• 제목/요약/키워드: bio degradation

검색결과 295건 처리시간 0.028초

Dephosphorylation of p53 Ser 392 Enhances Trimethylation of Histone H3 Lys 9 via SUV39h1 Stabilization in CK2 Downregulation-Mediated Senescence

  • Park, Jeong-Woo;Bae, Young-Seuk
    • Molecules and Cells
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    • 제42권11호
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    • pp.773-782
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    • 2019
  • Cellular senescence is an irreversible form of cell cycle arrest. Senescent cells have a unique gene expression profile that is frequently accompanied by senescence-associated heterochromatic foci (SAHFs). Protein kinase CK2 (CK2) downregulation can induce trimethylation of histone H3 Lys 9 (H3K9me3) and SAHFs formation by activating SUV39h1. Here, we present evidence that the PI3K-AKT-mTOR-reactive oxygen species-p53 pathway is necessary for CK2 downregulation-mediated H3K9me3 and SAHFs formation. CK2 downregulation promotes SUV39h1 stability by inhibiting its proteasomal degradation in a p53-dependent manner. Moreover, the dephosphorylation status of Ser 392 on p53, a possible CK2 target site, enhances the nuclear import and subsequent stabilization of SUV39h1 by inhibiting the interactions between p53, MDM2, and SUV39h1. Furthermore, $p21^{Cip1/WAF1}$ is required for CK2 downregulation-mediated H3K9me3, and dephosphorylation of Ser 392 on p53 is important for efficient transcription of $p21^{Cip1/WAF}$. Taken together, these results suggest that CK2 downregulation induces dephosphorylation of Ser 392 on p53, which subsequently increases the stability of SUV39h1 and the expression of $p21^{Cip1/WAF1}$, leading to H3K9me3 and SAHFs formation.

Characterisation and Co-pyrolytic Degradation of the Sawdust and Waste Tyre Blends to Study the Effect of Temperature on the Yield of the Products

  • Shazali, Erna Rashidah Hj;Morni, Nurul Afiqah Haji;Bakar, Muhammad Saifullah Abu;Ahmed, Ashfaq;Azad, Abul K;Phusunti, Neeranuch;Park, Young-Kwon
    • 공업화학
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    • 제32권2호
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    • pp.205-213
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    • 2021
  • The present study aimed to determine the effect of co-pyrolysis of sawdust biomass and scrap tyre waste employing different blending ratios of sawdust to waste tyre such as 100:0, 75:25, 50:50, 25:75, and 0:100. The thermochemical characterization of feedstocks was carried out by employing the proximate, ultimate analysis, and thermogravimetric (TGA) analyses, calorific values, and scanning electron microscope coupled with energy dispersive x-ray analysis (SEM-EDX) to select the blending ratio having better bioenergy potential amongst the studied ratios. The blending ratio of 25:75 (sawdust to waste tyre) was selected for the co-pyrolysis study in a fixed-bed pyrolysis reactor system based on its solid biofuels properties such as heating value (30.18 MJ/kg), and carbon (71.81 wt%) and volatile matter (63.82 wt%) contents. The pyrolysis temperatures were varied as 500, 600 and 700 ℃ while the other parameters such as heating rate and nitrogen flowrate were maintained at 30 ℃/min and 0.5 L/min respectively. The bio-oil yields as 31.9, 47.1 and 61.2 wt%, bio-char yields as 34.5, 34.2 and 31.4 wt% and gaseous product yields as 33.6, 18.60 and 7.3 wt% at the pyrolysis temperatures of 500, 600 and 700 ℃ respectively were obtained. The blends of sawdust and waste tyres showed the improved energy characteristics which could provide the solution for the beneficial management of sawdust and scrape tyre wastes via co-pyrolysis processing.

포황 메탄올 추출물에 의한 인체 대장암 세포주 HT29의 G2/M Arrest 및 Apoptosis 유발 (Induction of G2/M Arrest and Apoptosis by the Methanol Extract of Typha orientalis in Human Colon Adenocarcinoma HT29 Cells)

