• Title/Summary/Keyword: 대사경로

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Mechanism of Alcoholic Liver Disease

  • 문전옥
    • Journal of Life Science
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    • v.4 no.3
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    • pp.102-112
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    • 1994
  • 알콜성 간장해의 발생, 진전에는 많은 인자가 관여하고 있으며 극히 복잡한 병태를 형성하는데 그 기전으로는 1)간내 [NADH]/[NAD] 비의 상승, 2)에탄올의 주 대사산물인 아세트알데히드에 의한 간장해, 3)면역기구에 의한 간장해, 4)과산화지질, 활성산소 및 free radical 에 의한 장해와 5) 중심정맥역의 hypoxia에 의한 간세포장해 기전을 들 수 있다. 본 총설에서는 알콜을 장기 섭취할 경우 간에서의 대사경로와 현재 고려되고 있는 몇 가지 알콜성 간장해 발생기전에 대한 최근의 연구들을 정리하였다.

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Regulation of Phenylalanine Specific Pathway in a Species of Intrasporangium (Intrasporangium속 방선균의 Phenylalanine 분지대사 경로의 조절)

  • 조원대;최용진;양한철
    • Microbiology and Biotechnology Letters
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    • v.16 no.3
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    • pp.238-245
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    • 1988
  • Studies were made on the regulation of chorismate mutase and prephenate dehydratase of a species of Intrasporangium, a phenylalanine producing Actinomycete isolated from soil. Two distinctly regulated species of chorismate mutase, designated CM I and CM IIwere resolved by DEAE Cellulose and DEAE Sephadex A 50 chromatography. The activity of CM II was inhibited by L-tyrosine, whereas that of CM I appeared to be unregulated. Single species of prephenate dehydyatase was also separated in the same purification steps. The activity of the enzyme was strongly feedback inhibited by L-phenylalanine, but by L-tyrosine or L-methionine it was rather slightly stimulated. Synthesis of chorismate mutase was not influenced by the presence of phenylalanine, tyrosine or tryptophan, whereas prephenate dehydratase was found to be subject to strong feedback repression by L-phenylalanine. The rate of repression was 94% at the concentration of 1mM L-phenylalanine but the repression was completely offset by the presence of 5mM tyrosine. The critical regulatory site of the phenylalanine terminal biopathway was, therefore, proved to be the second reaction which was catalyzed by the L-phenylalanine inhibitable and repressible prephenate dehydratase.

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Metabolic Brain Disease : Leukodystrophy (대사성 뇌 질환)

  • 김인원
    • Proceedings of the KSMRM Conference
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    • 1999.04a
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    • pp.99-108
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    • 1999
  • 선천성 대사 이상은 다양한 뇌질환으로 나타낸다. 일반적으로 이 질환들은 하나 또는 둘이상의 대사경로에 대한 생화학적 이상에 원인이 있다. 정상적 생화학적 산물의 결핍이나 비정상적 산물의 축적에 의한 뇌기능 이상에 의해 임상증상이 나타내게 되는데 그 증상은 대개 경기, 경직성, 발육지연 등으로 비특이적이고 영상소견도 마찬가지로 비특이적이다. 대사 이상에 있어서의 신경병변은 일부 뇌백질을 주로 침범하는 경우를 제외하면 대부분 뇌백질을 침범하고 따라서 일반적으로 일차성 뇌백질 질환이 대사성 뇌질환을 일컫는다고 할 수가 있다. 뇌백질 질환은 뇌백질의 구성원중 가장 큰 부분을 차지하는 수초(myelin)를 침범하는 질환을 일컫는다. 중추신경계의 백질은 수초로 싸여있는 축삭(axon)과 선경교세포 (neuroglial cell) 및 혈관 등으로 구성되어 있으며, 이중 대부분을 수초가 차지하고 이 수초로 인하여 정상 뇌백질이 흰색을 나타낸다. 백질내의 신경교세포로는 성상세포 (astrocyte) 와 핍지세포 (oligodendrocyte)가 있으며 신 경교세포의 가장 중요한 기능은 핍지세포에 의한 축삭의 외피화 (ensheathment) 즉, 수초이다. 수초는 핍지세포의 세포질 돌기 (cytoplasmic process)의 일부이며 따라서 수초의 생존과 대사는 핍지세포와 운명을 같이한다. 일반적으로 세포의 생존, 대사와 가장 관련있는 기능은 세포질내에 함유되어 있는 구조물인 소기관(organelle)에 의하여 수행된다. 따라서, 비록 모든 소기관들이 백질 질환을 이르키는데 직접 연관되어 있지는 않더라도 수초의 생존과 대사에는 핍지세포의 소기관들이 매우 중요한 역할을 하게 된다. 세포질내 중요한 소기관으로는 세포 막, 미토콘드리아 (mitochondria), endoplasmic reticulum, Golgi 체, lysosome, peroxisome 그리고 세포질등이 있으며, 이들중에서 lysosomes, peroxisomes, 그리고 미토콘드리아가 특정한 유전성 백질질환에 중요한 역할을 하는 것이 밝혀졌다. 이러한 질환들은 최소한 각 소기관에 의한 질환군으로 분류될 수 있다.

