatography, suggesting the transformation pathway: ginsenoside $Rb_1$ ${\rightarrow}$ gypenoside XVII and ginsenoside Rd${\rightarrow}$ginsenoside $F_2{\rightarrow}$compound K.

중국 약용식물 추출물의 알도즈 환원 효소 억제 효능 검색 (III) (Screening of Chinese Herbal Medicines with Inhibitory Effect on Aldose Reductase (III))

  • 이윤미;김종민;김영숙;장대식;김주환;배기환;김진숙
    • 생약학회지
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    • 제40권4호
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    • pp.394-399
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    • 2009
  • Aldose reductase (AR) is a critical enzyme in the development of the diabetic complications. AR, the first enzyme in the polyol pathway, catalyzes the reduction of the aldehyde form of glucose to sorbitol with concomitant conversion of NADPH to $NADP^+$. None of aldose reductase inhibitor (ARI) has achieved worldwide use because of limited efficacy or undesirable side effects. Therefore, evaluating natural sources for ARI potential may lead to the development of safer and more effective agents against diabetic complications. Forty eight Chinese herbal medicines have been investigated for inhibitory activities on AR. Among them, seven herbal medicines, Buddleja officinalis (whole plant), Lonicera japonica (leaf and flower), Polygonum aviculare (aerial part), Polygonum aviculare (whole plant), Salvia miltiorrhiza (root), Schisandra chinensis (stem), and Zanthoxylum armatum (leaf and stem) exhibited a significant inhibitory activity against AR. Particularly, L. japonica and P. aviculare showed two times more potent inhibitory activity than the positive control, 3,3-tetramethyleneglutaric acid (TMG).

Enhancement of L-Lactic Acid Production in Lactobacillus casei from Jerusalem Artichoke Tubers by Kinetic Optimization and Citrate Metabolism

  • Ge, Xiang-Yang;Qian, He;Zhang, Wei-Guo
    • Journal of Microbiology and Biotechnology
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    • 제20권1호
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    • pp.101-109
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    • 2010
  • Efficient L-lactic acid production from Jerusalem artichoke tubers, by Lactobacillus casei G-02, using simultaneous saccharification and fermentation (SSF) in a fed-batch culture, is demonstrated. A kinetic analysis of the SSF revealed that the inulinase activity was subjected to product inhibition, whereas the fermentation activity of G-02 was subjected to substrate inhibition. It was also found that the intracellular NADH oxidase (NOX) activity was enhanced by the citrate metabolism, which dramatically increased the carbon flux of the Embden-Meyerhof-Parnas (EMP) pathway, along with the production of ATP. As a result, when the SSF was carried out at $40^{\circ}C$ after an initial hydrolysis of 1 h and included a sodium citrate supplement of 10 g/l, an L-lactic acid concentration of 141.5 g/l was obtained after 30 h, with a volumetric productivity of 4.7 g/l/h. The conversion efficiency and product yield were 93.6% of the theoretical lactic acid yield and 52.4 g lactic acid/l00 g Jerusalem artichoke flour, respectively. Such a high concentration of lactic acid with a high productivity from Jerusalem artichokes has not been reported previously, making G-02 a potential candidate for the economic production of L-lactic acid from Jerusalem artichokes on a commercial scale.

E. coli 형질전환주의 공동배양에 의한 유자정유의 생전환 (Bioconversion of Citron oil by Co-Culture of E. coli EC3, EC4, and EC6)

  • 박연진;장해춘
    • 한국가정과학회지
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    • 제4권1호
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    • pp.79-92
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    • 2001
  • 본 연구에서는 미생물의 대사체계를 이용하여 유자껍질내의 유자정유성분을 생전환 시키므로써 고부가가치 고기능성 천연향의 발굴 생산을 시도하였다. 유자정유 성분 대사능 유전자를 지닌 E. coli 형질전환주 EC3, EC4, EC6의 공동 배양액을 유자정유가 유일한 탄소원인 M9배지에서 28$^{\circ}C$로 진탕배양 하였다. 각 공동 배양액(EC3+EC4. EC3+EC6, EC4+EC6 and EC3+C4+EC6)은 각 형질전환주의 단독배양 보다 3∼4배 더 높은 생육도를 나타냄을 알 수 있었다. 공동배양에 의해 생전환된 물질들은 GC-MS에 의해 확인하였다. 각 공동배양액의 주요한 대사산물로는 linalool, 4-terpineol, ${\alpha}$-terpineol이 공통적으로 검출되었다. 소량씩 존재하나 배양액의 주요한 향을 결정할 것으로 보이는 각기 다른 terpene 계열 화합물들이 각각의 공동배양액 대사산물로 검출 되었는데, 공동배양액EC3+EC4에서는 elemol, ocimene, nonanal, trans-2-nonenal이 공동배양액EC3+EC6에서는 cis-ocimene, 2-octanol, octanal. ${\alpha}$-terpinolene, 공동배양액 C4+EC6에서는 ocimene, 그리고 공동배양액EC3+EC4+EC6에서는 nonanal, 2-octenol, iso-menthol, ocimene이 각각 검출되었다.

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Development of Indole-3-Acetic Acid-Producing Escherichia coli by Functional Expression of IpdC, AspC, and Iad1

  • Romasi, Elisa Friska;Lee, Jinho
    • Journal of Microbiology and Biotechnology
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    • 제23권12호
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    • pp.1726-1736
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    • 2013
  • Biosynthesis of indole-3-acetic acid (IAA) via the indole-3-pyruvic acid pathway involves three kinds of enzymes; aminotransferase encoded by aspC, indole-3-pyruvic acid decarboxylase encoded by ipdC, and indole-3-acetic acid dehydrogenase encoded by iad1. The ipdC from Enterobacter cloacae ATCC 13047, aspC from Escherichia coli, and iad1 from Ustilago maydis were cloned and expressed under the control of the tac and sod promoters in E. coli. According to SDS-PAGE and enzyme activity, IpdC and Iad1 showed good expression under the control of $P_{tac}$, whereas AspC was efficiently expressed by $P_{sod}$ originating from Corynebacterium glutamicum. The activities of IpdC, AspC, and Iad1 from the crude extracts of recombinant E. coli Top 10 were 215.6, 5.7, and 272.1 nmol/min/mg-protein, respectively. The recombinant E. coli $DH5{\alpha}$ expressing IpdC, AspC, and Iad1 produced about 1.1 g/l of IAA and 0.13 g/l of tryptophol (TOL) after 48 h of cultivation in LB medium with 2 g/l tryptophan. To improve IAA production, a tnaA gene mediating indole formation from tryptophan was deleted. As a result, E. coli IAA68 with expression of the three genes produced 1.8 g/l of IAA, which is a 1.6-fold increase compared with wild-type $DH5{\alpha}$ harboring the same plasmids. Moreover, the complete conversion of tryptophan to IAA was achieved by E. coli IAA68. Finally, E. coli IAA68 produced 3.0 g/l of IAA after 24 h cultivation in LB medium supplemented with 4 g/l of tryptophan.