• 제목/요약/키워드: Selective hydrolysis

검색결과 65건 처리시간 0.027초

항종양활성을 지닌 Enterococcus faecalis 2B4-1의 분리 및 동정 (Isolation and Identification of Enterococcus faecalis 2B4-1 Containing Antitumor Substances.)

  • 박상진;임대석;윤상군;백영진;김창한
    • 한국미생물·생명공학회지
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    • 제26권6호
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    • pp.471-475
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    • 1998
  • 신생아 분변으로부터 장내세균 127균주를 분리하였다. 각각의 균주들의 배양균체를 검정종양세포들에 대해 항종양활성을 측정한 결과, 항종양활성을 나타내는 분리균주는 27균주였고, 그 중 비교적 강한 항종양활성을 보이는 균주는 5균주였으며, 5균주중 위암세포주, SNU-1에 선택적으로 강한 항종양활성을 나타내는 2B4-1 균주를 최종분리하였다. API 20 S system kit를 이용하여 분리 균주 2B4-1을 동정한 결과, Enterococcus faecalis와 99.9%의 % ID value를 나타내었다. 동정된 분리균주 2B4-1과 type strain, Enterococcus faecalis NCTC 775와의 생리생화학적 특성들을 비교해 본 결과, 온도별대 성장률, 내염성, 내산성, arabinose등의 당 이용성 및 통성혐기 상태에서의 생육 등에서는 일치된 결과를 나타내었으나 hippurate hydrolysis test의 음성반응 및 $\beta$-hemolysis test의 음성반응을 나타낸 것으로 보아 Enterococcus faecalis NCTC 775와 2가지의 다른 특성을 나타내었다. 따라서 분리균주 2B4-1은 Enterococus faecalis NCTC 775와는 약간의 특성이 다른 변종으로 확인되어 Enterococcus faecalis 2B4-1으로 동정하였다.

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Control of Molecular Weight, Stereochemistry and Higher Order Structure of Siloxane-containing Polymers and Their Functional Design

  • Yusuke Kawakami;Yuning Li;Yang Liu;Makoto Seino;Chitsakon Pakjamsai;Motoi Oishi;Cho, Yeong-Bee;Ichiro Imae
    • Macromolecular Research
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    • 제12권2호
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    • pp.156-171
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    • 2004
  • We describe the precision synthesis schemes of siloxane-containing polymers, i.e., the control of their molecular weight, stereoregularity, and higher-order structures. First, we found a new catalytic dehydrocoupling reaction of water with bis(dimethylsilyl)benzene to give poly(phenylene-disiloxane). Together with this reaction, we applied hetero-condensations to the synthesis of thermally stable poly(arylene-siloxane)s. The dehydrocoupling reaction was applied to the synthesis of syndiotactic poly(methylphenylsiloxane) and poly(silsesquioxane)s, which we also prepared by hydrolysis and deaminative condensation reactions. We discuss the tendency for loop formation to occur in the synthesis of poly(silsesquioxane) by hydrolysis, and provide comments on the design of functionality of the polymers produced. By taking advantage of the low energy barrier to rotation in the silicon-oxygen bond, we designed selective oxygen-permeable membrane materials and liquid crystalline materials. The low surface free energy of siloxane-containing systems allows surface modification of a blend film and the design of holographic grating materials.

생체모방공학을 이용한 bovine carbonic anhydrase를 SBA-15에 고정화하여 이산화탄소분리와 재구성된 $CaCO_3$ 연구 (Biomimetic sequestration of $CO_2$ and reformation to $CaCO_3$ using bovine carbonic anhydrase immobilized on SBA-15)

