• 제목/요약/키워드: enzymatic degradation

검색결과 196건 처리시간 0.032초

갈색부후균의 효소시스템을 이용한 목질계 바이오매스의 효소당화 (Enzymatic sccharification of lignocellulosic biomass by enzyme system of brown-rot fungi)

  • 윤정준;차창준;김영숙;김영균
    • 한국신재생에너지학회:학술대회논문집
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    • 한국신재생에너지학회 2006년도 추계학술대회
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    • pp.529-532
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    • 2006
  • Recently the production of ethanol from lignocecllulosics has received much attention due to immense potential for conversion of renewable biometerials into biofuels and chemicals. Fomitopsis palustris causes a typycal brown-rot and is unusual in that it rapidly depolymerize the cellulose in wood without removing the surrounding lignin that normally prevents microbial attack. This study demonstrated that the brown rot basidiomycete F. palustris was able to degrade crystalline cellulose. This fungus could also produce the three major cellulases (BGL, EXG and EG) when the cells were grown on 2.0% Avicel. The fungus was able to degrade both the crystalline and amorphous forms of cellulose from woody biomasses. Moreover, we found that this fungus has the processive EG like CBH which are able to degrade the crystalline region of cellulose. To establish the cellulase system in relation with degradation of woody biomass, we performed that purification, characterization and molecular cloning of a BGL, EGs and GLA from F. palustris grown on Avicel.

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Chemically Induced Cellular Proteolysis: An Emerging Therapeutic Strategy for Undruggable Targets

  • Moon, Seonghyeon;Lee, Byung-Hoon
    • Molecules and Cells
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    • 제41권11호
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    • pp.933-942
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    • 2018
  • Traditionally, small-molecule or antibody-based therapies against human diseases have been designed to inhibit the enzymatic activity or compete for the ligand binding sites of pathological target proteins. Despite its demonstrated effectiveness, such as in cancer treatment, this approach is often limited by recurring drug resistance. More importantly, not all molecular targets are enzymes or receptors with druggable 'hot spots' that can be directly occupied by active site-directed inhibitors. Recently, a promising new paradigm has been created, in which small-molecule chemicals harness the naturally occurring protein quality control machinery of the ubiquitin-proteasome system to specifically eradicate disease-causing proteins in cells. Such 'chemically induced protein degradation' may provide unprecedented opportunities for targeting proteins that are inherently undruggable, such as structural scaffolds and other non-enzymatic molecules, for therapeutic purposes. This review focuses on surveying recent progress in developing E3-guided proteolysis-targeting chimeras (PROTACs) and small-molecule chemical modulators of deubiquitinating enzymes upstream of or on the proteasome.

Design of Ultra-sonication Pre-Treatment System for Microalgae CELL Wall Degradation

  • Yang, Seungyoun;Mariappan, Vinayagam;Won, Dong Chan;Ann, Myungsuk;Lee, Sung Hwa
    • International journal of advanced smart convergence
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    • 제5권2호
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    • pp.18-23
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    • 2016
  • Cell walls of microalgae consist of a polysaccharide and glycoprotein matrix providing the cells with a formidable defense against its environment. Anaerobic digestion (AD) of microalgae is primarily inhibited by the chemical composition of their cell walls containing biopolymers able to resist bacterial degradation. Adoption of pre-treatments such as thermal, thermal hydrolysis, ultrasound and enzymatic hydrolysis have the potential to remove these inhibitory compounds and enhance biogas yields by degrading the cell wall, and releasing the intracellular algogenic organic matter (AOM). This paper preproposal stage investigated the effect of different pre-treatments on microalgae cell wall, and their impact on the quantity of soluble biomass released in the media and thus on the digestion process yields. This Paper present optimum approach to degradation of the cell wall by ultra-sonication with practical design specification parameter for ultrasound based pretreatment system. As a result of this paper presents, a microalgae system in a wastewater treatment flowsheet for residual nutrient uptake can be justified by processing the waste biomass for energy recovery. As a conclusion on this result, Low energy harvesting technologies and pre-treatment of the algal biomass are required to improve the overall energy balance of this integrated system.