  • 진수정;윤승근;오유나;이지영;박현진;진경숙;권현주;김병우
    • 한국미생물·생명공학회지
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    • 제41권4호
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    • pp.425-432
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    • 2013
  • 본 연구에서는 인체 대장암세포인 HT29를 사용하여 포황 메탄올 추출물(Methanol extract of Typha orientalis, METO)의 항암 활성 및 그 분자적 기전에 관하여 분석하였다. 먼저 METO가 다양한 암세포의 증식에 미치는 영향을 분석한 결과, 인체 대장암 세포, 폐암 세포, 간암 세포 등의 세포증식을 억제하였으며 그 중에서도 대장암 세포인 HT29에 대해 강한 세포 증식 억제 효과를 나타내었다. METO에 의한 세포 증식 억제 기전을 분석하기 위하여 Flow cytometry analysis를 수행한 결과, METO 농도의존적으로 HT29 세포의 G2/M기 세포분포가 증가하고 아울러 apoptosis 유발군인 SubG1기 세포분포가 증가하는 것을 확인할 수 있었다. METO에 의한 HT29 세포의 G2/M arrest는 Cdc2의 inactive form인 phospho-Cdc2의 증가에 의한 G2/M checkpoint 관련 단백질의 활성억제에 의한 것이라 사료된다. 이러한 phospho-Cdc2의 증가는 METO에 의해 발현이 증가된 Wee1 kinase와 발현이 감소된 Cdc25C phosphatase에 의해 야기된 것임을 확인하였다. 또한 METO에 의한 HT29의 apoptosis 유도에 관한 분자적 기전 분석을 위해 Western blot analysis를 수행한 결과, METO 농도가 증가할수록 종양 억제 유전자인 p53, death receptor인 FAS, Bcl-2 family 중 pro-apoptotic 단백질인 Bax 및 cytosolic cytochrome C의 발현이 증가되고, Caspase-3가 활성화되어 단편화된 Caspase-3의 증가가 관찰되었다. 또한 활성화된 Caspase-3의 기질 단백질인 PARP의 단편화가 일어나 apoptosis가 유도되는 것을 알 수 있었다. 이상의 결과들로부터 METO는 인체 대장암세포 HT29의 G2/M arrest 및 apoptosis 유도에 의한 항암활성을 보유함을 확인하였다.

Ginsenoside compound K protects against cerebral ischemia/ reperfusion injury via Mul1/Mfn2-mediated mitochondrial dynamics and bioenergy

  • Qingxia Huang;Jing Li;Jinjin Chen;Zepeng Zhang;Peng Xu;Hongyu Qi;Zhaoqiang Chen;Jiaqi Liu;Jing Lu;Mengqi Shi;Yibin Zhang;Ying Ma;Daqing Zhao;Xiangyan Li
    • Journal of Ginseng Research
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    • 제47권3호
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    • pp.408-419
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    • 2023
  • Background: Ginsenoside compound K (CK), the main active metabolite in Panax ginseng, has shown good safety and bioavailability in clinical trials and exerts neuroprotective effects in cerebral ischemic stroke. However, its potential role in the prevention of cerebral ischemia/reperfusion (I/R) injury remains unclear. Our study aimed to investigate the molecular mechanism of ginsenoside CK against cerebral I/R injury. Methods: We used a combination of in vitro and in vivo models, including oxygen and glucose deprivation/reperfusion induced PC12 cell model and middle cerebral artery occlusion/reperfusion induced rat model, to mimic I/R injury. Intracellular oxygen consumption and extracellular acidification rate were analyzed by Seahorse multifunctional energy metabolism system; ATP production was detected by luciferase method. The number and size of mitochondria were analyzed by transmission electron microscopy and MitoTracker probe combined with confocal laser microscopy. The potential mechanisms of ginsenoside CK on mitochondrial dynamics and bioenergy were evaluated by RNA interference, pharmacological antagonism combined with co-immunoprecipitation analysis and phenotypic analysis. Results: Ginsenoside CK pretreatment could attenuate mitochondrial translocation of DRP1, mitophagy, mitochondrial apoptosis, and neuronal bioenergy imbalance against cerebral I/R injury in both in vitro and in vivo models. Our data also confirmed that ginsenoside CK administration could reduce the binding affinity of Mul1 and Mfn2 to inhibit the ubiquitination and degradation of Mfn2, thereby elevating the protein level of Mfn2 in cerebral I/R injury. Conclusion: These data provide evidence that ginsenoside CK may be a promising therapeutic agent against cerebral I/R injury via Mul1/Mfn2 mediated mitochondrial dynamics and bioenergy.