  • ;김대훈;임경수;정순관
    • 한국산학기술학회:학술대회논문집
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    • 한국산학기술학회 2010년도 추계학술발표논문집 1부
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    • pp.495-499
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    • 2010
  • The biocatalytic capture of $CO_2$, and its precipitationas $CaCO_3$, over bovine carbonic anhydrase (BCA) immobilized on a pore-expanded SBA-15 support was investigated. SBA-15 was synthesized using TMB as a pore expander, and the resulting porous silica was characterized by XRD, BET, IR, and FE-SEM analysis. BCA was immobilized on SBA-15 through various approaches, including covalent attachment (BCA-CA), adsorption (BCA-ADS), and cross-linked enzyme aggregation (BCA-CLEA). The immobilization of BCA on SBA-15 was confirmed by the presence of zinc metal in the EDXS analysis. The effects of pH, temperature, storage stability, and reusability on the biocatalytic performance of BCA were characterized by examining para-nitrophenyl acetate (p-NPA) hydrolysis. The $K_{cat}/K_m$ values for p-NPA hydrolysis were 740.05, 660.62, and $680.11M^{-1}s^{-1}$, respectively, where as $K_{cat}/K_m$ for free BCA was $873.76M^{-1}s^{-1}$. The amount of $CaCO_3$ precipitate was measured quantitatively using anion-selective electrode and was found to be 12.41, 11.82, or 11.28 mg $CaCO_3$/mg for BCA-CLEA, BCA-ADS, or BCA-CA, respectively. The present results indicate that the immobilized BCA-CLEA, BCA-ADS, and BCA-CA are green materials, and are tunable, reusable, and promising biocatalysts for $CO_2$ sequestration.

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Highly Selective Production of Compound K from Ginsenoside Rd by Hydrolyzing Glucose at C-3 Glycoside Using β-Glucosidase of Bifidobacterium breve ATCC 15700

  • Zhang, Ru;Huang, Xue-Mei;Yan, Hui-Juan;Liu, Xin-Yi;Zhou, Qi;Luo, Zhi-Yong;Tan, Xiao-Ning;Zhang, Bian-Ling
    • Journal of Microbiology and Biotechnology
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    • 제29권3호
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    • pp.410-418
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    • 2019
  • To investigate a novel ${\beta}$-glucosidase from Bifidobacterium breve ATCC 15700 (BbBgl) to produce compound K (CK) via ginsenoside $F_2$ by highly selective and efficient hydrolysis of the C-3 glycoside from ginsenoside Rd, the BbBgl gene was cloned and expressed in E. coli BL21. The recombinant BbBgl was purified by Ni-NTA magnetic beads to obtain an enzyme with specific activity of 37 U/mg protein using pNP-Glc as substrate. The enzyme activity was optimized at pH 5.0, $35^{\circ}C$, 2 or 6 U/ml, and its activity was enhanced by $Mn^{2+}$ significantly. Under the optimal conditions, the half-life of the BbBgl is 180 h, much longer than the characterized ${\beta}$-glycosidases, and the $K_m$ and $V_{max}$ values are 2.7 mM and $39.8{\mu}mol/mg/min$ for ginsenoside Rd. Moreover, the enzyme exhibits strong tolerance against high substrate concentration (up to 40 g/l ginsenoside Rd) with a molar biotransformation rate of 96% within 12 h. The good enzymatic properties and gram-scale conversion capacity of BbBgl provide an attractive method for large-scale production of rare ginsenoside CK using a single enzyme or a combination of enzymes.

2-클로로벤질 알코올 및 2,4-디클로로벤질 알코올 유도체를 이용한 TDI, MDI 및 HDI의 가스크로마토그래피 분석 (Gas Chromatographic Analysis of TDI, MDI and HDI Using 2-Chlorobenzyl Alcohol and 2,4-Dichlorobenzyl Alcohol Derivatives)

