• 제목/요약/키워드: thiol group

검색결과 111건 처리시간 0.026초

Aminolysis of Aryl Thiol-2-furoates and Thiol-2-thiophenates in Acetonitrile

  • 오혁근;이준용;이익춘
    • Bulletin of the Korean Chemical Society
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    • 제19권11호
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    • pp.1198-1202
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    • 1998
  • Aminolysis of aryl thiol-2-furoates and thiol-2-thiophenates with benzylainines are investigated in acetonitrile at 50.0 ℃. Relatively large selectivity parameters, ρx(βx), ρz(βx) and ρxz (> 0) together with the valid reactivity-selectivity principle are consistent with a stepwise acyl transfer mechanism with rate-limiting expulsion of the leaving group, thiophenolate anion, from the tetrahedral intermediate, T±. The first-order kinetics with respect to the benzylamine concentration and the relatively large secondary kinetic isotope effect involving deuterated benzylamine nucleophiles suggest a four-center type transition state in which concurrent leaving group departure and proton transfer are involved.

STM Tip Catalyzed Adsorption of Thiol Molecules and Functional Group-Selective Adsorption of a Bi-Functional Molecule Using This Catalysis

  • 민영환;정순정;윤영상;박은희;김도환;김세훈
    • 한국진공학회:학술대회논문집
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    • 한국진공학회 2011년도 제41회 하계 정기 학술대회 초록집
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    • pp.197-197
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    • 2011
  • In this study, in contrast with cases in which Scanning Tunneling Microscopy (STM) tip-induced reactions were instigated by the tunneling electrons, the local electric field, or the mechanical force between a tip and a surface, we found that the tungsten oxide (WO3) covered tungsten (W) tip of a STM acted as a chemical catalyst for the S-H dissociative adsorption of phenylthiol and 1-octanethiol onto a Ge(100) surface. By varying the distance between the tip and the surface, the degree of the tip-catalyzed adsorption could be controlled. We have found that the thiol head-group is the critical functional group for this catalysis and the catalytic material is the WO3 layer of the tip. After removing the WO3 layer by field emission treatment, the catalytic activity of the tip has been lost. 3-mercapto isobutyric acid is a chiral bi-functional molecule which has two functional groups, carboxylic acid group and thiol group, at each end. 3-Mercapto Isobutyric Acid adsorbs at Ge(100) surface only through carboxylic acid group at room temperature and this adsorption was enhanced by the tunneling electrons between a STM tip and the surface. Using this enhancement, it is possible to make thiol group-terminated surface where we desire. On the other hand, surprisingly, the WO3 covered W tip of STM was found to act as a chemical catalyst to catalyze the adsorption of 3-mercapto isobutyric acid through thiol group at Ge(100) surface. Using this catalysis, it is possible to make carboxylic acid group-terminated surface where we want. This functional group-selective adsorption of bi-functional molecule using the catalysis may be used in positive lithographic methods to produce semiconductor substrate which is terminated by desired functional groups.

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티올기를 함유하는 킬레이트 수지의 합성 및 특성 (Synthesis and Characterization of Chelating Resins Containing Thiol Croups)