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Determination of pseudoephodrine, dextromethorphan and their metabolites in human urine by gas chromatography - mass spectrometry (GC/MS를 이용한 소변 중 Pseudoephedrine과 Dexrormethorphan 및 대사체의 동시분석)

  • Lee, Won Woong;Ahn, Sung-Ho;Lee, Sung-Woo;Hong, Jongki
    • Analytical Science and Technology
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    • v.20 no.4
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    • pp.315-322
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    • 2007
  • This study has been described the metabolism and excretion in a healthy male urine collected for 24 hr after oral administration of a complex (pseudoephedrine and dextromethorphan). To detect the trace amounts of parent drugs and their metabolites, acid-hydrolyzed urine was extracted and derivatized with MSTFA and MBTFA followed by gas chromatography/mass spectrometric analysis. Two parent drugs and their metabolites were tentatively identified as their derivatives based on the mass spectral interpretation and compared with previous reports. In addition, the time profile of urinary excretion rate for parent drugs and metabolites was studied. On the basis of metabolites identified and excretion rate, the metabolic pathways of both drugs are suggested.

A Study on the Degradation of 3,4-Dichloroaniline by a Soil Fungus, Chaetomium globosum (Part I) -With Special Emphasis on Acetylation- (토영사상균(土壤絲狀菌) Chaetomium globosum에 의(依)한 3,4-Dichloroaniline의 변화(變化)에 관(關)한 연구(硏究) 제1보(第一報) -특(特)히 Acetylation을 중심(中心)으로-)

  • Lee, Jae-Koo;Kim, Ki-Cheol
    • Applied Biological Chemistry
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    • v.21 no.3
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    • pp.197-203
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    • 1978
  • In order to investigate mechanisms related to the microbial degradation of 3,4-dichloroaniline, it was incubated with a soil fungus, Chaetomium globosum and the following results were obtained. (1) 3,4-Dichloroacetanilide turned out to be the major metabolite, indicating that acetylation is the major scheme. (2) The presence of trace amounts of 3,4-dichloronitrobenzene, 3,3', 4,4'-tetrachloroazo-benzene, 3,4-dichloroaniline is suggestive of the aromatic amine oxidation as the minor pathway. (3) Other metabolites with m/e 112, 114, and 279 were also isolated, but their identities are under investigation. (4) Dechlorination occurring during incubation indicates the possibility of forming hydroxylated and other metabolites.

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Menthol biosynthesis pathway in Mentha piperita suspension cells (박하(Mentha piperita) 세포 현탁배양에서 멘톨생합성 경로)

  • Park, Si-Hyung;Chae, Young-Am;Lee, Hyong-Joo;Kim, Soo-Un
    • Applied Biological Chemistry
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    • v.36 no.5
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    • pp.358-363
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    • 1993
  • The metabolic capability of the cultured cells of peppermint was tested with whole intact cells by feeding appropriate exogenous substrates to the suspension cultures. Conversion of (-)-limonene into any other monoterpenes was not observed with the suspension cultures. (+)-Pulegone was converted into (+)-isomenthone and (-)-menthone, and (-)-menthone into (-)-menthol. The experiments confirmed that the suspension retained most of the menthol biosynthesis pathway in the cell except for a few loci. (-)-Isopiperitenone was transformed into (+)-pulegone, piperitenone, (-)-7-hydroxyisopiperitenone and two unidentified products.

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Correlation Between Protein-Protein Interaction Network and KEGG Path Flow Network (단백질 상호작용 네트워크와 KEGG경로 흐름 네트워크의 비교)

  • Cho, Sung Jin;Kim, Hak Yong
    • Proceedings of the Korea Contents Association Conference
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    • 2011.05a
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    • pp.347-348
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    • 2011
  • 단백질 상호작용 네트워크에 대한 분석은 거시적인 생물학적 현상을 이해하는 하나의 수단으로써 보편적인 연구방법으로 활용하고 있다. 매우 복잡한 단백질 상호작용 네트워크로부터 유용한 정보를 도출하는 연구의 일환으로 우리는 단백질 네트워크에 있는 단백질들이 KEGG 경로에 있는 생체대사와의 연관성을 분석하였다. 여기서 구축된 네트워크를 KEGG 경로 흐름 네트워크로 명명하고 두 네트워크 사이의 연관성을 분석하였다. 이를 위해 피루브산 탈수소 효소 및 알파-케토글루탐산 탈수소 효소 2차 상호작용 네트워크의 전체 단백질 목록을 기반으로 각각의 KEGG 경로들을 추출하였다. 각 KEGG 경로들에 나타난 단백질들을 통해 KEGG 경로 흐름 네트워크를 구축하였고 이 흐름 네트워크에 포함된 단백질의 분류를 통하여 유용한 정보를 추출하였다.

