• Title/Summary/Keyword: recombinant bacteria

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Identification of Retained N-Formylmethionine in Bacterial Recombinant Mammalian Cytochrome P450 Proteins with the N-Terminal Sequence MALLLAVF‥‥

  • Dong, Mi-Sook
    • Proceedings of the Korean Society of Applied Pharmacology
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    • 1996.11a
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    • pp.165-169
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    • 1996
  • The cytochrome P450 (P450) proteins have been studied extensively because of their prominent roles as catalysts in the oxidations of drugs, carcinogens, steroids, alkaloids, vitamins, and other important chemicals (Guengerich, 1991). In the past decade the study of these enzymes has been advanced by the cloning of cDNAs and expression of the proteins in several heterologous vector systems. One approach that has been employed in this and other laboratories is expression in bacteria. To date at least 31 different mammalian P450s have been expressed in Escherichia coli-band systems (Guengerich et al., 1996). In most of these cases the N-terminus has been altered to facilitate better expression (Barnes et al., 1991).

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Production of milk-originated antimicrobial peptide, lactoferricin, in E. coli (미생물을 이용한 우유 유래 항균펩타이드(락토페리신)의 생산)

  • Kang, Dae-Kyung
    • 한국유가공학회:학술대회논문집
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    • 2007.09a
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    • pp.13-20
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    • 2007
  • Bovine lactoferricin(LFcin B) is a peptide of 25 amino acids that originated from the N terminus of bovine lactoferrin, and is characterized as having potent antimicrobial activity against bacteria, fungi, protozoa and viruses. But, direct expression of Lfcin B is lethal to Escherichia coli. For the efficient production of Lfcin B in E. coli, we developed an expression system in which the gene for cationic Lfcin B was fused to an anionic peptide gene, and successfully expressed the concatemeric fusion gene in E. coli. The purified recombinant Lfcin B was found to have antimicrobial activity, as the native Lfcin B peptide does.

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Characterization of gltA::luxCDABE Fusion in Escherichia coli as a Toxicity Biosensor

  • Ahn, Joo-Myung;Kim, Byoung-Chan;Gu, Man-Bock
    • Biotechnology and Bioprocess Engineering:BBE
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    • v.11 no.6
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    • pp.516-521
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    • 2006
  • The use of gltA gene, as a new biomarker for environmental stress biomonitoring, was investigated because of its key position as the first enzyme of the tricarboxylic acid (TCA) cycle. A recombinant bioluminescent Escherichia coli strain, EBJM2, was constructed using a plasmid carrying the citrate synthase (gltA) promoter transcribing the Photorhabdus luminescens IuxCDABE genes (gltA::luxCDABE). The responses from this strain were studied with five different classes of toxicants: DNA damage chemicals, phenolics, oxidative-stress chemicals, PAHs, and organic solvents. EBJM2 responded strongly to DNA damage chemicals, such as mitomycin C (MMC) and methyl-nitro-nitrosoguanidine (MNNG) and nalidixic acid with the strongest responses. In contrast, tests with several compounds from the other four classes of toxicants gave no significant response. Therefore, EBJM2 was found to be sensitive to DNA damage chemicals.

Mechanisms and Control Strategies of Antibiotic Resistance in Pathological Biofilms

  • Luo, Ying;Yang, Qianqian;Zhang, Dan;Yan, Wei
    • Journal of Microbiology and Biotechnology
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    • v.31 no.1
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    • pp.1-7
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    • 2021
  • Bacterial biofilm is a community of bacteria that are embedded and structured in a self-secreted extracellular matrix. An important clinical-related characteristic of bacterial biofilms is that they are much more resistant to antimicrobial agents than the planktonic cells (up to 1,000 times), which is one of the main causes of antibiotic resistance in clinics. Therefore, infections caused by biofilms are notoriously difficult to eradicate, such as lung infection caused by Pseudomonas aeruginosa in cystic fibrosis patients. Understanding the resistance mechanisms of biofilms will provide direct insights into how we overcome such resistance. In this review, we summarize the characteristics of biofilms and chronic infections associated with bacterial biofilms. We examine the current understanding and research progress on the major mechanisms of antibiotic resistance in biofilms, including quorum sensing. We also discuss the potential strategies that may overcome biofilm-related antibiotic resistance, focusing on targeting biofilm EPSs, blocking quorum sensing signaling, and using recombinant phages.