감마선 조사 처리에 의한 결명자 줄기의 전처리와 효소가수분해 효과 (Effect of Gamma Ray Irradiation on the Pretreatment and Enzymatic Hydrolysis of Senna tora Stalk)

  • 김조은;공성호;정진태;이옥란;이재원
    • 한국약용작물학회지
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    • 제26권2호
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    • pp.127-133
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    • 2018
  • Background: The demand of recycling renewable agricultural by-products is increasing. Radiation breeding is a method used to improve saccharification efficiency. Thus, we investigated the effect of gamma ray irradiation on the pretreatment and enzymatic hydrolysis of the stalks of Senna tora, an important medicinal plants. Methods and Results: S. tora seeds were irradiated with gamma ray at doses of 100, 200, 300, and 400 Gy. In the pretreated biomass, glucan and lignin content were higher in the M1 ($1^{st}$ generations of irradiation) S. tora stalks than in the M2 ($2^{nd}$ generations of irradiation) stalks, this can be explained by the higher degradation rate in M1. After oxalic acid pretreatment, the concentration of total phenolic compounds (TPCs) in the hydrolysate increased in the gamma ray treated seeds. The highest relative increase rate in crystallinity in the pretreated biomass was observed in M1-400 Gy and M2-100 Gy. The cellulose conversion rate was higher in M1 than in M2, except for 200 Gy. Conclusions: Gamma ray irradiation at an appropriate dose can be used to improve the efficiency of pretreatment and enzymatic hydrolysis, thereby increasing biomass availability.

분쇄마찰매체 효소반응계에서 생전분 효소당화를 위한 Glucoamylase와 Alpha-Amylase의 보완작용 (Synergistic Effect of Glucoamylase and $\alpha$-Amylase in Enzymatic Hydrolysis of Raw Corn Starch in an Agitated Bead Reaction System)

  • 이용현;박동찬
    • 한국미생물·생명공학회지
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    • 제18권4호
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    • pp.352-359
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    • 1990
  • 분쇄마찰매체효소반응계에서 glucoamylase와 Alpha-amylase의 보완작용에 의한 옥수수 생전분의 효소당화 mechanism을 규명코자, 분리.정제된 상기 효소의 혼합 비율에 따른 당화양상 및 생성당 조성, 전분입자 구조, 생전분입자의 particle size 분포, X-ray 회절양샹의 변화 등을 관찰하였다. 분쇄마찰매체 효소반응계에서도 효소를 분리하여 사용하였을 때보다 glucoamylase와 $\alpha$-amylase를 혼합사용할 경우 당화율이 크게 향상되었으며, 고순도의 glucose 생산에 적합한 두 효소의 혼합비율은 약 1:1-1:2(unit) 로 판명되었다.

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Heme Oxygenase-1 : Its Therapeutic Roles in Inflammatory Diseases

  • Pae, Hyun-Ock;Chung, Hun-Taeg
    • IMMUNE NETWORK
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    • 제9권1호
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    • pp.12-19
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    • 2009
  • Heme oxygenase (HO)-1 is an inducible enzyme that catalyzes the first and rate-limiting step in the oxidative degradation of free heme into ferrous iron, carbon monoxide (CO), and biliverdin (BV), the latter being subsequently converted into bilirubin (BR). HO-1, once expressed during inflammation, forms high concentrations of its enzymatic by-products that can influence various biological events, and this expression is proven to be associated with the resolution of inflammation. The degradation of heme by HO-1 itself, the signaling actions of CO, the antioxidant properties of BV/BR, and the sequestration of ferrous iron by ferritin all concertedly contribute to the anti-inflammatory effects of HO-1. This review focuses on the anti-inflammatory mechanisms of HO-1 actions and its roles in inflammatory diseases.

