• 제목/요약/키워드: covalent binding

검색결과 66건 처리시간 0.021초

실리카 코팅된 자성 나노입자로의 효소 고정화에 사용된 작용기가 리파아제의 활성과 안정성에 미치는 영향 (Effect of functional group on activity and stability of lipase immobilized on silica-coated magnetite nanoparticles with different functional group)

  • 이혜린;김문일;홍상은;최재영;김영민;윤국로;이승호;하성호
    • 분석과학
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    • 제29권3호
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    • pp.105-113
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    • 2016
  • 고정화 지지체로 사용된 실리카 나노입자와 실리카 코팅된 자성 나노입자에 작용기를 부착시켜 기능성을 부가한 후 효소인 리파아제를 고정화하여 리파아제의 안정성을 향상시키고자 연구를 수행하였다. 지지체에 부착하는 작용기가 고정화된 효소의 활성과 안정성에 미치는 영향도 살펴보았다. 실리카 나노입자와 실리카 코팅된 자성 나노입자에 부착한 작용기인 epoxy group과 amine group은 glycidyl methacrylate과 aminopropyl triethoxysilane을 통해 실리카 나노입자와 실리카 코팅된 자성 나노입자 표면에 각각 부착하였다. 작용기가 부착된 실리카 나노입자와 실리카 코팅된 자성 나노입자에 고정화한 Candida rugosa lipase는 자유효소에 비해 초기반응속도는 다소 낮았지만, 3 회 재사용한 후 측정한 활성이 최초 활성 대비 92 % 이상의 활성을 유지하였다. 또한, 실리카 코팅된 자성 나노입자에 glutaraldehyde를 이용한 cross-linked enzyme aggregate (CLEA) 방법과 공유결합법을 통해 라파아제를 각각 고정화한 연구를 수행한 결과, 실리카 나노입자와 실리카 코팅된 자성 나노입자에 CLEA 방법과 공유결합법으로 각각 고정화한 Candida rugosa lipase는 자유효소에 비해 초기반응속도 뿐만 아니라 최종 활성도 높았고, 5 회 재사용한 후 측정한 활성이 최초 활성 대비 73 % 이상의 활성을 유지하였다.

화학적 발암원의 조직 특이성 암유발기전 - DMBA와 NMU의 선택적 유암 발생기전을 중심으로 (Molecular Basis of Organospecific Carcinogensis by Chemical Carcinogens-Study with Breast Cancer Specific Carcinogens: DMBA as an Indirect-Acting carcinogen and NMU as a Direct-Acting cancinogen.)

  • 박종영;김승원;박상철
    • 한국환경성돌연변이발암원학회지
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    • 제9권1호
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    • pp.1-12
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    • 1989
  • 특정 발암원의 조직특이성 암유발기전을 연구하기 위하여 DMBA의 구강투여 또는 NMU의 동맥주입에 의하여 유암이 유도되는 실험모델을 대상으로 선택하였다. 본 실험에서는 화학적 발암원의 유암유발기전에 미치는 숙주인 흰쥐의 연령효과를 아울러 비교분석하였으며, 특히 발암원의 조직내 활성화, 불활화 및 해독 그리고 DNA 손상과 수성등의 변화를 구명하였다. 유암의 발생율은 1년생 흰쥐보다 생후 50일 흰쥐에서 현저하게 높았다. 특정조직의 선택적 발암기전을 설명하는 기전의 일환으로 조직 DNA의 특정 발암원에 의한 공유결합성 지표(covalent binding index, CBI)를 발암원의 활성화 기전 지표로는 cytochrome P450의 함량을 반면 불확화의 지표로는 glutathione S-transferase와 peroxide의 활성을 비교하였다. 조직의 CBI는 생후 50일군의 유선조직이 DMBA나 NMU에 대하여 간조직보다 유의하게 높았으며 시험관내 CBI 실험에서는 생후 50일군 유선조직의 microsome 분획의 발암원 활성화능이 보다 높음을 관찰하였다. 또한 T.C.D.D. 의존성 cytochrome P450 함량도 생후 50일군에서 가장 높았다. 그러나 불활화 효소들은 연령 변화에 따라 유의한 변화를 보여주지 않았다. 상기의 결과들은 DMBA나 NMU와 같은 발암물질이 특정조직, 특히 유선조직에 생후 50일군에서 유암을 선택적으로 유발하는 기전은 표적 조직의 높은 발암원 활성화능, 낮은 불활화등 그리고 효율이 낮은 DNA 수선능이 연계적으로 작동함으로써 이루어지고 있음을 보여주고 있다.