Development of Recombinant Escherichia coli Expressing Rhodotorula glutinis Epoxide Hydrolase (Rhodotorula glutinis의 epoxide hydrolase 고효율 발현 유전자 재조합 Escherichia coli 생촉매 개발)

  • Lee Soo-Jung;Kim Hee-Sook
    • Journal of Life Science
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    • v.16 no.3 s.76
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    • pp.415-419
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    • 2006
  • The epoxide hydrolase (EH) of Rhodotorula glutinis which has a high enantioselectivity against aromatic epoxide substrates was expressed to high levels in Escherichia coli based on codon usage. We analysed the Preference of codon usage between the yeast, R. glutinis, and bacteria, E. coli. E. coli, Rosetta(DE3)pLysS, harbors pRARE plasmid with tRNA genes for rare-codons was employed as a host strain. The recombinant E. coli expressing R. glutinis EH showed an enhanced enantioselective hydrolysis activity toward racemic styrene oxide. Enantiopure (S)-styrene oxide with a high enantiopurity of 99% ee (enantiomeric excess) was obtained from racemic substrates.

Enhanced 2,3-Butanediol Production in Recombinant Klebsiella pneumoniae via Overexpression of Synthesis-Related Genes

  • Kim, Borim;Lee, Soojin;Park, Joohong;Lu, Mingshou;Oh, Minkyu;Kim, Youngrok;Lee, Jinwon
    • Journal of Microbiology and Biotechnology
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    • v.22 no.9
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    • pp.1258-1263
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    • 2012
  • 2,3-Butanediol (2,3-BD) is a major metabolite produced by Klebsiella pneumoniae KCTC2242, which is a important chemical with wide applications. Three genes important for 2,3-BD biosynthesis acetolactate decarboxylase (budA), acetolactate synthase (budB), and alcohol dehydrogenase (budC) were identified in K. pneumoniae genomic DNA. With the goal of enhancing 2,3-BD production, these genes were cloned into pUC18K expression vectors containing the lacZ promoter and the kanamycin resistance gene to generate plasmids pSB1-7. The plasmids were then introduced into K. pneumoniae using electroporation. All strains were incubated in flask experiments and 2,3-BD production was increased by 60% in recombinant bacteria harboring pSB04 (budA and budB genes), compared with the parental strain K. pneumoniae KCTC2242. The maximum 2,3-BD production level achieved through fed-batch fermentation with K. pneumoniae SGJSB04 was 101.53 g/l over 40 h with a productivity of 2.54 g/l.h. These results suggest that overexpression of 2,3-BD synthesis-related genes can enhance 2,3-BD production in K. pneumoniae by fermentation.

The Binding Properties of Glycosylated and Non- Glycosylated Tim-3 Molecules on $CD4^+CD25^+$T Cells

  • Lee, Mi-Jin;Heo, Yoo-Mi;Hong, Seung-Ho;Kim, Kyong-Min;Park, Sun
    • IMMUNE NETWORK
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    • v.9 no.2
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    • pp.58-63
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    • 2009
  • Background: T cell immunoglobulin and mucin domain containing 3 protein (Tim-3) expressed on terminally differentiated Th1 cells plays a suppressive role in Th1-mediated immune responses. Recently, it has been shown that N-glycosylation affects the binding activity of the Tim-3-Ig fusion protein to its ligand, galectin-9, but the binding properties of non-glycosylated Tim-3 on $CD4^+CD25^+$T cells has not been fully examined. In this study, we produced recombinant Tim-3-Ig fusion proteins in different cellular sources and its N-glycosylation mutant forms to evaluate their binding activities to $CD4^+CD25^+$T cells. Methods: We isolated and cloned Tim-3 cDNA from BALB/C mouse splenocytes. Then, we constructed a mammalian expression vector and a prokaryotic expression vector for the Tim-3-Ig fusion protein. Using a site directed mutagenesis method, plasmid vectors for Tim-3-Ig N-glycosylation mutant expression were produced. The recombinant protein was purified by protein A sepharose column chromatography. The binding activity of Tim-3-Ig fusion protein to $CD4^+CD25^+$T cells was analyzed using flow cytometry. Results: We found that the nonglycosylated Tim-3-Ig fusion proteins expressed in bacteria bound to $CD4^+CD25^+$T cells similarly to the glycosylated Tim-3-Ig protein produced in CHO cells. Further, three N-glycosylation mutant forms (N53Q, N100Q, N53/100Q) of Tim-3-Ig showed similar binding activities to those of wild type glycosylated Tim-3-Ig. Conclusion: Our results suggest that N-glycosylation of Tim-3 may not affect its binding activity to ligands expressed on $CD4^+CD25^+$T cells.