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Reactive Intermediates and Reaction Mechanisms in the Oxidative Metabolism of Organophosphorus Compounds (유기인계 화합물의 산화대사중 반응성 중간체와 반응기작에 관한 고찰)

  • Kim, Jeong-Han;Toia, Robert F.;Park, Chang-Kyu
    • Korean Journal of Environmental Agriculture
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    • v.15 no.2
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    • pp.246-261
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    • 1996
  • Organophosphorus pesticides, which are an important part of synthetic pesticides in current use contain sulfur atom in their molecules and can be activated or detoxified by environmental and/or biological metabolism. Among the related metabolic reactions, oxidative processes are particularly important with their final products and the study on the reactive intermediates formed in those reactions is essential to elucidate the metabolic pathways and mechanisms and to understand the toxicological properties. This review dealt with the reactive intermediates formed in various reactions from the structural and mechanistic point of view for organophosphorus pesticides and related compounds.

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Metabolism of Dietary Carotenoids and Effects to Improve the Body Color of Cultured Flounder and Red sea bream (양식 넙치, 참돔의 사료 Carotenoids 대사와 체색개선에 미치는 영향)

  • HA Bong-Seuk;KANG Dong-Soo;KIM Jong-Hyun;CHOI Ok-Soo;RYU Ho-Young
    • Korean Journal of Fisheries and Aquatic Sciences
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    • v.26 no.2
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    • pp.91-101
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    • 1993
  • To investigate the effects on pigmentation and carotenoid metabolism of red sea breams Pagrus major and flounders Paralichithys olivaceus by the supplemented carotenoids, fishes wire fed the diet each containing ${\beta}$-carotene, lutein ester, astaxanthin, astaxanthin monoester, astaxanthin diester and ${\beta}$-apo-8'-carotenal for 8 weeks. Carotenoids in the integuments were analyzed. In cultured red sea breams with supplemented carotenoids, carotenoid deposition and pigmentation were higher in order of astaxanthin diester group, ${\beta}$-apo-8'-carotenal group and astaxanthin monoester group. The main carotenoids of red sea breams were astaxanthin diester, tunaxanthin and ${\beta}$-carotene. Difference in the content of astaxanthin diester and ${\beta}$-carotene was observed from natural and cultured red sea breams. In cultured flounders with supplemented carotenoids, carotenoid deposition and pigmentation were higher in order of ${\beta}$-carotene group and lutein ester group. The main carotenoids of flounders were zeaxanthin and lutein. Difference in lutein and ${\beta}$-carotene contents was observed from the natural and cultured flounders. Based on the contents and composition of carotenoids in each group after feeding experimental diet, carotenoid metabolism in red sea breams were presumed the reductive metabolic pathway, astaxanthin to tunaxanthin, and likewise, in flounders, lutein to tunaxanthin.

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Conserved COG Pathways and Genes of 122 Species of Archaea (고세균 122종의 보존적 COG pathways와 유전자)

  • Dong-Geun Lee ;Sang-Hyeon Lee
    • Journal of Life Science
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    • v.33 no.11
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    • pp.944-949
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    • 2023
  • The purpose of this study was to identify conserved metabolic pathways and conserved genes in 122 archaeal species. Using the Clusters of Orthologous Groups of Proteins (COG) database of conserved genes, we analyzed whether 122 species had 63 COG metabolic pathways, the 822 COGs that compose them, and a total of 4,877 COGs. Archaeal ribosomal proteins were the most conserved in metabolic pathways. 46 COGs in seven COG pathways among 63 COG pathways and 20 COGs in others were conserved in 122 species. Some genes involved in cell wall and extracellular matrix synthesis, replication, transcription, translation, and protein metabolism were common to all 122 species. When the distance value of the phylogenetic tree was analyzed at the phylum level or class level, the average was the lowest at the class Halobacteria of the phylum Euryarchaeota. Standard deviation was high for the class Nitosospharia of the phylum Thaumarchaeota, the unclassified members of phylum Thaumarchaeota, the class Halobacteria of the phylum Euryarchaeota, the class Thermoprotei of the phylum Crenarchaeota, and other archaea. Furthermore, the phylogenetic tree analysis revealed six commonalities. The results of this study, along with data on conserved genes, could be used for drug development and gene selection for strain improvement.