  • 박인환;방영길;김경만;주혁종
    • 폴리머
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    • 제27권4호
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    • pp.330-339
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    • 2003
  • 폴리(스티렌-co-디비닐벤젠) 수지 페닐고리의 클로로메틸화를 통해 메틸렌티올기를 도입한 수지 (I), 폴리(스티렌-co-메틸 메타아크릴레이트-co-디비닐벤젠) 공중합체의 페닐고리와 에스터기에 클로로메틸화 반응을 거쳐 각각 메틸렌티올기를 도입하여 중금속 이온들과의 배위결합에 필요한공간개념을 배려한 수지(II) 및 폴리(스티렌-co-디비닐벤젠) 수지의 페닐고리를 클로로설폰화한 후, 소디움하이드로술파이드로 티오설폰산화한 수지 (III) 등 3가지 종류의 티올계 구상형 수지들을 합성하였다. 이어, 이들 킬레이트 수지들에 대한 중금속 이온의 흡착경향을 평가한 결과, 티올기 함유 I형 킬레이트 수지는 Hg$^{2+}$에 대해서만 선택적 흡착성을 보였고, 티올기 함유 II형 킬레이트 수지는 Hg$^{2+}$에 대한 흡착성능이 보다 향상되었으며, Cu$^{2+}$, Pb$^{2+}$, C$d^{2+}$ 및 Cr$^{3+}$ 등의 몇몇 중금속 이온들에 대해서도 약간의 흡착능을 보였다. 다른 한편으로, 친수성의 티오설폰산기 함유 III형 킬레이트 수지는 효율적 흡착체로서 Hg$^{2+}$, Cu$^{2+}$, Ni$^{2+}$, Co$^{2+}$ 및 Cr$^{3+}$ 등의 중금속 이온들은 물론, 특히 C$d^{2+}$ 및 Pb$^{2+}$에 높은 흡착능을 보였다.

$eta$-Mercaptoethanol과 Cysteamine 첨가와 Buffalo Rat 간세포 공동배양이 소 체외수정란의 체외발육과 세포내 Glutathione 농도 변화에 미치는 영향 (Effect of $eta$-Mercaptoethanol and Cysteamine with Buffalo Rat Liver Cells(BRLC) on Development and Intracellular Glutathione Concentrations of Bovine IVM/IVF Embryos)

  • 박동헌;양부근;황환섭;정희태;박춘근;김종복;김정익
    • 한국수정란이식학회지
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    • 제12권3호
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    • pp.277-282
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    • 1997
  • The purpose of this experiment was to determine the effects of thiol compounds, $\beta$-mercaptoethanol($\beta$-ME) and cystearrone with buffalo rat liver cell(BRLC) co-culture on the development and intracellular glutathione(GSH) concentrations of bovine embryos produced by in vitro inaturation(IVM) and in vitro fertilization(IVF). Bovine IVM /IVF embryos developed to 2~8 cell stage were co-cultured with BRLC in GRlaa with or without thiol compounds. The developmental rate beyond morulae stage in CRlaa containing 0, 10,25 and 50$\pi$M $\beta$-ME with BRLG were 63.0, 74.0, 72.3 and 77.1%, respectively. And the developmental rate with 0, 25, 50 and 75$\pi$M cystearnine with BRLC were 69.6, 77.6, 81.0 and 76.8%, respectively. The developmental rate beyond morulae stage of GRlaa containing thiol compound with BRLG group was higher than that of control group. The intracellular GSH concentrations of blastocysts cultured for 5 days in GRlaa containing 0 and 50$\pi$M $\beta$-ME or cysteamine with BRLG were 81.2 and 86.4, 83.2 and 84.2pM, respectively. The intracellular GSH concentrations of blastocysts in GRlaa containing thiol compounds with BRLG was slightly higher than that of control group The cell numbers of blastocysts were not difference in all experimental groups. These results indicate that thiol compounds with BRLG co-culture was increased the percentage of developed into morulae and blastocysts, and intracellular GSII concentrations of blastocysts embryos.

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Curcumin-induced Growth Inhibitory Effects on HeLa Cells Altered by Antioxidant Modulators

