• 제목/요약/키워드: exogenous metal

검색결과 11건 처리시간 0.024초

VECM모형을 이용한 국내 희유금속의 수요예측모형 (A Study on Demand Forecasting Model of Domestic Rare Metal Using VECM model)

  • 김홍민;정병희
    • 품질경영학회지
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    • 제36권4호
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    • pp.93-101
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    • 2008
  • The rare metals, used for semiconductors, PDP-LCS and other specialized metal areas necessarily, has been playing a key role for the Korean economic development. Rare metals are influenced by exogenous variables, such as production quantity, price and supplied areas. Nowadays the supply base of rare metals is threatened by the sudden increase in price. For the stable supply of rare metals, a rational demand outlook is needed. In this study, focusing on the domestic demand for chromium, the uncertainty and probability materializing from demand and price is analyzed, further, a demand forecast model, which takes into account various exogenous variables, is suggested, differing from the previously static model. Also, through the OOS(out-of-sampling) method, comparing to the preexistence ARIMA model, ARMAX model, multiple regression analysis model and ECM(Error Correction Mode) model, we will verify the superiority of suggested model in this study.

Inhibitory Effects of Exogenous Cu2+ and Zn2+ on the Cytochrome c Oxidase Activity

  • Min, Tong-Pil;Han, Sang-Hwa
    • BMB Reports
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    • 제28권4호
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    • pp.311-315
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    • 1995
  • Exogenous $Cu^{2+}$ or $Zn^{2+}$ at micromolar concentration had a strong inhibitory effect on detergent-solubilized cytochrome c oxidase. A similar effect was observed when $Cu^{2+}$ was added to vesicular cytochrome c oxidase, although the extent of inhibition was significantly larger for the uncoupled state than for the coupled state. Interestingly, the inhibition by $Zn^{2+}$ was almost negligible for both the coupled and uncoupled states. These results suggest that the binding sites for $Cu^{2+}$ ions are exposed to the extravesicular side. whereas those for $Zn^{2+}$ are exposed to the matrix side. The EPR spectra of bound $Cu^{2+}$ ions at 77 K indicate that each of the first two $Cu^{2+}$ ions is ligated by three or four histidine residues, as evidenced by distinct $^{14}N$ superhyperfine splitting. These $Cu^{2+}$ ions can not be removed readily by EDTA and inhibit the enzyme activity by as much as 80%.

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Role of Proline Accumulation in Response to Toxic Copper in Microcystis aeruginosa

  • Park, So-Hyun;Hong, Jung-Hee
    • Environmental Sciences Bulletin of The Korean Environmental Sciences Society
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    • 제10권S_4호
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    • pp.189-196
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    • 2001
  • The blue green alga, Microcystis aeruginosa, was found to accumulate proline under the stressful concentration of cupric ions. The changes of proline level in Microcystis aeruginosa in response to copper(Cu) have been monitored and the function of the accumulated proline was studied with respect to its effect on Cu uptake. Exposure of Microcystis aeruginosa elevated concentrations of Cu led to accumulation of fee proline depending on the concentrations of the metal in the external medium. The greater the toxicity or accumulation of the metal, the higher the amount of proline in algal cells were found. When proline was exogenously supplied prior to Cu treatment, the absorption of Cu was markedly reduced. When exogenous proline was supplied after Cu treatment, it resulted in a remarkable desorption of the adsorbed Cu immediately after the addition of proline. Pretreatment of Microcystis aeruginosa with proline counteracted with metal-induced lipid peroxidation. The results of the present study showed a protective elect of proline on metal toxicity through inhibition of lipid peroxidation and suggested that the accumulation of proline may be related to the tolerance mechanism for dealing with Cu stress.

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Modulating the Properties of Metal-Sensing Whole-Cell Bioreporters by Interfering with Escherichia coli Metal Homeostasis

  • Yoon, Youngdae;Kang, Yerin;Lee, Woonwoo;Oh, Ki-Cheol;Jang, Geupil;Kim, Bong-Gyu
    • Journal of Microbiology and Biotechnology
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    • 제28권2호
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    • pp.323-329
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    • 2018
  • In Escherichia coli, the transcription of genes related to metal homeostasis is activated by the presence of target metals. The promoter regions of those genes can be fused with reporter genes to generate whole-cell bioreporters (WCBs); these organisms sense the presence of target metals through reporter gene expression. However, the limited number of available promoters for sensing domains restricts the number of WCB targets. In this study, we have demonstrated an alternative method to generate novel WCBs, based on the notion that since the sensing mechanisms of WCBs are related to metal transportation systems, their properties can be modulated by disrupting metal homeostasis. Mutant E. coli strains were generated by deleting the znt-operon genes zntA, which encodes a zinc-export protein, and zntR, which encodes a znt-operon regulatory protein, to investigate the effects on the metal-sensing properties of WCBs. Deletion of zntA increased the sensitivity but abolished the selectivity of cadmium-sensing WCBs, whereas arsenic-sensing WCBs gained sensitivity toward cadmium. When zntR was deleted, cadmium-sensing WCBs lost the ability to detect cadmium, and this was recovered by introducing exogenous zntR. In addition, the metal-binding site of ZntR was genetically engineered to modulate metal selectivity. This study provides a valuable platform for the development of novel E. coli-based WCBs.