Molecular Cloning and Characterization of a Paramyosin from Clonorchis sinensis

  • Park, Tae-Joon;Kang, Jung-Mi;Na, Byoung-Kuk;Sohn, Woon-Mok
    • Parasites, Hosts and Diseases
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    • v.47 no.4
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    • pp.359-367
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    • 2009
  • Paramyosin is a myofibrillar protein present in helminth parasites and plays multifunctional roles in host-parasite interactions. In this study, we identified the gene encoding paramyosin of Clonorchis sinensis (CsPmy) and characterized biochemical and immunological properties of its recombinant protein. CsPmy showed a high level of sequence identity with paramyosin from other helminth parasites. Recombinant CsPmy (rCsPmy) expressed in bacteria had an approximate molecular weight of 100 kDa and bound both human collagen and complement 9. The protein was constitutively expressed in various developmental stages of the parasite. Imunofluorescence analysis revealed that CsPmy was mainly localized in the tegument, subtegumental muscles, and the muscle layer surrounding the intestine of the parasite. The rCsPmy showed high levels of positive reactions (74.6%, 56/75) against sera from patients with clonorchiasis. Immunization of experimental rats with rCsPmy evoked high levels of IgG production. These results collectively suggest that CsPmy is a multifunctional protein that not only contributes to the muscle layer structure but also to non-muscular functions in host-parasite interactions. Successful induction of host IgG production also suggests that CsPmy can be applied as a diagnostic antigen and/or vaccine candidate for clonorchiasis.

Expression of Human Immunodeficiency Virus Type 1 Gag Protein in Escherichia coli

  • Park, Weon-Sang
    • Journal of Life Science
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    • v.9 no.5
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    • pp.556-563
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    • 1999
  • Presence of antibody to the capsid protein p24 is the main diagnostic criterion, since this reflects reliable antibody response to HIV infection. However, it takes about 6-8 weeks for antibody production after infection and people who are infected but antibodies are not produced yet are classified as seronegative. Therefore, there is a strong need for an improved diagnostic method for better health security. As a first step for developing such an improved diagnostic system, gag protein of human immunodificiency virus type 1 was expressed in E. coli DH5$\alpha$. The gag fragment of HIV-1 (including a portion of p17 and whole p24) was amplified by polymerase chain reaction (PCR) and BamH I/EcoR I sites were created during PCR. The amplified DNA fragment was cleaved with BamH I/EcoR I and was subcloned into the GEX-2T vector which had been digested with BamHI/EcoRI, resulting gene fusion with gst gene of pGEX-2T. The recombinant DNA was transferred into E. coli DH5$\alpha$. The transformed bacteria were grown at 37$^{\circ}C$ for 3h and protein expression was induced with 0.1mM IPTG at $25^{\circ}C$ for 3h. Recombinant gag protein or GST-gag fusion protein was purified with glutathione-sepharose 4B bead and migrated as a single band when analyzed by 10% polyacrylamide gel. These proteins were confirmed by immunoblotting with anti-GST goat sera or Korean AIDS patients sera. The results of this study establish the expression and single step pulification of HIV-1 gag protein which can specifically bind with Korean AIDS patients sera.

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Anaplasma Phagocytophilum Major Surface Protein (Msp)-2 Directly Binds to Platelet Selectin Glycoprotein Ligand-1 (CD162) Prior to Cell Entry and Infection (숙주세포 침입을 위한 Anaplasma phagocytophilum의 주요 표면단백질 (Msp)-2과 PSGL-1 (CD162)과의 반응)

  • Park Jin-Ho
    • Journal of Veterinary Clinics
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    • v.23 no.1
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    • pp.9-13
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    • 2006
  • Anaplasma phagocytophilum major surface protein-2 (Msp2 or p44) is the immunodominant outer membrane protein of the bacterium. Recently, we disclosed that Msp2 was an A. phagocytophilum adhesin for binding to host neutrophils and HL-60 cells, probably mediated by attachment to platelet selectin glycoprotein ligand-1 (PSGL-1). In this study, we further elucidated that Msp2 bound to PSGL-1/FucT IV-transfected BJAB but not nontransfected BJAB cells. Binding of recombinant Msp2 or cell (lee bacteria to the surface of PSGL-1/FucT IV-transfected BJAB cells was significantly higher than to nontransfected BJAB cells (p<0.01 and p<0.01). Also, Msp2 monoclonal antibody and soluble recombinant Msp2 as antagonist led to concentration-dependent reductions in A. phagocytophilum adhesln (p<0.05 and p<0.01) to transfected BJAB cells. Thus, we conclude that Msp2 of. A. phagocytophilum acts as an adhesin by which the bacterium binds to PSGL-1 on host neutrophils and myeloid cells.