• Title/Summary/Keyword: $MLS_B$

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Domain Expression of ErmSF, MLS (macrolide-lincosamide-streptogramin B) Antibiotic Resistance Factor Protein (MLS (macrolide-lincosamide-streptogramin B) 항생제 내성인자 단백질인 ErmSF의 domain발현)

  • 진형종
    • Korean Journal of Microbiology
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    • v.37 no.4
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    • pp.245-252
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    • 2001
  • Erm proteins, MLS (macrolide-lincosamide-streptogramin B) resistance factor proteins, show high degree of amino acid sequence homology and comprise of a group of structurally homologous N-methyltransferases. On the basis of the recently determined structures of ErmC` and ErmAM, ErmSF was divided into two domains, N-terminal end catalytic domain and C-terminal end substrate binding domain and attempted to overexpress catalytic domain in E. coli using various pET expression systems. Three DNA fragments were used to express the catalytic domain: DNA fragment 1 encoding Met 1 through Glu 186, DNA fragment 2 encoding Arg 60 to Glu 186 and DNA fragment 3 encoding Arg 60 through Arg 240. Among the pET expression vectors used, pET 19b successfully expressed the DNA fragment 3 and pET23b succeeded in expression of DNA fragment 1 and 2. But the overexpressed catalytic domains existed as inclusion body, a insoluble aggregate. To assist the soluble expression of ErmSF catalytic domains, Coexpression of chaperone GroESL or Thioredoxin and lowering the incubation temperature to $22^{\circ}C$ were attempted, as did in the soluble expression of the whole ErmSF protein. Both strategies did not seem to be helpful. Solubilization with guanidine-HCl and renaturation with gradual removal of denaturant and partial digestion of overexpressed whole ErmSF protein (expressed to the level of 126 mg/ι culture as a soluble protein) with proteinase K, nonspecific proteinase are under way.

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MLS Inducible Resistance Mechanism in Bacillus licheniformis EMR-1 -Cloning of erm K, a MLS Resistance Determinant- (Bacillus licheniformis EMR-1에서의 MLS 유도내성 기전 -erm K의 크로닝-)

  • Choi, Eung-Chil;Kwak, Jin-Hwan;Weisblum, Bernard
    • YAKHAK HOEJI
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    • v.32 no.4
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    • pp.213-221
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    • 1988
  • Inducible MLS resistance gene of Bacillus licheniformis specified by erm K was subcloned in Bacillus subtilis and the DNA sequence corresponding to its control region was determined. The determinant erm K was in Pvu II=Hind III fragment, which was 1.3 kb. The leader region is capable of forming a complex series of inverted complementary repeat sequences (ICRS) centering on at least six axes of symmetry, some of them mutually exclusive, in a way that resulted ultimately in post-transcriptional unmasking of the ribosome loading site for methylase synthesis.

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R-plasmids in staphylococcus aureus (Staphylococcus aureus의 항생제 내성 plasmid에 관한 연구)

  • 변우현;김영선;조은희;권동현;이호주;홍순주
    • Korean Journal of Microbiology
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    • v.23 no.4
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    • pp.282-290
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    • 1985
  • Small size antibiotic resistance plasmids having molecular weights less than 10 Mdal were isolated and characterized from ten clinically isolated multiple resistant Staphylococcus aureus. Agarose gel electrophoresis profiles and antibiotic resistance patterns divided these strains into four groups. Strain 2-23-6, the representative strain of a group of five strains conferred two plasmids of molecular weights $1.6{\times}10^6\;dal\;and\;2.0{\times}10^6$ dal. The small plasmid (pSBK 112) specified macrolides, lincosamides and streptogramin type B (MLS) resistance gene which are expressed constitutively. Lage plasmid (pSBK 125) specified chloramphenicol resistance gene which is inducible. Strain 10-5 conferred a $3.0{\times}10^6$ dal plasmid (pSBK 141) which carry an inducible ampicillin resistance gene and strain P-H-2 conferred and $1.6{\times}10^6$ dal plasmid (pSBK 190) which carry a constitutive MLS resistance gene. Strain D-H-1 conferred four plasmids of molecular weights $0.8{\times}10^6$ dal (pSBK 201), $1.6{\times}10^6$ dal (pSBK 202), $2.5{\times}10^6$ dal (pSBK 203), and $1.2{\times}10^7$ dal (pDBK 204), respectively. Among those four plasmids, only pSBK 203 specified chloramphenicol resistance gene. Curing of constitutive MLS resistance using acriding orange or ethidium bromide in 2-23-6 and P-H-2 strains produced 'inducible' MLS resistance strains which are less resistant to MLS than the wild type strains, suggesting that there are two resistance genes in both strains; one is constitutive and the other is inducible.