환경조치의 WTO체제 수용에 관한 연구 (Accommodation of Trade Measures for Environment Purposes on the WTO Rules)

  • 채대석;김미정
    • 통상정보연구
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    • 제13권3호
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    • pp.433-457
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    • 2011
  • WTO체제가 출범한 이후 회원국 간에 엄격한 다자간 규정의 적용을 보장함으로써, WTO체제에서의 각종 협정의 권위를 강화하고 효율성을 확보하는 수단으로 평가받아오고 있다. 그러나 국제경제 무역의 확대와 더불어 세계는 지구온난화, 멸종위기종, 천연자원의 고갈 등 환경문제를 고민하고 시작했고, 20세기말에 성립된 수많은 다자간 환경협정들에서 알 수 있듯이, 환경문제에 대한 세계적인 관심이 증가하고 있다. 그러나 WTO체제가 자유무역의 부정적인 효과로 인한 환경파괴와 관련하여 동 문제를 해결할 수 있는지에 대한 많은 도전 및 무역과 환경에 관한 논쟁에 있어서 어려운 쟁점이 있다. 첫째, 환경기준의 조화문제, 둘째, 상품의 공정 및 생산방법(PPMs)에 따른 상품표준의 사용문제, 셋째, 환경기준의 무역의무 위반여부를 결정하는데 있어서 사용될 무역규칙(trade rule) 문제, 넷째, 환경관련 분쟁에 있어서 환경관련 협정에 관한 심사기준의 적용문제이다. 따라서 본 연구에서는 무역관련 환경조치를 WTO체제가 어느 정도 어떻게 수용하고 있는가를 구체적으로 밝힘으로써 무역을 통한 성장과 환경보존과 보호가 양립될 수 있는가 그리고 WTO 체제는 환경문제에 공헌하고 있는가에 대한 답을 얻고자 하는데 목적을 두었다.

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Screening of Biodegradable Function of Indigenous Ligno-degrading Mushroom Using Dyes

  • Jang, Kab-Yeul;Cho, Soo-Muk;Seok, Soon-Ja;Kong, Won-Sik;Kim, Gyu-Hyun;Sung, Jae-Mo
    • Mycobiology
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    • 제37권1호
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    • pp.53-61
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    • 2009
  • The process of biodegradation in lingo-cellulosic materials is critically relevant to biospheric carbon. The study of this natural process has largely involved laboratory investigations, focused primarily on the biodegradation and recycling of agricultural by-products, generally using basidiomycetes species. In order to collect super white rot fungi and evaluate its ability to degrade lingo-cellulosic material, 35 fungal strains, collected from forests, humus soil, livestock manure, and dead trees, were screened for enzyme activities and their potential to decolorize the commercially used Poly-R 478 dye. In the laccase enzymatic analysis chemical test, 33 white rot fungi and 2 brown rot fungi were identified. The degradation ability of polycyclic aromatic hydrocarbons (PAHs) according to the utilized environmental conditions was higher in the mushrooms grown in dead trees and fallen leaves than in the mushrooms grown in humus soil and livestock manure. Using Poly-R 478 dye to assess the PAH-degradation activity of the identified strains, four strains, including Agrocybe pediades, were selected. The activities of laccase, MnP, and Lip of the four strains with PAH-degrading ability were highest in Pleurotus incarnates. 87 fungal strains, collected from forests, humus soil, livestock manure, and dead trees, were screened for enzyme activities and their potential to decolorize the commercially used Poly-R 478 dye on solid media. Using Poly-R 478 dye to assess the PAHdegrading activity of the identified strains, it was determined that MKACC 51632 and 52492 strains evidenced superior activity in static and shaken liquid cultures. Subsequent screening on plates containing the polymeric dye poly R-478, the decolorization of which is correlated with lignin degradation, resulted in the selection of a strain of Coriolus versicolor, MKACC52492, for further study, primarily due to its rapid growth rate and profound ability to decolorize poly R-478 on solid media. Considering our findings using Poly-R 478 dye to evaluate the PAH-degrading activity of the identified strains, Coriolus versicolor, MKACC 52492 was selected as a favorable strain. Coriolus versicolor, which was collected from Mt. Yeogi in Suwon, was studied for the production of the lignin-modifying enzymes laccase, manganese-dependent peroxidase (MnP), and lignin peroxidase (LiP).

TiO{2-x}Nx의 저온제조 및 광화학적 특성 (Low Temperature Preparation and Photocatalytic Activity of TiO{2-x}Nx)

  • 정동운
    • 대한화학회지
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    • 제54권1호
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    • pp.120-124
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    • 2010
  • 용액침전법에 의해 $TiO_2$$TiO_{2-x}N_x$를 제조하였다. $TiO_{2-x}N_x$ 시료는 순수한 $TiO_2$의 띠 간격인 3.20 eV (390 nm 흡광)로부터 1.77 eV (700 nm 흡광)까지 띠 간격이 줄어들게 되어 자외선 영역 뿐 아니라 가시광선 전체 영역에서도 흡광이 발생하였다. 가시광선에서의 광촉매 활성에서도 $TiO_{2-x}N_x$ 시료는 순수한 $TiO_2$ 및 P-25보다도 더 높은 활성도를 나타냈다.

