• 제목/요약/키워드: Synthetic biology

검색결과 371건 처리시간 0.026초

Expression Study of a Recombinant Plasmid containing Dipeptidyl Peptidase-4 Gene in E. coli: A Plausible Application for Celiac Disease Patients to Digest Gluten

  • Lee, Yeonjae;Kang, Ryan;Kwon, Jenna;Jo, Kyuhee;Im, Jungbin;Jung, Sangwook;Lee, DongHyun;Lee, Juhyeon;Lee, Jeong-Sang
    • International journal of advanced smart convergence
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    • 제7권2호
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    • pp.101-111
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    • 2018
  • Celiac disease (CD) is an immune-mediated enteropathy of small intestine diagnosed in both childhood and adulthood. CD is caused by gluten, which produces gliadorphin during its digestion. The enzyme dipeptidyl peptidase-4 (DPP4) breaks gliadorphin down nevertheless the last tripeptide remains and eventually inhibits DPP4, thus slowing down its process. Therefore, the idea is to produce an additional DPP4 enzyme which is crucial. Consequently, the functional DPP4 gene was cloned into pCDNA3 intermediate (FLAG+DPP4) vector and finally a recombinant plasmid pSB1C3 (Andersons promoters+FLAG+DPP4) was constructed using synthetic biology. Normally, a DPP4 inhibitor is used as a cure for diabetes. Another important concern was overexpression of DPP4, which might lead to diabetes, accordingly the work was also performed for the regulation of the DPP4 gene expression. In this regard, three types of Anderson promoters (strong, moderate and weak) were utilized to study the control overexpression. This is the first report of idealistic trial for control the exogenous DPP4 gene-expression by molecular biologic tools.

Systemic Induction of the Small Antibacterial Compound in the Leaf Exudate During Benzothiadiazole-elicited Systemic Acquired Resistance in Pepper

  • Lee, Boyoung;Park, Yong-Soon;Yi, Hwe-Su;Ryu, Choong-Min
    • The Plant Pathology Journal
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    • 제29권3호
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    • pp.350-355
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    • 2013
  • Plants protect themselves from diverse potential pathogens by induction of the immune systems such as systemic acquired resistance (SAR). Most bacterial plant pathogens thrive in the intercellular space (apoplast) of plant tissues and cause symptoms. The apoplastic leaf exudate (LE) is believed to contain nutrients to provide food resource for phytopathogenic bacteria to survive and to bring harmful phytocompounds to protect plants against bacterial pathogens. In this study, we employed the pepper-Xanthomonas axonopodis system to assess whether apoplastic fluid from LE in pepper affects the fitness of X. axonopodis during the induction of SAR. The LE was extracted from pepper leaves 7 days after soil drench-application of a chemical trigger, benzothiadiazole (BTH). Elicitation of plant immunity was confirmed by significant up-regulation of four genes, CaPR1, CaPR4, CaPR9, and CaCHI2, by BTH treatment. Bacterial fitness was evaluated by measuring growth rate during cultivation with LE from BTH- or water-treated leaves. LE from BTH-treatment significantly inhibited bacterial growth when compared to that from the water-treated control. The antibacterial activity of LE from BTH-treated samples was not affected by heating at $100^{\circ}C$ for 30 min. Although the antibacterial molecules were not precisely identified, the data suggest that small (less than 5 kDa), heat-stable compound(s) that are present in BTH-induced LE directly attenuate bacterial growth during the elicitation of plant immunity.

Modulation of Quorum Sensing in Acyl-homoserine Lactone-Producing or -Degrading Tobacco Plants Leads to Alteration of Induced Systemic Resistance Elicited by the Rhizobacterium Serratia marcescens 90-166

  • Ryu, Choong-Min;Choi, Hye Kyung;Lee, Chi-Ho;Murphy, John F.;Lee, Jung-Kee;Kloepper, Joseph W.
    • The Plant Pathology Journal
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    • 제29권2호
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    • pp.182-192
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    • 2013
  • Numerous root-associated bacteria (rhizobacteria) are known to elicit induced systemic resistance (ISR) in plants. Bacterial cell-density-dependent quorum sensing (QS) is thought to be important for ISR. Here, we investigated the role of QS in the ISR elicited by the rhizobacterium, Serratia marcescens strain 90-166, in tobacco. Since S. marcescens 90-166 produces at least three QS signals, QS-mediated ISR in strain 90-166 has been difficult to understand. Therefore, we investigated the ISR capacity of two transgenic tobacco (Nicotiana tabacum) plants that contained either bacterial acylhomoserine lactone-producing (AHL) or -degrading (AiiA) genes in conjunction with S. marcescens 90-166 to induce resistance against bacterial and viral pathogens. Root application of S. marcescens 90-166 increased ISR to the bacterial pathogens, Pectobacterium carotovorum subsp. carotovorum and Pseudomonas syringae pv. tabaci, in AHL plants and decreased ISR in AiiA plants. In contrast, ISR to Cucumber mosaic virus was reduced in AHL plants treated with S. marcescens 90-166 but enhanced in AiiA plants. Taken together, these data indicate that QS-dependent ISR is elicited by S. marcescens 90-166 in a pathogen-dependent manner. This study provides insight into QS-dependent ISR in tobacco elicited by S. marcescens 90-166.