Enhanced Expression of Glucose 2-Oxidase in Phlebia tremellosa by Addition of Phthalates

  • Kim, Baik-Joong;Kim, Hye-Won;Choi, Hyoung-T.
    • Mycobiology
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    • 제39권1호
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    • pp.64-66
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    • 2011
  • Most fungi possess several hydrogen peroxide-generating enzymes, glucose oxidase and pyranose oxidase. Pyranose oxidase can use glucose as its substrate to generate hydrogen peroxide. White rot fungi, which degrade diverse recalcitrant compounds, contain lignin-degrading enzymes, and lignin peroxidase and manganese peroxidase require hydrogen peroxide for their enzymatic reactions. In this study, we isolated a cDNA fragment of pyranose oxidase from Phlebia tremellosa using PCR and examined its expression under the degradation conditions of diethylphthalate (DEP). Pyranose oxidase expression was enhanced up to 30% by the addition of DEP, and this result supports the possible involvement of pyranose oxidase in the degradation of recalcitrant compounds.

Enzymatic Degradation of Poly(${\gamma}$-glutamic acid) Hydrogel Prepared by ${\gamma}$-Ray Irradiation

  • Hara, Toshio;Choi, Seong-Hyun;Choi, Woo-Young
    • Journal of Microbiology and Biotechnology
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    • 제11권2호
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    • pp.342-345
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    • 2001
  • A bacterial strain PH-4, which produces an enzyme catalyzing the degradation of crosslinked poly(${\gamma}$-glutamic acid) hydrogels, was isolated and identified as a Flavobacterium sp. The enzyme was obtained by the sonication of the bacterial cells preincubated in a Bouillon medium with shaking, without adding of poly(${\gamma}$-glutamic acid) as an inducer. The products of the hydrogel degraded by the crude enzyme agreed closely with the depolymerized materials in SDS-polyacrylamide gel electrophoresis using methylene blue staining, and with a glutamic acid monomer on thin-layer chromatography, thereby suggesting that strain PH-4 produced a kind of exohydrolase.

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Intraoral ageing of aligners and attachments: Adverse effects on clinical efficiency and release of biologically-active compounds

  • Theodore Eliades;George Eliades
    • 대한치과교정학회지
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    • 제54권4호
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    • pp.199-209
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    • 2024
  • The clinical application of aligners is accompanied by the ageing of the polymer appliances and the attachments used, which may result in inefficiency in reaching the predicted range of tooth movement, and release of compounds and microplastics in the oral cavity as a result of the friction, wear and attrition of the aligner and composite attachment. The purpose of this review is to present the mechanism and effects of in vivo ageing; describe the hydrolytic degradation of aligners and enzymatic degradation of composite attachments; examine the ageing pattern of aligners in vivo, under actual clinical scenarios; and identify a link to the discrepancy between predicted and actual clinical outcome. Lastly, strategies to deal with three potentially critical issues associated with the use of aligners, namely the necessity of weekly renewal, the dissimilar mechanical properties of aligner and attachment resulting in wear and plastic deformation of the aligner, and the development of integuments and biofilms with microbial colonization of the appliance, are discussed.

Aspergillus awamori var. fumeus가 생성하는 효소의 Aflatoxin 분해특성 (Aflatoxin Degradation by an Enzyme from Aspergillus awamori var. fumeus)

  • 이찬;이성택;김영배
    • 한국미생물·생명공학회지
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    • 제20권4호
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    • pp.390-394
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    • 1992
  • Aspergillus awamori var. fumeus가 균체 밖으로 생산하느 aflatoxin 분해인자의 효소적 특성을 조사 하기위하여 그 배양 여액을 aflatoxin B1과 반응시킨 결과 1시간 동안 60의 기질을 분해하였다. 반응속도는 초기에 가장 높았으며 시간이 지날 수록 낮아졌다. 반응속도와 기질농도의 관계는 이중역수 식에서 직선을 보이며 겉보기 $K_m$$10.2{\mu}M$로 측정되었다. 최적온도 및 최적 pH는 각각 $30^{\circ}C$ 및 5로 나타났다. 반응은 분자상 산소를 요구하며 $Co^{2+}$에 의해서 촉진되나 $Fe^{2+}$, $Ca^{2+}$, $Zn^{2+}$, $Cu^{2+}$, 및 $Ba^{2+}$ 등의 이온에 의하여 저해되었다. 또한 KCN과 metyrapone에 의하여 저해되나, $NaIO_4$, cytochrome C 및 NADPH에 의한 영향은 관찰되지 않았다.

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