환경규제 강화로 인한 산업재배치 효과에 관한 연구 -오염다배출산업을 중심으로- (Study on the Pollution-heaven Hypothesis Focusing on Pollution-Intensive Industries)

  • 노상환
    • 자원ㆍ환경경제연구
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    • 제11권1호
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    • pp.121-144
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    • 2002
  • The purpose of this study is to test pollution-heaven hypothesis on the korean pollution-intensive industries, that is, textile and clothing, petrochemical and primary metal industry. The empirical study examines that foreign direct investment(FDI) of korean pollution-intensive industries regresses on couple of exogenous variables and the environmental regulation on FDI. As the environmental regulation is not directly observed, it uses $CO_2$ emissions as the pollutant. The results of the study show that the environmental regulation in a host country is an insignificant determinant of FDI for the korean polluting industries. That is, they do not support Leonard (1988), Xing and Kolstad (2000) that the hypothesis is a significant for heavily polluting industries.

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S-Nitrosoglutathione (GSNO) Alleviates Lead Toxicity in Soybean by Modulating ROS, Antioxidants and Metal Related Transcripts

  • Methela Nusrat Jahan;Islam Mohammad Shafiqul;Da-Sol Lee;Youn-Ji Woo;Bong-Gyu Mun;Byung-Wook Yun
    • 한국작물학회:학술대회논문집
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    • 한국작물학회 2023년도 춘계학술대회
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    • pp.105-105
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    • 2023
  • Heavy metals, including lead (Pb) toxicity, are increasing in soil and are considered toxic in small amounts. Pb contamination is mainly caused by industrialization - smelting, mining. Agricultural practices - sewage sludge, pests and urban practices - lead paint. It can seriously damage and threaten crop growth. Pb can adversely affect plant growth and development by affecting the photosystem, cell membrane integrity, and excessive production of reactive oxygen species (ROS) such as hydrogen peroxide (H2O2)andsuperoxide(O2.-). NO is produced via enzymatic and non-enzymatic antioxidants to scavenge ROS and lipid peroxidation substrates in terms of protecting cells from oxidative damage. Thus, NO improves ion homeostasis and confers resistance to metal stress. Our results here suggest that exogenous NO may aid in better growth under lead stress. These enhancements may be aided by NO's ability in sensing, signaling and stress tolerance in plants under heavy metal stress in combination with lead stress. Our results show that GSNO has a positive effect on soybean seedling growth in response to axillary pressure and that NO supplementation helps to reduce chlorophyll maturation and relative water content in leaves and roots following strong burst under lead stress. GSNO supplementation (200 µM and 100 µM) reduced compaction and approximated oxidative damage of MDA, proline and H2O2. Under plant tension, a distorted appearance was found in the relief of oxidative damage by ROS scavenging by GSNO application. In summary, modulation of these NO, PCS and prolongation of metal past reversing GSNO application confirms the detoxification of ROS induced by toxic metal rates in soybean. In summary, these NO, PCS and metal traditionally sustained rates of reverse GSNO application confirm the detoxification of ROS induced by toxic metal rates in soybean.

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Effect of Zinc on Vascular Smooth Muscle Cell Death Mediated by PDTC

  • Moon Sung-Kwon;Ha Sang-Do
    • Biotechnology and Bioprocess Engineering:BBE
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    • 제5권1호
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    • pp.40-43
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    • 2000
  • Pyrrolidinedithiocarbamate (PDTC) and N-Acetylcysteine (NAC) are metal and nonmetal-chelating antioxidant which can induce rat and human smooth muscle cell death. When the smooth muscle cells from mouse aorta (MASMC) that we successfully cultured recently was exposed to PDTC and NAC in a normal serum state, the cells were induced to death by these compounds. However, PDTC did not induce the cell death in a serum depleted medium. This data suggests that certain factors in the serum may mediate the cytotoxic effect of PDTC. The metal chelator, Ca-EDTA blocked PDTC-induced cell death, but Cu-, Fe-, and Zn-EDTA did not block the PDTC-induced cell death. This data indicated that copper, iron, and zinc in the serum may lead to the cytotoxic effect of PDTC. Investigation of the intracellular zinc level in PDTC-induced smooth muscle cell death using the zinc probe dye N-(6-methoxy-8-quinolyl)-p-toluenesulfonamide shows that only the muscle-containing layers of the arteries have higher level of zinc. As expected, PDTC increased the intracellular fluorescence level of the zinc. In agreement with these results, the addition of an exogenous metal, zinc, induced the vascular aortic smooth muscle cell death which led to an increased intracellular zinc level. We concluded that PDTC induced mouse aortic smooth muscle cell death required not only zinc level but also intracellular copper and iron level. The mechanism of this antioxidant to induce vascular smooth muscle cell death may provide a new strategy to prevent their proliferation in arteriosclerotic lesions.

