• 제목/요약/키워드: 4-methylumbelliferone

검색결과 5건 처리시간 0.019초

Molecular Docking and Kinetic Studies of the A226N Mutant of Deinococcus geothermalis Amylosucrase with Enhanced Transglucosylation Activity

  • Hong, Seungpyo;Siziya, Inonge Noni;Seo, Myung-Ji;Park, Cheon-Seok;Seo, Dong-Ho
    • Journal of Microbiology and Biotechnology
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    • 제30권9호
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    • pp.1436-1442
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    • 2020
  • Amylosucrase (ASase, E.C. 2.4.1.4) is capable of efficient glucose transfer from sucrose, acting as the sole donor molecule, to various functional acceptor compounds, such as polyphenols and flavonoids. An ASase variant from Deinococcus geothermalis, in which the 226th alanine is replaced with asparagine (DgAS-A226N), shows increased polymerization activity due to changes in the flexibility of the loop near the active site. In this study, we further investigated how the mutation modulates the enzymatic activity of DgAS using molecular dynamics and docking simulations to evaluate interactions between the enzyme and phenolic compounds. The computational analysis revealed that the A226N mutation could induce and stabilize structural changes near the substrate-binding site to increase glucose transfer efficiency to phenolic compounds. Kinetic parameters of DgAS-A226N and WT DgAS were determined with sucrose and 4-methylumbelliferone (MU) as donor and acceptor molecules, respectively. The kcat/Km value of DgAS-A226N with MU (6.352 mM-1min-1) was significantly higher than that of DgAS (5.296 mM-1min-1). The enzymatic activity was tested with a small phenolic compound, hydroquinone, and there was a 1.4-fold increase in α-arbutin production. From the results of the study, it was concluded that DgAS-A226N has improved acceptor specificity toward small phenolic compounds by way of stabilizing the active conformation of these compounds.

High Levels of Hyaluronic Acid Synthase-2 Mediate NRF2-Driven Chemoresistance in Breast Cancer Cells

  • Choi, Bo-Hyun;Ryoo, Ingeun;Sim, Kyeong Hwa;Ahn, Hyeon-jin;Lee, Youn Ju;Kwak, Mi-Kyoung
    • Biomolecules & Therapeutics
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    • 제30권4호
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    • pp.368-379
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    • 2022
  • Hyaluronic acid (HA), a ligand of CD44, accumulates in some types of tumors and is responsible for tumor progression. The nuclear factor erythroid 2-like 2 (NRF2) regulates cytoprotective genes and drug transporters, which promotes therapy resistance in tumors. Previously, we showed that high levels of CD44 are associated with NRF2 activation in cancer stem like-cells. Herein, we demonstrate that HA production was increased in doxorubicin-resistant breast cancer MCF7 cells (MCF7-DR) via the upregulation of HA synthase-2 (HAS2). HA incubation increased NRF2, aldo-keto reductase 1C1 (AKR1C1), and multidrug resistance gene 1 (MDR1) levels. Silencing of HAS2 or CD44 suppressed NRF2 signaling in MCF7-DR, which was accompanied by increased doxorubicin sensitivity. The treatment with a HAS2 inhibitor, 4-methylumbelliferone (4-MU), decreased NRF2, AKR1C1, and MDR1 levels in MCF7-DR. Subsequently, 4-MU treatment inhibited sphere formation and doxorubicin resistance in MCF7-DR. The Cancer Genome Atlas (TCGA) data analysis across 32 types of tumors indicates the amplification of HAS2 gene is a common genetic alteration and is negatively correlated with the overall survival rate. In addition, high HAS2 mRNA levels are associated with increased NRF2 signaling and poor clinical outcome in breast cancer patients. Collectively, these indicate that HAS2 elevation contributes to chemoresistance and sphere formation capacity of drug-resistant MCF7 cells by activating CD44/NRF2 signaling, suggesting a potential benefit of HAS2 inhibition.

사과박 퇴비화에서의 미생물군집의 천이와 효소활성도의 변화 (The Succession of Microbial Populations and Variation of Enzyme Activities in Composting of Apple Pomace)

  • 이영옥;조익환;이용세;전하준
    • 유기물자원화
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    • 제7권2호
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    • pp.73-82
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    • 1999
  • 사과박의 퇴비화에서 효소활성도가 퇴비의 안정성 혹은 부숙도를 나타내는 지표로서의 사용가능성이 있는지를 검증하기 위해 배양계수법에 의한 미생물군집의 천이와, 무형광상태로 기질에 결합되어있던 형광물질(MUF)이 분해되면서 띠게 되는 형광정도가 해당효소의 활성도에 비례하여 높아지는 것을 이용하여 ${\beta}$-glucosidase와 cellobiohydrolase 활성도를 측정하였다. 탄수화물의 분해에 관여하는 두 효소의 활성도는 시간변화에 따라 점점 낮아졌다. 미생물개체군과 효소활성도간의 상관성은 균류군을 제외하고는 없는 것으로 나타났고 또 균류가 높은 개체수를 나타내는 것으로 보아 균류가 사과박의 퇴비화에 지대한 역할을 담당할 것으로 사료된다.

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E. coli에서 Pseudoalteromonas carageenovora 유래 Arylsulfatase의 구성적 발현과 Agarose 제조에의 응용 (Constitutive Expression of Arylsulfatase from Pseudoalteromonas carageenovora in E. coli and Its Application to Preparation of Agarose)

  • 김미진;장연화;성문희;김연희;남수완
    • 한국미생물·생명공학회지
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    • 제35권1호
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    • pp.11-16
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    • 2007
  • Pseudoalteromonas carrageenovora 유래의 arylsulfatase 유전자는 PCR로 증폭한 후 Geobacillus toebii의 D-amino acid aminotransferase(D-ATT) 유전자 유래의 구성적 발현 promoter를 함유하는 pHCE-IA vector로 subcloning 하였다. 4-Methylumbelliferyl sulfate가 포함된 LB 평판배지 상에서 자란 형질전환체 Escherichia coli BL2l (DE3)/pHCE-AST는 360 nm상에서 4-methylumbellifrrone에 의한 강한 형광을 보였고, 이는 대장균에서 arylsulfatase가 활성형으로 생산되었음을 의미하였다. E. coli BL21 (DE3)/pHCE-AST를 0.4% glycerol 또는 0.4% glucose가 포함된 LB 배지로 배양했을 때 arylsulfatase활성은 glycerol이 포함된 배지에서 활성이 더 높게 나타났다. 2% glycerol이 포함된 LB배지에서 arylsulfatase 활성은 약 15.0 unit/ml에 달했으며, 이는 1% glycerol을 첨가해서 배양했을 때보다 2.6배 이상의 높은 발현 수준이였다. 재조합 arylsulfatase 효소로 제조된 agarose와 시판용 agarose를 DNA markers를 이용해서 전기영동 성능을 비교했을 때 우수한 이동성과 분리능을 보였다. 본 연구의 결과, E. coli에서 과발현 생산된 arylsulfatase 효소를 이용하여 전기영동용 고순도 agarose생산 공정에 적용 가능함을 확인하였다.