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Investigation of the Copper (Cu) Binding Site on the Amyloid beta 1-16 (Aβ16) Monomer and Dimer Using Collision-induced Dissociation with Electrospray Ionization Tandem Mass Spectrometry

  • Ji Won Jang;Jin Yeong Lim;Seo Yeon Kim;Jin Se Kim;Ho-Tae Kim
    • Mass Spectrometry Letters
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    • 제14권4호
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    • pp.153-159
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    • 2023
  • The copper ion, Cu(II), binding sites for amyloid fragment Aβ1-16 (=Aβ16 ) were investigated to explain the biological activity difference in the Aβ16 aggregation process. The [M+Cu+(z-2)H]z+ (z = 2, 3 and 4, M = Aβ16 monomer) and [D+Cu+(z-2)H]z+ (z = 3 and 5, D = Aβ16 dimer) structures were investigated using electrospray ionization (ESI) mass spectrometry (MS) and tandem mass spectrometry (MS/MS). Fragment ions of the [M+Cu+(z-2)H]z+ and [D+Cu+(z-2)H]z+ complexes were observed using collision-induced dissociation MS/MS. Three different fragmentation patterns (fragment "a", "b", and "y" ion series) were observed in the MS/MS spectrum of the (Aβ16 monomer or dimer-Cu) complex, with the "b" and "y" ion series regularly observed. The "a" ion series was not observed in the MS/MS spectrum of the [M+Cu+2H]4+ complex. In the non-covalent bond dissociation process, the [D+Cu+3H]5+ complex separated into three components ([M+Cu+H]3+, M3+, and M2+), and the [M+Cu]2+ subunit was not observed. The {M + fragment ion of [M+Cu+H]3+} fragmentation pattern was observed during the covalent bond dissociation of the [D+Cu +3H]5+ complex. The {M + [M+Cu+H]3+} complex geometry was assumed to be stable in the [D+Cu+3H]5+ complex. The {M + fragment ion of [M+Cu]2+} fragmentation pattern was also observed in the MS/MS spectrum of the [D+Cu+H]3+ complex. The {M + [y9+Cu]1+} fragment ion was the characteristic fragment ion. The [D+Cu+H]3+ and [D+Cu+3H]5+ complexes were likely to form a monomer-monomer-Cu (M-M-Cu) structure instead of a monomer-Cu-monomer (M-Cu-M) structure.

Partial Purification of Protein X from the Pyruvate Dehydrogenase Complex of Bovine Kidney

  • 류재하;허재욱;홍성열;송병준
    • 한국응용약물학회:학술대회논문집
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    • 한국응용약물학회 1994년도 춘계학술대회 and 제3회 신약개발 연구발표회
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    • pp.260-260
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    • 1994
  • Mammalian pyruvate dehydrogenase complex(PDC) enzyme consists of multiple oopies of three major oligomeric enzymes-El, E2 E3. And protein X is one of the enzymatic constituents which is tightly bound to E2 subunit This complex enzyme is responsible for the oxidative decarboxylation of pyruvate producing of acetyl CoA which is a key intermediate for the entry of carbohydrates into the TCA cycle for its complete metabolic conversion to CO$_2$. And the overall activity of the complex enzyme is regulated via covalent nodification of El subunit by a El specific phosphatase ad kinase. Protein X has lipoyl moiety that undergoes reduction and acetylation during ezymatic reaction and has been known h be involved in the binding of E3 subunit to E2 core and in the regulatory activity of kinase. The purification of protein X has not been achieved majorly because of its tight binding to E2 subunit The E2-protein X subcomplex was obtained by the established methods and the detachment of protein X from E2 was accomplished in the 0.1M borate buffer containing 150mM NaCl. During the storage of the subcomplex in frozen state at -70$^{\circ}C$, the E2 subunit was precipitated and the dissociated protein X was obtained by cntrifegation into the supernatant The verification of protein X was accomplished by (1)the migration on SDS-PAGE, (2)acetylation by 〔2$\^$-l4/C〕 pyruvate, and (3)internal amino acid sequence analysis of tryptic digested enzyme.