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Characterization of ${\beta}-Galactosidase$ from a Bacillus sp. with High Catalytic Efficiency for Transgalactosylation

  • In, Man-Jin;Jin, Jung
    • Journal of Microbiology and Biotechnology
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    • 제8권4호
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    • pp.318-324
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    • 1998
  • A ${\beta}$-galactosidase with high transgalactosylic activity was purified from a Bacillus species, registered as KFCC10855. The enzyme preparation showed a single protein band corresponding to a molecular mass of 150 kDa on SDS-PAGE and gave a single peak with the estimated molecular mass of 250 kDa on Sephacryl S-300 gel filtration, suggesting that the enzyme is a homodimeric protein. The amino acid and sugar analyses revealed that the enzyme is a glycoprotein, containing 19.2 weight percent of sugar moieties, and is much more abundant in hydrophilic amino acid residues than in hydrophobic residues, the mole ratio being about 2:1. The pI and optimum pH were determined to be 5.0 and 6.0, respectively. Having a temperature optimum at $70^{\circ}C$ for the hydrolysis of lactose, the enzyme showed good thermal stability. The activity of the enzyme preparation was markedly increased by the presence of exogenous Mg (II) and was decreased by the addition of EDTA. Among the metal ions examined, the most severely inhibitory effect was seen with Ag (I) and Hg (II). Further, results of protein modification by various chemical reagents implied that 1 cysteine, 1 histidine, and 2 methionine residues occur in certain critical sites of the enzyme, most likely including the active site. Enzyme kinetic parameters, measured for both hydrolysis and transgalactosylation of lactose, indicated that the enzyme has an excellent catalytic efficiency for formation of the transgalactosylic products in reaction mixtures containing high concentrations of the substrate.

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Two-component System 기반 재조합균을 이용한 인공폐수에서의 중금속 인지 및 제거 (Heavy Metal Detection and Removal in Artificial Wastewater Using Two-Component System Based Recombinant Bacteria)

  • ;홍순호;유익근
    • 미생물학회지
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    • 제48권3호
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    • pp.187-191
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    • 2012
  • Two component system (TCS)인 ZraS/R 및 CusS/R의 zraP와 cusC 유전자의 프로모터에 의해 green fluorescent protein (GFP)이 발현되도록 제작된 박테리아 바이오센서의 성능을 인공폐수에서 평가하였다. 제작된 박테리아 바이오센서는 실제 폐수를 모사한 인공폐수에서도 시료 중의 $Zn^{2+}$$Cu^{2+}$를 인지하여 GFP를 효율적으로 발현시키는 것을 확인할 수 있었다. 두 번째는 세포 표면에 금속 친화성 펩타이드가 표현되도록 제작된 구리 및 아연 제거 박테리아를 인공폐수 조건에서 평가하였다. 제작된 박테리아는 각각 ZraS/R 및 CusS/R TCS에 의해 주변의 $Zn^{2+}$$Cu^{2+}$를 인지하여 세포 표면에 OmpC-ZBP와 OmpC-CBP 융합 단백질을 발현시키는 시스템이다. 실험을 통해 표면에 금속 흡착 펩타이드가 발현된 재조합 균은 인공폐수 조건에서도 효과적으로 구리 및 아연을 흡착시키는 것을 확인하였다. 따라서 본 연구에서 개발된 TCS 기반 재조합 균은 인공폐수 조건에서 중금속의 인지 및 제거 기능이 효과적으로 작동하는 것이 확인되었다.