  • 윤주송;박준호;이강명;최홍순;조영봉;고상백;차봉석
    • 한국산업보건학회지
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    • 제16권3호
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    • pp.222-232
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    • 2006
  • Objectives: The objective of this study was to propose the total isocyanate analytical method which involves derivation of 2,4-toluene diisocyanate(2,4-TDI), 2,6-toluene diisocyanate(2,6-TDI), 4,4'-methylenediphenyl diisocyanate(4,4'-MDI) and 1,6-hexamethylene diisocyanate(1,6-HDI) using 2-chlorobenzyl alcohol(2-CBA) or 2,4-dichlorobenzyl alcohol(2,4-DCBA), and analyzing of hydrolysate of the synthesized urethane with the gas chromatography(GC)/flame ionization detector(FID), GC/pulsed discharge ionization detector-electron capture detector(PD-ECD) and GC/mass selective detector(MSD). Methods: Urethanes were synthesized by reacting 2,4-TDI, 2,6-TDI, 4,4'-MDI and 1,6-HDI to 2-CBA or 2,4-DCBA. Urethanes was verified by TLC, HPLC/UVD and GC/MSD. For field application, the most suitable condition that 2-CBA coated in glass fiber filter removed completely and urethanes were not removed was searched. 2-CBA generated from hydrolysis of urethanes according to hydrolysis conditions. Diisocyanates were collected on field air and analyzed. Results: Urethanes which were white and solid phase synthesized by reacting 2,4-TDI, 2,6-TDI, 4,4'-MDI, 1,6-HDI and 2-CBA or 2,4-DCBA. And urethanes were verified by TLC, HPLC/UVD and GC/MSD. The most suitable conditions to remove 2-CBA coated in glass fiber filter were $87^{\circ}C$ and 20 mmHg and urethanes were not removed under same condition. Hydrolysis yields of urethanes were 99 % to 111 %. 2-CBA, the hydrolysate of urethanes was analyzed by GC/FID, GC/PD-ECD and GC/MSD. Conclusions: Simultaneous analysis of 2,4-TDI, 2,6-TDI, 4,4'-MDI and 1,6-HDI deriving with 2-CBA and 2,4-DCBA, along with a total isocyanate analysis, was feasible with GC/FID, GC/PD-ECD and GC/MSD. This result will be a guide of further study on total isocyanate analysis.

Sodium glycerolate/Glycerol 용액에 의한 PET 신합섬직물의 분해특성 (Characteristics of PET Microfiber Fabrics Decomposed by Sodium glycerolate/Glycerol Solution)

  • Yoon, Jong Ho;Huh, Man Woo;Bae, Jeong Sook;Cho, Yong Suk
    • 한국염색가공학회지
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    • 제8권2호
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    • pp.16-24
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    • 1996
  • Polyester microfiber fabrics were alcoholysed at 120, 140, and 16$0^{\circ}C$ in 0.5, 1.0, and 1.5% of sodiumglycerolate/glycerol solutions(NaGR) up to 80% and the characteristic decomposition features were compared and discussed with the results of the hydrolysis done by 5% sodium hydroxide solution(NaOH) at 80, 90, and 10$0^{\circ}C$. The resulting activation thermodynamic parameters calculated by the combined use of the Arrhenius equation and the Eyring equation were in NaOH case ${\Delta}H^*$=- 13.89 kcal/mol, ${\Delta}S^*$/=-38.12 cal/mol K, and ${\Delta}G^*$=25.25 kcal/mol and in NaGR case ${\Delta}H^*$=29.81 kcal/mol, ${\Delta}S^*$=-2.29 cal/mol K and ${\Delta}G^*$=30.49 kcal/mol. Since in all cases NaGR-PET system has higher activation thermodynamic parameters, it was concluded that NaGR-PET reaction system is more favorable at high temperatures and occurs in a less selective fashion, in comparison to the NaOH-PET reaction system.

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(${alpha}$-술폰 고급 지방산 모노글리세라이드의 선택적 합성 (The Selective Synthesis of ${alpha}$-Sulfo Long Chain Fatty Acid Monoglyceride)

  • 윤영균;정환균;박성석;김태영;남기대
    • 한국응용과학기술학회지
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    • 제10권1호
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    • pp.31-38
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    • 1993
  • Anionic polyolic surfactants, ${alpha}-sulfo$ fatty acids that straight long chain alkyl group has from 12 to 18 hydrocarbon numbers, was synthesized with sulfur trioxide-dioxane complex to good yields. New sodium ${alpha}-sulfo$ long chain fatty acid monoglyceride were obtained by reaction that the ketalificaticn and esterification of glycerol, acetone and ${alpha}-sulfo$ long chain fatty acid and hydrolysis respectively. These reaction products separated by column chromatography and their $R_{f}$ values($R_{f}{\times}100$) were 19, 21, 24 and 26 respectively. These compounds were identified by infrared spectroscopy and $^{1}H$ NMR spectroscopy.