The Role of HS-1200 Induced Autophagy in Oral Cancer Cells

  • Jang, Nam-Mi;Oh, Sang-Hun;Kim, In-Ryoung;Park, Hae-Ryoun;Park, Bong-Soo
    • International Journal of Oral Biology
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    • 제38권3호
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    • pp.93-100
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    • 2013
  • Bile acids and synthetic bile acid derivatives induce apoptosis in various kinds of cancer cells and thus have anticancer properties. Recently, it has been suggested that autophagy may play an important role in cancer therapy. However, few data are available regarding the role of autophagy in oral cancers and there have been no reports of autophagic cell death in OSCCs (oral squamous cell carcinoma cells) induced by HS-1200, a synthetic bile acid derivative. We thus examine whether HS-1200 modulates autophagy in OSCCs. Our findings indicate that HS-1200 has anticancer effects in OSCCs, and we observed in these cells that autophagic vacuoles were visible by monodansylcadaverine (MDC)and acridine orange staining. When we analyzed HS-1200-treated OSCC cells for the presence of biochemical markers, we observed that this treatment directly affects the conversion of LC-3II, degradation of p62/SQSTM1 and full-length beclin-1, cleavage of ATG5-12 and the activation of caspase. An autophagy inhibitor suppressed HS-1200-induced cell death in OSCCs, confirming that autophagy acts as a pro-death signal in these cells. Furthermore, HS-1200 shows anticancer activity against OSCCs via both autophagy and apoptosis. Our current findings suggest that HS-1200 may potentially contribute to oral cancer treatment and thus provide useful information for the future development of a new therapeutic agent.

Examining the Gm18 and $m^1G$ Modification Positions in tRNA Sequences

  • Subramanian, Mayavan;Srinivasan, Thangavelu;Sudarsanam, Dorairaj
    • Genomics & Informatics
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    • 제12권2호
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    • pp.71-75
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    • 2014
  • The tRNA structure contains conserved modifications that are responsible for its stability and are involved in the initiation and accuracy of the translation process. tRNA modification enzymes are prevalent in bacteria, archaea, and eukaryotes. tRNA Gm18 methyltransferase (TrmH) and tRNA $m^1G37$ methyltransferase (TrmD) are prevalent and essential enzymes in bacterial populations. TrmH involves itself in methylation process at the 2'-OH group of ribose at the 18th position of guanosine (G) in tRNAs. TrmD methylates the G residue next to the anticodon in selected tRNA subsets. Initially, $m^1G37$ modification was reported to take place on three conserved tRNA subsets ($tRNA^{Arg}$, $tRNA^{Leu}$, $tRNA^{Pro}$); later on, few archaea and eukaryotes organisms revealed that other tRNAs also have the $m^1G37$ modification. The present study reveals Gm18, $m^1G37$ modification, and positions of $m^1G$ that take place next to the anticodon in tRNA sequences. We selected extremophile organisms and attempted to retrieve the $m^1G$ and Gm18 modification bases in tRNA sequences. Results showed that the Gm18 modification G residue occurs in all tRNA subsets except three tRNAs ($tRNA^{Met}$, $tRNA^{Pro}$, $tRNA^{Val}$). Whereas the $m^1G37$ modification base G is formed only on $tRNA^{Arg}$, $tRNA^{Leu}$, $tRNA^{Pro}$, and $tRNA^{His}$, the rest of the tRNAs contain adenine (A) next to the anticodon. Thus, we hypothesize that Gm18 modification and $m^1G$ modification occur irrespective of a G residue in tRNAs.