산화질소 공여물과 산화질소 합성효소 길항제가 백서 폐미세혈관 내피세포 산화제 손상에 미치는 영향 (The Effect of Nitric Oxide Donor or Nitric Oxide Synthase Inhibitor on Oxidant Injury to Cultured Rat Lung Microvascular Endothelial Cells)

  • 장준;;김세규;김성규;이원영;강경호;유세화;채양석
    • Tuberculosis and Respiratory Diseases
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    • 제45권6호
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    • pp.1265-1276
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    • 1998
  • 연구배경 : NO는 생체내에서 생성되는 유리 반응기로서 혈관 긴장도외 완화, 혈소판 응집 저지, 혈관 내피세포에 대한 백혈구 유착 방해, 감염에 대한 숙주 방어 등에서 중요한 역할을 한다. NO는 전이 금속(transition metal), 산소, 기타 반응기 등과 쉽게 반응하므로 여러 생체내 반응에 관여하여 산화제 손상을 촉진시키거나 감소시킬 가능성이 제기되었다. 급성 폐손상 및 급성 호흡곤란 증후군에서는 폐혈관 내피세포 및 호중구의 상호작용 및 산화제 손상이 매우 중요한 병인으로 알려져 있으며, NO를 급성 호흡곤란 증후군에서 흡입하여 치료하는 것은 산화제에 의한 혈관 내피세포 손상에서 외부로부터 NO를 공급하는 상황이다. 본 연구에서는 외인성 NO의 공여나 내인성 NO 억제가 산화제에 의한 폐미세혈관 내피세포의 손상을 악화시키거나 완화시킬 수 있는지를 관찰하였다. 방 법 : 산화제에 의한 세포손상은 백서 폐미세혈관 내피세포에 과산화수소를 생성하는 glucose oxidase(GO)를 투여하여 야기시키고 이를 $^{51}Cr$ 방출 측정으로 평가하였다. 산화제에 의한 폐혈관 내피세포의 손상에 외인성 NO가 미치는 영향은 NO 공여물인 SNAP 혹은 SNP를 산화제와 동시에 투여하여 평가하였다. 산화제에 의한 폐혈관 내피세포의 손상에 내인성 NO 억제가 미치는 영향은 NOS 길항제인 L-NMMA을 추가로 투여하여 평가하였다. INF-$\gamma$, TNF-$\alpha$ LPS 등으로 내인성 NO 생성을 자극한 후 L-NMMA의 효과도 관찰하였으며, NO 공여물이나 내피세포로 부터의 NO생성은 nitrite 측정으로 평가하였다. 결 과 : 백서 폐 미세혈관 내피세포에서 $^{51}Cr$ 방출이 GO 5mU/ml에서 $8.7{\pm}0.5%$, 10 mU/ml에서 $14.4{\pm}2.9%$, 15 mU/ml에서 $32.3{\pm}2.9%$, 20 mU/ml에서 $55.5{\pm}0.3%$. 30 mU/ml에서 $67.8{\pm}0.9%$로 GO 15 mU/ml 이상에서 대조군의 $9.6{\pm}0.7%$에 비하여 유의하게 증가하였으며 (P<0.05; n=6). 이에 0.5mM L-NMMA를 추가하여도 영향이 없었다. INF-$\gamma$ 500 U/ml, TNF-$\alpha$ 150 U/ml, LPS 1 ${\mu}g/ml$을 배양액에 첨가하여 24시간 경과시 배양액 중 nitrite 농도가 $3.9{\pm}0.3\;{\mu}M$로 증가하였으며, 이에 L-NMMA 0.5 mM을 첨가하면 $0.2{\pm}0.l\;{\mu}M$로 유의하게 억제되었다(p<0.05 ; n=6). INF-$\gamma$, TNF-$\alpha$ LPS 자극후 GO에 의한 $^{51}Cr$ 방출에 L-NMMA는 영향을 주지 않았다. GO 20 mU/ml에 의한 $^{51}Cr$ 방출이 SNAP 100 ${\mu}M$의 추가로 대조군 수준으로 현저히 억제되었으나, SNP, potassium ferrocyanide, potassium ferricyanide 등의 추가는 영향이 없었다. Hanks' balanced salt solution(HBSS) 중의 SNAP 100 ${\mu}M$로 부터 4 시간 동안 nitrite가 $23.0{\pm}1.0\;{\mu}M$ 농도로 축적되었으나, SNP는 1 mM에서도 nitrite가 검출되지 않았다. SNAP은 HBSS 중의 GO가 과산화수소를 시간 경과에 따라 생성하는데 영향이 없었다. 결 론 : 결론적으로 폐미세혈관 내피세포에서 GO에 의하여 생성되는 과산화수소로 산화제 손상을 야기하였으며, NO 공여물인 SNAP으로부터 제공된 외연성 NO가 산화제 손상을 방지하고 이 보호효과는 NO 방출 능력에 의할 가능성이 시사되었다. 따라서 생체내 환경에 따라 외인성 NO가 내피세포에 대한 산화제 손상에 보호 효과가 있을 수 있다고 추정된다.

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