  • Hong, Jung-Il
    • Food Science and Biotechnology
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    • 제16권6호
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    • pp.1029-1034
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    • 2007
  • Curcumin (diferuloyl methane), originated rhizomes of Curcuma longa L. has been suggested as an anti-inflammatory and anti-carcinogenic agent. In the present study, modulation of cytotoxic effects of curcumin on HeLa cells by different types of antioxidants was investigated. Cytotoxic effects of curcumin were significantly enhanced in the presence of superoxide dismutase (SOD) by decreasing $IC_{50}$ to 15.4 from $26.0\;{\mu}M$ after 24 hr incubation; the activity was not altered by catalase. The effect of curcumin was significantly less pronounced in the presence of 4 mM N-acetylcysteine (NAC). Low concentration (<1 mM) of NAC, however, increased the efficacy of curcumin. Cysteine and ${\beta}$-mercaptoethanol that have a thiol group, showed the similar biphasic patterns as NAC for modulating curcumin cytotoxicity, which was, however, constantly enhanced by ascorbic acid, a non-thiol antioxidant. In the presence of SOD, ascorbic acid, and 0.5 mM NAC, cellular levels of curcumin were significantly increased by 31-66%, whereas 4 mM NAC decreased the level. The present results indicate that thiol reducing agents showed a biphasic effect in modulating cytotoxicity of curcumin; it is likely that their thiol group is reactive with curcumin especially at high concentrations.

카드늄을 처리한 미나리 (Oenanthe javanica)에서 전체 Thiol 잔기, 글루타치온, Phytochelatin의 농도 변화 (Effect of Cadmium Treatment on the Total Thiol Groups, Glutathione and Phytochelatin Contents in Oenanthe javanica)

  • 민복기;최순용;이세영
    • Applied Biological Chemistry
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    • 제40권3호
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    • pp.243-248
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    • 1997
  • 미나리 (O. javanica)는 오염된 하수 등에서도 매우 잘 자라는 식물체이다. 이런 미나리를 phytoremediation에 응용하기 위하여 $50\;{\mu}M$ 카드늄을 처리하여 카드늄에 대한 저항성 및 식물체에 축적된 카드늄을 정량하고 생리적, 생화학적 변화를 조사하였다. 카드늄을 처리하고 3주 뒤에 미나리는 거의 성장저해를 받지 않았으나 대조구로 사용한 담배 (N. tabacum Xanthi)는 75% 성장저해를 받았다. 미나리는 뿌리, 줄기, 잎에 건중량 1 그램당 각각 2.1, 7.3, $113\;{\mu}moles$의 카드늄을 축적하였다. 카드늄을 처리한 미나리의 경우 전체 thiol 잔기의 농도가 카드늄을 처리하지 않은 미나리에 비해 뿌리, 줄기, 잎에서 각각 0.5, 1,7배 증가하였으나 글루타치온 농도의 경우는 대조구에 비해 각각 57%, 30%, 53% 까지 감소하였다. 이를 HPLC로 조사해본 결과 증가된 thiol의 함량은 새로운 thiol 잔기를 지닌 물질의 생성으로 기인된 것이고, retention time을 기초로 이는 phytochelatin인 것으로 보여진다.

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Artemia franciscana cyst의 세포내 산성 Protease (Characterization of Cytosol Acid Protease from Dormant Cyst of Artemia franciscana)

  • 최희선;최경희;류태형
    • 생명과학회지
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    • 제7권3호
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    • pp.228-233
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    • 1997
  • Artemia franciscana의 cyst에서 protease를 정제하가 위해 세포를 파쇄하여 원심 분리한 후 상등액을 회수하였다. 그상등액에서 40-60% 황산암모늄을 첨가하여 침전시켜서 염을 제가한 후, Sphadex G-200 및 DEAE-Sephadex A-50 column chromatography를 하여 정제한 후 본 효소의 특성을 조사한바 그 특성은 아래와 같았다. 정제 과정을 거치는 동안, 비활성은 13.64배 증가하였고, 수율은 7%였다. 그리고 이효소는 pH 6에서는 안정하였으나, pH 8이상에서는 대부분의 활성이 실활 되었고, 최적 pH는 3.0이었다. 따라서 이 효소는 전형적인 산성 pro-tease로 판정되었다. 본 효소는 60$^{\circ}$C이상의 온도에서 대부분 실활 되었고, 최적 활성 반응 온도는 35$^{\circ}$C였다. 금속 이온의 영향을 알아본 결과, $Cu^{++}$, Z$Zn^{++}$, $Fe^{++}$가 효소의 활성을 저해하였고, 중금속 chelator인 EDTA는 반대로 효소 활성을 증가시켰다. 단백질분해효소에 특이적인저해제를 첨가하여 실험한 결과 thiol protease ingibitor인 antipain, chymostatin, leupeptin, E-64, iodoacetate등에 효과적으로 효소활성이 저해받으므로 본 효소는 acid thiol protease라 판정했다.