Macromolecular Docking Simulation to Identify Binding Site of FGB1 for Antifungal Compounds

  • Soundararajan, Prabhakaran;Sakkiah, Sugunadevi;Sivanesan, Iyyakkannu;Lee, Keun-Woo;Jeong, Byoung-Ryong
    • Bulletin of the Korean Chemical Society
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    • 제32권10호
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    • pp.3675-3681
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    • 2011
  • Fusarium oxysporum, an important pathogen that mainly causes vascular or fusarium wilt disease which leads to economic loss. Disruption of gene encoding a heterotrimeric G-protein-${\beta}$-subunit (FGB1), led to decreased intracellular cAMP levels, reduced pathogenicity, colony morphology, and germination. The plant defense protein, Nicotiana alata defensin (NaD1) displays potent antifungal activity against a variety of agronomically important filamentous fungi. In this paper, we performed a molecular modeling and docking studies to find vital amino acids which can interact with various antifungal compounds using Discovery Studio v2.5 and GRAMMX, respectively. The docking results from FGB1-NaD1 and FGB1-antifungal complexes, revealed the vital amino acids such as His64, Trp65, Ser194, Leu195, Gln237, Phe238, Val324 and Asn326, and suggested that the anidulafungin is a the good antifungal compound.The predicted interaction can greatly assist in understanding structural insights for studying the pathogen and host-component interactions.

Biosurfactant를 생산하는 Bacillus subtilis TBM 3101의 생리학적 특성 (Physiological Characteristics of Biosurfactant-Producting Bacillus subtilis TBM 3101)

  • 김선아;이영근;최용락;황철원;정영기;주우홍
    • Applied Biological Chemistry
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    • 제50권1호
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    • pp.12-17
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    • 2007
  • 태백산 토양에서 유화활성과 안정도가 높은 biosurfactant 생산균주 TBM 3101을 분리하여 동정한 결과 B. subtilis로 판명되었다. B. subtilis TBM 3101의 배양액에서 표면장력은 최저 29mN/m까지 감소되었고, 이후 장시간 계속 유지되었다. 또한, tributyrin을 기질로 사용하였을 때 2.68로 가장 큰 유화력을 보였고, 그 외에 soybean oil, crude oil, tetradecane 에서도 비슷한 활성을 보였다. 각종 다른 합성계면활성제의 유화활성 및 안정성을 고려하여 비교 분석한 결과 B. subtilis TBM 3101 생산하는 biosurfactant는 tween류와 span 85와 유사한 유화활성을 나타내었고, tween 80과 triton X-100과 비슷한 유화 안정도를 보여주었다.

Preparation and Improvement of Physicochemical and Functional Properties of Dietary Fiber from Corn Cob Fermented by Aspergillus niger

  • Yadi Zhou;Qijie Sun;Chao Teng;Mingchun Zhou;Guangsen Fan;Penghui Qu
    • Journal of Microbiology and Biotechnology
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    • 제34권2호
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    • pp.330-339
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    • 2024
  • Corn cobs were fermented with Aspergillus niger to produce soluble dietary fiber (SDF) of high quality and excellent food safety. In this work, the fermentation process was optimized by single-factor test and response surface methodology (RSM). The optimal fermentation conditions were determined to be a material-liquid ratio of 1:30, an inoculum concentration of 11%, a temperature of 32℃, a time of 6 days, and a shaking speed of 200 r/min. Under these conditions, the SDF yield of corn cob increased from 2.34% to 11.92%, and the ratio of soluble dietary fiber to total dietary fiber (SDF/TDF) reached 19.08%, meeting the requirements for high-quality dietary fiber (SDF/TDF of more than 10%). Scanning electron microscopy (SEM) and Fourier-transformed infrared spectroscopy (FT-IR) analysis revealed that the fermentation effectively degraded part of cellulose and hemicellulose, resulting in the formation of a loose and porous structure. After fermentation the water swelling capacity, water-holding capacity, and oil-holding capacity of the corn cob SDF were significantly improved and the adsorption capacity of glucose, cholesterol, and nitrite ions all increased by more than 20%. Moreover, the total phenolic content increased by 20.96%, which correlated with the higher antioxidant activity of SDF. Overall, the fermentation of corn cobs by A. niger increased the yield and enhanced the functional properties of dietary fiber (DF) as well.

메탄올 자화효모 Hansenula polymorpha에서의 재조합 단백질 분비발현을 위한 인체 혈청 알부민 융합단편의 활용 (Use of Human Serum Albumin Fusion Tags for Recombinant Protein Secretory Expression in the Methylotrophic Yeast Hansenula polymorpha)