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Diabetic Atherosclerosis and Glycation of LDL(Low Density Lipoprotein)

  • Park, Young-June;Kim, Tae-Woong
    • Preventive Nutrition and Food Science
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    • 제1권1호
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    • pp.134-142
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    • 1996
  • Diabetes carries an increased risk of atherosclerotic disease that is not fully explained by known car-diovascular risk factors. There is accumulating evidence that advanced glycation of structural proteins, and oxidation and glycation of circulating lipoproteins, are implicated in the pathogenesis of diabetic ather-osclerosis. Reactions involving glycation and oxidation of proteins and lipids are believed to contribute to atherogenesis. Glycation, the nonenzymatic binding of glucose to protein molecules, can increase the ather-ogenic potential of certain plasma constituents, including low density lipoptotein(LDL). Glycation of LDL is significant increased in diabetic patients compared with normal subjects, even in the presence of good glycemic control. Metabolic abnormalities associated with glycation of LDL include diminished recognition of LDL by the classic LDL receptor; increased covalent binding of LDL in vessel walls ; enhanced uptake of LDL by the macrophages, thus stimulating foam cell formation ; increased platelet aggregation; formation of LDL-immune complexes ; and generation of oxygen free radicals, resulting on oxidative damage to both the lipid and protein components of LDL and to any nearby macromolecules. Oxidized lipoproteins are characterzied by cytotoxicity, potent stimulation of foam cell formation by macrophages, and procoagulant effects. Combined glycation and oxidation, "glycoxidation" occurs when oxidative reactions affect the initial products of glycation, and results in irreversible structural alterations of proteins. Glycoxidation is of greatest significance in long lived proteins such as collagen. In these proteins, glycoxidation products, believed to be atherogenic, accumulate with advancing age : in diabetes, their rate of accumulate is accelerated. Inhibition of glycation, oxidation and glycoxidation may form the basis of future antiaterogenic strategies in both diabetic and nondiabetic individuals.dividuals.

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초고압 소결된 다이아몬드/실리콘 카바이드 복합재료의 계면특성 및 기계적 특성 (Interfacial Characteristics and Mechanical Properties of HPHT Sintered Diamond/SiC Composites)

  • 박희섭;류민호;홍순형
    • 한국분말재료학회지
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    • 제16권6호
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    • pp.416-423
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    • 2009
  • Diamond/SiC composites are appropriate candidate materials for heat conduction as well as high temperature abrasive materials because they do not form liquid phase at high temperature. Diamond/SiC composite consists of diamond particles embedded in a SiC binding matrix. SiC is a hard material with strong covalent bonds having similar structure and thermal expansion with diamond. Interfacial reaction plays an important role in diamond/SiC composites. Diamond/SiC composites were fabricated by high temperature and high pressure (HPHT) sintering with different diamond content, single diamond particle size and bi-modal diamond particle size, and also the effects of composition of diamond and silicon on microstructure, mechanical properties and thermal properties of diamond/SiC composite were investigated. The critical factors influencing the dynamics of reaction between diamond and silicon, such as graphitization process and phase composition, were characterized. Key factor to enhance mechanical and thermal properties of diamond/SiC composites is to keep strong interfacial bonding at diamond/SiC composites and homogeneous dispersion of diamond particles in SiC matrix.

반도체 HgCdTe의 전자 밀도 분포와 결정 구조 (The electron density distribution and the structure of semiconductor HgCdTe)

  • Kook-Sang Park;Ky-Am Lee
    • 한국결정성장학회지
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    • 제4권4호
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    • pp.388-394
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    • 1994
  • 단결정 Hg(1-x)Cd(x)Te (MCT,X=0,21)가 특수 제작된 고압로에서 Traveling Heater Method(THM)으로 성장되었다.X-선 회절 실험으로 MCT는 입방ZnS 구조임을 확인하였다. 측정된 격자상수는 $6.464 {\AA}$이엇으며, J.C.Wooley가 측정한 값과 비교하여 얻은 MCT의 성분비는 0.21이었다.MCT의 결정 구조를 분석하기 위하여 X-선 회절 강도로 부터 전자 밀도를 계산하였다.전자 분포 밀도도로 부터 MCT는 주로 공유 결합을 하고 있으며, 인접 원자들 상에는 사면체 구조를 이루고 있음을 알 수 있다. 격자 상수가 Vegard line으로 부터 편이 되는 원인은 성분비x가 증가될 때 원자간 거리 변화의 비선형적 증가로 판단되며, 이것은 결합 에너지와 관련될 것으로 추축된다.