SENSITIVE DETERMINATION OF ELEVEN PHENOLIC ENDOCRINE-DISRUPTING CHEMICALS IN HUMAN URINE USING GAS CHROMATOGRAPHY/MASS SPECTROMETRY -SELECTED ION MONITORING

  • Kim, Hyub;Jang, Cheol-Hyeon
    • Environmental Engineering Research
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    • 제12권3호
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    • pp.93-100
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    • 2007
  • I improved an analytical method for determining trace amounts of eleven phenolic endocrine-disrupting chemicals (11 phenolic EOCs) in human urine. The 11 phenolic EOCs were subjected to hydrolysis and then to solid phase extraction with a XAD-4 column. Alkylphenols, chlorophenols, and bisphenol A in XAD-4 column were eluted with acetonitrile, and the eluate was concentrated under a nitrogen stream, and then tert-butyldimethylsilylation. Separation and determination were done by gas chromatography, using mass spectrometry operating in the selective ion monitoring mode for quantitation. For tert-butyldimethylsily (TBDMS) derivatization the recoveries were $91.2{\sim}125.9%$, the limits of quantitation (LOQ) for the 11 phenolic EOCs in the nanogram-per-milliliter range ($0.025{\sim}1.000\;ng/mL$) were thus achieved by using 1 mL of urine, and the SIM responses were linear with the correlation coefficient varying by $0.9300{\sim}0.9943$. Based on the results for urine samples from unexposed individuals, 4-tert-octylphenol and pentachlorophenol were detected in hydrolysed urine sample. Other alkylphenols, chlorophenols and bisphenol A were not detected.

Natural Products as Manipulators of Rumen Fermentation

  • Wallace, R. John;McEwan, Neil R.;McIntosh, Freda M.;Teferedegne, Belete;Newbold, C. James
    • Asian-Australasian Journal of Animal Sciences
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    • 제15권10호
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    • pp.1458-1468
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    • 2002
  • There is increasing interest in exploiting natural products as feed additives to solve problems in animal nutrition and livestock production. Essential oils and saponins are two types of plant secondary compounds that hold promise as natural feed additives for ruminants. This paper describes recent advances in research into these additives. The research has generally concentrated on protein metabolism. Dietary essential oils caused rates of NH$_3$ production from amino acids in ruminal fluid taken from sheep and cattle receiving the oils to decrease, yet proteinase and peptidase activities were unchanged. Hyper-ammonia-producing (HAP) bacteria were the most sensitive of ruminal bacteria to essential oils in pure culture. Essential oils also slowed colonisation and digestion of some feedstuffs. Ruminobacter amylophilus may be a key organism in mediating these effects. Saponin-containing plants and their extracts appear to be useful as a means of suppressing the bacteriolytic activity of rumen ciliate protozoa and thereby enhancing total microbial protein flow from the rumen. The effects of some saponins seems to be transient, which may stem from the hydrolysis of saponins to their corresponding sapogenin aglycones, which are much less toxic to protozoa. Saponins also have selective antibacterial effects which may prove useful in, for example, controlling starch digestion. These studies illustrate that plant secondary compounds, of which essential oils and saponins comprise a small proportion, have great potential as 'natural' manipulators of rumen fermentation, to the potential benefit of the farmer and the environment.

Antimicrobial Cyclic Peptides for Plant Disease Control

  • Lee, Dong Wan;Kim, Beom Seok
    • The Plant Pathology Journal
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    • 제31권1호
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    • pp.1-11
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    • 2015
  • Antimicrobial cyclic peptides derived from microbes bind stably with target sites, have a tolerance to hydrolysis by proteases, and a favorable degradability under field conditions, which make them an attractive proposition for use as agricultural fungicides. Antimicrobial cyclic peptides are classified according to the types of bonds within the ring structure; homodetic, heterodetic, and complex cyclic peptides, which in turn reflect diverse physicochemical features. Most antimicrobial cyclic peptides affect the integrity of the cell envelope. This is achieved through direct interaction with the cell membrane or disturbance of the cell wall and membrane component biosynthesis such as chitin, glucan, and sphingolipid. These are specific and selective targets providing reliable activity and safety for non-target organisms. Synthetic cyclic peptides produced through combinatorial chemistry offer an alternative approach to develop antimicrobials for agricultural uses. Those synthesized so far have been studied for antibacterial activity, however, the recent advancements in powerful technologies now promise to provide novel antimicrobial cyclic peptides that are yet to be discovered from natural resources.