Application of Biocathodes in Microbial Fuel Cells: Opportunities and Challenges

  • Gurung, Anup;Oh, Sang-Eun
    • 한국토양비료학회지
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    • 제45권3호
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    • pp.410-420
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    • 2012
  • The heavy reliance on fossil fuels, especially oil and gas has triggered the global energy crisis. Continued use of petroleum fuels is now widely recognized as unsustainable because of their depleting supplies and degradation to the environment. To become less dependent on fossil fuels, current world is shifting paradigm in energy by developing alternative energy sources mainly through the utilization of renewable energy sources. In particular, bioenergy recovery from wastes with the help of microorganism is viewed as one of the promising ways to mitigate the current global warming crisis as well as to supply global energy. It has been proved that microorganism can generate power by converting organic matter into electricity using microbial fuel cells (MFCs). MFC is a bioelectrochemical device that employs microbes to generate electricity from bio-convertible substrate such as wastewaters including municipal solid waste, industrial, agriculture wastes, and sewage. Sustainability, carbon neutral and generation of renewable energy are some of the major features of MFCs. However, the MFC technology is confronted with a number of issues and challenges such as low power production, high electrode material cost and so on. This paper reviews the recent developments in MFC technology with due consideration of electrode materials used in MFCs. In addition, application of biocathodes in MFCs has been discussed.

Isolation and characterization of a protease deficient mutant of Aspergillus niger

  • 정혜종;이미애;박승문;김대혁
    • 한국생물공학회:학술대회논문집
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    • 한국생물공학회 2001년도 추계학술발표대회
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    • pp.89-92
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    • 2001
  • Aspergillus niger has been used as a host system to express many heterologous proteins. It has various advantages over other expression systems in that it is a small eukaryotic GRAS (Generally Recognized aS Safe) organism with a capacity of secreting large amount of foreign proteins. However, it has been known that the presence of an abundant protease is a limiting factor to express a heterologous protein. The proteases deficient mutants of A. niger were obtained using UV -mutagenesis. A total of 1 ${\times}$ $10^5$ spores were irradiated with 10-20% survival dose of UV, 600J/M2 at 280nm, and the resulting spores were screened on the casein -gelatin plates. Ten putative protease deficient mutants were further analyzed on the starch plates to differentiate the pro from the secretory mutant. An endogenous extracellular enzyme, glucose oxidase, was also examined to confirm that the mutant phenotype was due to the proteases deficiency rather than the mutation in the secretory pathway. The reduced proteolytic activity was measured using SDS-fibrin zymography gel, casein degradation assay, and bio-activity of a supplemented hGM -CSF (human Granulocyte-Macrophage Colony Stimulating Factor). Comparing with the wild type strain, less than 30 % of proteolytic activity was observed in the culture filtrate of the protease deficient mutant (pro -20) without any notable changes in cell growth and secretion.

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Simultaneous Removal of H2S, NH3 and Toluene in a Biofilter Packed with Zeocarbon Carrier

  • Park, Byoung-Gi;Shin, Won-Sik;Jeong, Yong-Shik;Chung, Jong-Shik
    • 한국환경과학회지
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    • 제17권1호
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    • pp.7-17
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    • 2008
  • Simultaneous removal of $NH_3,\;H_2S$ and toluene in a contaminated air stream was investigated over 185 days in a biofilter packed with Zeocarbon granule as microbial support. In this study, multi-microorganisms including Nitrosomonas and Nitrobacter for nitrogen removal, Thiobacillus thioparus (ATCC 23645) for $H_2S$ removal, and Pseudomonas aeruginosa (ATCC 15692), Pseudomonas putida (ATCC 17484) and Pseudomonas putida (ATCC 23973) for toluene removal were used simultaneously. The empty bed residence time (EBRT) was 40-120 seconds and the feed (inlet) concentrations of $NH_3,\;H_2S$ and toluene were 0.02-0.11, 0.05-0.23 and 0.15-0.21 ppmv, respectively. The observed removal efficiency was 85%-99% for $NH_3$, 100% for $H_2S$, and 20-90% for toluene, respectively. The maximum elimination capacities were 9.3, 20.6 and $17g/m^3/hr\;for\;NH_3,\;H_2S$ and toluene, respectively. The results of kinetic model analysis showed that there were no particular evidences of interactions or inhibitions among the microorganisms, and that the three bio degradation reactions took place independently within a finite area of biofilm developed on the surface of the Zeocarbon carrier.