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Microbacterium sp. EL - 0112L의 Diaminododecane 자화에 관한 연구 (Studies on Utilization of Diaminododecane by Microbacterium sp. EL-0112 L)

  • 이미연;이상준
    • 한국환경보건학회지
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    • 제11권2호
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    • pp.65-75
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    • 1985
  • Microorganisms capable of utilizing diaminododecane containing amine groups diterminally were isolated from the soil by enrichment culture. One strain of these isolated strain, designated as EL-0112L, was selected for this study. The results of this study were as follows. 1. This isolated strain EL-0112L was identified as Microbacterium, from the results of morphological, cultural, and biochemical tests. This isolated strain was named temporarily Microbacterium sp. EL-0112L for convenience. 2. Microbacterium sp. EL-0112L was tested for ability to utilize different kinds of substitued alkanes containing cyan, amine, chloro, and thiol groups(monoterminally or diterminall substituted) as carbon source. Pentamethylenediamine, hexamethylenediamine, n-decane, laurylamine, and alkane derivatives containing cyan, chloro, and thiol groups were not utilized by Microbacterium sp. EL-0112L. 3. The alkane derivatives that did not serve as growth substrates were tested further in oxidation tests using resting cell preparation of Microbacterium sp. EL-0112 L. Alkane derivatives containing cyan, chloro, thiol groups, and n-decane were oxidized by Microbacterium sp. EL-0112 L. It is possible that this isolated strain is also able to degrade their substituted counterparts since they are structually similar to diaminododecane. The remarkable substrates that were being oxidized were dichlorodecane, and 1-dodecanethiol. Microbacterium sp. EL- 0112L could not oxidize pentamethylenediamine, and hexamethylenediamine. 4. The metabolic products formed from diaminododecane by Microbacterium sp. EL-0112 L were acid compound containing carboxyl group and not containing amine group. On the thin layer chromatography, Rf values of these metabolic products were different from that of the product formed by Corynebacterium sp. EL-0112L. These results suggested the specificity of diaminododecane as carbon source.

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PREVENTION OF HYDROXYL RADICAL-INDUCED ERYTHROCYTE HEMOLYSIS BY PROTEIN THIOLS

  • Youn, Hong-Duk;Packer, Lester;Matsugo, Seiichi
    • Journal of Photoscience
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    • 제4권3호
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    • pp.133-140
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    • 1997
  • A system for studying oxidative hemolysis has been used by controling UV-irradiation and concentration of a novel molecular probe, N,N'-bis(2-hydroperoxy-2-methoxyethyl)-1,4,5,8-naphthalenetetra-carboxylic diimide (NP-III), which generates hydroxyl radical upon longer wavelength photoirradiation (> 350 nm). NP-III induces 25~30% of hemolysis at low concentration (50 $\mu$M) for 3h-irradiation of UVA. The simultaneous treatment of N-ethylmaleimide (NEM) with NP-IH completely hemotyzed erythrocytes under the same conditions as NP-III alone by both decreasing thiol group and increasing lipid peroxidation in erythrocyte membrane. However. thiol-reducing agents prevented the protein-crosslinking and lipid peroxidation on the NEM-synergistic hemolysis by partially scavenging hydroxyl radical and maintaining the thiol group of erythrocyte membrane in the reduced state. In addition, erythrocytes pretreated with 2,2,5,7,8-pentamethyl-6-hydroxychromane (PMC), vitamin E homologue was able to delay and decrease the lipid peroxidation when compared to cells pretreated with both NEM and PMC. We suggest that the presence of reduced thiols in inner membrane protein by GSH can prevent the protein-crosslinking and the lipid peroxidation, and eventually prevent the oxidative hemolysis of erythrocyte.

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