  • 송지혜;황동현;오두병;이상기;권오석
    • 한국미생물·생명공학회지
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    • 제41권1호
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    • pp.17-25
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    • 2013
  • 메탄올 자화효모 Hansenula polymorpha에서 분비 발현이 잘 된다고 보고된 인체 혈청 알부민(human serum albumin, HSA)을 융합단편으로 사용하여 외래 재조합 단백질을 효과적으로 분비 발현할 수 있는 발현시스템을 개발하고자 하였다. 이때 조작의 용이성 및 발현 효율 제고를 위하여 전장의 HSA 뿐만 아니라 세 종류의 각기 다른 크기의 HSA 단편을 설계하여 융합단편으로 사용하였다. 즉 HSA의 N-말단으로 부터 각기 137, 172, 320, 608개 아미노산을 갖는 융합단편 HSAft (1-4)를 제작하였다. 아울러 발현되는 HSA 단편의 검출 및 분리정제를 위한 His8-tag, HSA 융합단편과 외래 단백질간의 유연성을 부여하기 위한 2조의 $Gly_4Ser_1$ linker, 융합 발현된 타겟 단백질을 HSA 단편으로부터 용이하게 분리하기 위한 담배식각바이러스 단백질분해효소(tobacco etch virus protease, Tev) 인지 서열, 타겟 단백질 유전자를 클로닝하기 위한 멀티 클로닝 사이트(multiple cloning site, MCS)서열, 그리고 타겟 재조합 단백질의 발현 검출 및 정제를 위한 Strep-tag을 포함하는 작용기 도메인을 발현카세트 기본 골격에 포함시켰다. 이렇게 구축된 4종의 HSA 융합단편 분비발현 벡터를 H. polymorpha에 형질전환한 후 각 융합단편의 발현을 조사한 결과 HSAft 단편 3, 4의 발현을 확인할 수 있었다. 녹색형광단백질 유전자 ($GFP_{uv}$)를 상기 벡터에 클로닝한 후 H. polymorpha에 도입한 결과 형질 전환체 모두에서 녹색형광단백질의 발현을 관찰 할 수 있었다. 해당 세포로부터 분비되거나 세포내에 발현되는 HSA 단편 융합 형광단백질의 발현양을 비교한 결과 HSAft 단편 4에 융합된 경우를 제외하고 나머지 경우 모두에서 세포 파쇄액과 세포 배양액 양쪽에서 해당 HSA 단편 융합 형광단백질의 발현을 확인 할 수 있었다. 한편 HSA 융합단편의 크기에 따라 자체 혹은 타겟 단백질과 융합된 형태의 단백질 분비 발현 정도가 달라지는 것은 해당 단백질의 접힘이나 단백질 분해효소에 대한 민감성 등 여러 변수에 의한 것으로 사료되며 따라서 본 연구에서 개발한 H. polymorpha용 HSA 융합단편 분비발현 시스템은 특정 외래 재조합 단백질의 효율적인 분비발현 융합단편의 선별 및 과발현 시스템 구축에 유용하게 활용될 수 있을 것으로 기대된다.

A Monoclonal Anti-peptide Antibody against $\beta$2-adrenergic Receptor Which Specifically Binds [$^{3}H$] dihydroalprenolol

  • Shin, Chan Young;Noh, Min Su;Lee, Sang Derk;Lee, Sang Bong;Ko, Kwang Ho
    • Biomolecules & Therapeutics
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    • 제3권4호
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    • pp.266-272
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    • 1995
  • The analysis of membrane receptors for hormones and neurotransmitters has progressed considerably by pharmacological and biochemical means and more recently through the use of specific antibodies. To generate and characterize a moloclonal antibody against $\beta$-adrenergic receptor, a synthetic $\beta$2-adrenergic receptor peptide (Phe-Gly-Asn-Phe-Trp-Cys-Phe-Trp-Thr-Ser-lle-Asp-Val-Leu) which may comprise part of $\beta$-adrenergic receptor ligand binding pocket was coupled to Keyhole Limpet Hemocyanin (KLH) and used as an immunogen. Male BALB/C mice were immunized with this antigen and the immunized spleen was fused with myeloma SP2/0-Ag14 cells to produce monoclonal antibodies. Two clones were obtained but one of monoclonal antibodies, mAb5G09, was used throughout in this study because the other clone, mAb5All showed weak immunoreactivity against KLH as well. The mouse monoclonal antibody mAb5G09 produced in this study showed immunoreactivity to peptide-KLH conjugates and also to human A43l cells and guinea pig lung $\beta$2-adrenergic receptor as revealed by ELISA and western blot. In the course of determination of the effects of mAb5G09 on $\beta$-receptor ligand binding, it was observed that mAb5G09 specifically bound $\beta$-adrenergic radioligand [$^3$H]dihydroalprenolol (DHA) with a dissociation constant (Kd) of 60 nM. The [$^3$H]DHA binding activity of mAb5G09 had characteristics of immunoglobulins and the binding activity was not observed in the control anti-KLH monoclonal antibody. The monoclonal antibody, mAb5G09 produced in this study may provide useful models for the study of the structure of receptor binding sites.

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