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A Macrolide-Lincosamide-Streptogramin B Resistance Determinant Gene (ermJ) Cloned from B, anthracis 590

  • Kim, Hee-Sun;Choi, Eung-Chil;Kim, Byong-Kak;Park, Young-In
    • Archives of Pharmacal Research
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    • v.15 no.1
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    • pp.58-61
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    • 1992
  • Bacillus anthracis 590 having an inducibla resistance determinant to MLS antibiotics was isolated from a soli sample in Korea. The resistance gene (ernJ) was cloned by Southern blotting of chromosomal DNA fragment digested by various restriction enzymes and coloy hybridization method and the cloned plasmid was named as pBA423. The size of inserted DNA fragment of pBS42 vector was about 2.9 kb and the DNA sequence of the subcloned fragment (Hinc II-Hinc II, 1.4kb) WAS determined. The DNA sequence of ernJ was composed of 357 bp for leader region and 861 bp for the structural gene. Because the leader sequence of ernJ was homologous to that of ermK, the expression of ernJ is also thought to be controlled by a transcriptionl attenuation mechanism.

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Comparison of Detectable Levels for Screening Residual Antibacterial Agents by Bioassay (잔류 항균물질에 대한 미생물학적 간이검사법의 검출감도 비교)

  • JUNG Sung Hee;KIM Jin Woo;SOHN Sang-Gyu
    • Korean Journal of Fisheries and Aquatic Sciences
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    • v.32 no.3
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    • pp.256-260
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    • 1999
  • Minimun-detectable levels to 28 antibacterial agents used for the prevention and the treatment of fish diseases were determined to establish optimal detective method of bioassay in fish by the EEC 4-plate method, the modified method of EEC 4-plate and the standard method of analysis in food safety regulation. The test organisms used in the methods of bioassay were as follows: Bacillus subtilis BGA (B. subtilis) and Micrococcus luteus ATCC 9341 (M. luteus) in the EEC 4-plate method, B. subtilis, M. luteus and Bacillus cereus var. mycoides ATCC 11778 (B. cereus) in the modified of EEC 4-plate, and B. subtilis, M. luteus, B. cereus and Bacillus stearothermophilis var. calidolactis C-953 (B. stearothermophilis) in the standard method. The standard method showed predominant sensitivity in the detection of penicillins (PCs), and was also highly sensitive to aminoglycosides (AGs). The sensitivity of standard method in the detection of tetracyclines (TCs), marrolides (MLs), nitrofuran derivatives(NFs) and quinolones (QNs) was very low, and against sulfonamides (SAs), however, was extremely low. The modified method of EEC 4-plate showed very high sensitivity to TCs. Both the EEC 4-plate and the modified method of EEC 4-plate showed competitively high sensitivity in the detection of PCs, MLs, NFs, QNs and SAs. All the methods studied in the experiment showed very low sensitivity against chloramphenicol (CMs). Consequently, the modified method of EEC 4-Plate was the best bioassay method with a wide range of sensitivity for the optimal detection of the residual antibacterial agents in fish.