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Enzymatic Production of D-Tagatose, a Sugar-substituting Sweetener, from D-Galactose

  • Noh, Hoe-Jin;Kim, Pil
    • 한국미생물생명공학회:학술대회논문집
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    • 한국미생물생명공학회 2000년도 Proceedings of 2000 KSAM International Symposium and Spring Meeting
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    • pp.68-75
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    • 2000
  • D-Tagatose is a potential bulking agent in food as a non-calorific sweetener. To produce D-tagatose from cheaper resources, plasmids harboring the L-arabinose isomerase gene (araA) from Escherichia coli was constructed because L-arabinose isomerase was previously suggested as an enzyme that mediates the bioconversion of galactose to tagatose as well as that of arabinose to ribulose. In the cultures of recombinant E.coli with pTC101, which harboring araA of E.coli, tagatose was produced from galactose in 9.9 % yield. The enzyme extract of E.coli containing pTC101 also converted galactose into tagatose in 96.4 % yield. For the economic production of D-tagatose, an L-arabinose isomerase of E.coli was immobilized using covalent binding on agarose. While the free L-arabinose isomerase produced tagatose with the rate of 0.48 mg/U$.$day, the immobilized one stably converted galactose into average 7.5 g/l$.$day of tagatose during 7 days with higher productivity of 0.87 mg/U$.$day. In the scaled up immobilized enzyme system, 99.9 g/l of tagatose was produced from galactose with 20 % equilibrium in 48 hrs. The process was stably repeated additional 2 times with tagatose production of 104.1 and 103.5 g/l.

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Molecular Mechanism of Action of Local Anesthetics: A Review

  • Yun, Il;Kang, Jung-Sook
    • 생명과학회지
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    • 제2권2호
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    • pp.97-107
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    • 1992
  • 비록 국소마취제가 신경세포막 당단백질중의 하나인 sodium channel과의 직접적인 상호작용에 의하여 그 특유의 국소마취제를 나타낸다고 할지라도 신경세포막의 골격을 형성하고 있는 지질과 국소마취제와의 상호작용을 분자적 국소마취제 작용기전을 설명함에 있어 배제할 수는 없다. 왜냐하면 sodium channel은 지질과의 공유 또는 비공유결합을 통해 단단하게 결합되어 있기 때문이다. 따라서 국소마취제가 직접 sodium channel과 결합, 상호작용하여 Na+의 유입을 차단할 뿐만 아니라 직접 지질의 측방 및 회전확산 운동을 증가시킴으로써 간접적으로 sodium channel의 conformational change가 유발되어 Na+의 유입이 차단되는 등의 복합적인 기전에 의하여 그 특유의 국소마취작용이 나타나는 것이다.

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Production of dTDP-4-keto-6-deoxy-D-glucose by Immobilization of dTDP-D-glucose 4,6-dehydratase

  • Kharel, Mandan-Kumar;Liou, Kwang-Kyoung;Sohng, Jae-Kyung;Lee, Hei-Chan
    • Journal of Microbiology and Biotechnology
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    • 제14권2호
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    • pp.297-301
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    • 2004
  • The dTDP-D-glucose 4,6-dehydratase from Salmonella enterica was immobilized using covalent binding to cyanogen bromide activated sepharose. The immobilized enzyme was used to produce dTDP-4-keto-6-deoxy-D-glucose, a key sugar intermediate that can be used economically to produce diverse classes of unusual sugars appended in various antibiotics. The enzyme was immobilized on the sepharose after activation with cyanogen bromide. The maximum immobilization (80.03%) was achieved after 14 h of coupling. The covalently immobilized enzyme was stable, and an average of 78.4 % conversion was achieved until 120 h of immobilization when it was repeatedly used. Similar conversion was noticed for the first batch using the enzyme entrapped-hydrogel but activity was gradually decreased in the following batches. The production of dTDP-4-keto-6-deoxy-D-glucose by using an immobilized enzyme has high potential for commercial application.