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EFFECTS OF FORMING PROCESS ON SEALING PERFORMANCE OF FULL-BEAD OF MLS GASKET: FINITE ELEMENT ANALYSIS APPROACH

  • CHO S.-S.;HAN B. K.;CHANG H.;KIM B. K.
    • International Journal of Automotive Technology
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    • v.6 no.2
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    • pp.191-196
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    • 2005
  • A full-bead of multi-layer-steel (MLS) engine head gasket is used to seal the combustion gas. Finite element analyses were conducted to assess the dependence of the sealing performance of full-bead on the forming process consisting of embossing and flatting operations. It is demonstrated that the sealing performance is enhanced with more severe deformation of the bead plate during the embossing, i.e., with the increase in the punching depth, the punch height, the punch width and the friction coefficient of the bead plate against the punch and die, and with the decrease in the width of die cavity. Meanwhile, the flatting process that is employed to adjust the height of the embossed full-bead has no influence on the sealing performance.

FATIGUE DURABILITY ASSESSMENT OF FULL-BEAD OF MLS GASKET USING FINITE ELEMENT ANALYSIS

  • CHO S.-S.;HAN B. K.;LEE J.-H.;CHANG H.;KIM B. K.
    • International Journal of Automotive Technology
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    • v.6 no.5
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    • pp.513-517
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    • 2005
  • A full-bead of multi-layer-steel engine head gasket, taking charge of the dynamic sealing of combustion chamber, is susceptible to fatigue failure. The fatigue durability of full-bead was assessed with the finite element analysis results and the high-cycle multi-axial fatigue theory. The assessment aimed to reveal the effects of the forming parameters and dimensions of full-bead. The results show that the selection of embossing parameters producing less deformation of bead plate is beneficial for the improvement of durability while the flatting has marginal influence. The fatigue durability also improves with the increase in the width of full-bead and the radial length of bore-side flat region. However, the dimensional effects are limited due to the occurrence of snap-through.

Effect of Truncation of 38 Amino Acids in N-terminal Region of ErmSF, a MLSB Antibiotic Resistance Factor Protein, on Enzymatic Activity (MLSB 항생제 내성인자인 ErmSF의 N-terminal 38개 아미노산 제거가 항생제 내성 효소활성에 미치는 영향)

  • Lee, Hak Jin;Jin, Hyung Jong
    • Korean Journal of Microbiology
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    • v.50 no.3
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    • pp.239-244
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    • 2014
  • ErmSF is one of the four antibiotic resistance factor proteins expressed by Streptomyces fradiae, antibiotic tylosin producer, which renders $MLS_B$ (macrolide-lincosamide-streptogramin B) antibiotic resistance through dimethylating A2058 of 23S rRNA, thereby reducing the affinity of antibiotic to ribosome. Unlike other Erm proteins, ErmSF harbors long N-terminal end region. To investigate its role in enzyme activity, mutant ErmSF deleted of 1-38 amino acids was overexpressed and activity in vivo and in vitro was observed. In vitro enzymatic assay showed that mutant protein exhibited reduced activity by 20% compared to the wild type enzyme. Due to the reduced activity of the mutant protein, cells expressing mutant protein showed weaker resistance to erythromycin than cells with wild type enzyme. Presumably, the decrease in enzyme activity was caused by the hindrance in substrate binding and (or) product release, not by defect in the methyl group transfer occurred in active site.

a possible combined attenuation control of the inducible MLS resistance

  • ;Weisblum, B.
    • The Microorganisms and Industry
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    • v.13 no.2
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    • pp.8-13
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    • 1987
  • 이글에서는 항생물질 내성의 생화학적 기전, MLS계 항생물질 내성기전, Post-transcriptional attenuation control, MLS계 항생물질 내성기전 연구방향, erm K의 cloning: transcriptional attenuation control의 가능성에 대해 논하였다.

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