• 제목/요약/키워드: Resistant mechanism

검색결과 437건 처리시간 0.036초

Resistance Mechanism of Acinetobacter spp. Strains Resistant to DW-116, a New Quinolone

  • Choi, Keum-Hwa;Baek, Moon-Chang;Kim, Byong-Kak;Choi, Eung-Chil
    • Archives of Pharmacal Research
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    • 제21권3호
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    • pp.310-314
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    • 1998
  • DW-116 is a new fluoroquinolone antimicrobial agent with a broad spectrum. In order to elucidate the resistance mechanism to DW-116 in Acinetobacter spp. bacteria, total chromosomal DNA was isolated from 10 strains of Acinetobacter spp. resistant to DW-116. Quinolone resistance determinant region (QRDR) of DNA gyrase gene was amplified by PCR. The 345 bp nucleotide fragment yielded was inserted into pKF 3 which was used as the vector. Comparisons of the DNA sequences of 8 strains with that of the wild type strain revealed a Ser-83 to Leu mutation in mutants and all ten strains contained one silent mutation$(T{\rightarrow}G)$in QRDR. From Acinetobacter MB4-8 strain, DNA gyrase was isolated and purified, through novobiocin-sepharose, heparin-sepharose affinity column chromatography. The enzyme was composed of two subunits and the molecular mass of subunits A and B were 75.6 and 51.9 kDa, respectively. The supercoiling activity of the reconstituted DNA gyrase composed of subunit A from Acinetobacter MB4-8 and subunit B from E. coli was not inhibited by $128{\mu}\textrm{g}$ml of ciprofloxacin. It might be said that one of the resistance mechanisms to DW-116 in Acinetohacter MB4-8 was subunit A alteration of DNA gyrase.

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연결부분 및 교각의 배열과 일반교량의 내진성능 (Arrangement of Connections and Piers and Earthquake Resistant Capacity of Typical Bridges)

  • 국승규
    • 한국전산구조공학회논문집
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    • 제28권2호
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    • pp.207-212
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    • 2015
  • 사회기반시설물인 교량은 인적/물적 자원의 신속하고 원활한 이동을 위해 지장물을 극복하도록 설계/시공되는 구조물이다. 그러므로 교량의 교축방향으로 배열되는 교각의 형상과 규모는 지형의 제약을 받을 수밖에 없다. 이러한 교각의 형상과 규모는 지진하중의 전달경로를 결정하는 연결부분 배열과 함께 연결부분과 교각에 발생하는 작용력을 좌우하게 된다. 이 연구에서는 강재받침과 철근콘크리트 기둥을 연결부분과 교각으로 하는 일반교량을 대상으로 교각 및 강재받침 배열이 다른 해석모델을 설정하여 지진해석을 수행하였다. 해석결과로 구한 교각기둥과 강재받침의 강도/작용력 비로부터 각 해석모델의 연성파괴메카니즘을 구성하고 연결부분 및 교각 배열이 일반교량의 내진성능에 미치는 영향을 연성파괴메카니즘 구성 측면에서 제시하였다.

Antibiosis of Pediocin-Producing Pediococcus sp. KCA1303-10 Against Listeria monocytogenes in Mixed Cultures

  • Ahn, Cheol;Kim, Chung-Hoi;Shin, Hyun-Kyung;Lee, Young-Min;Lee, Yeon-Sook;Ji, Geun-Eog
    • Journal of Microbiology and Biotechnology
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    • 제13권3호
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    • pp.429-436
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    • 2003
  • Pediocin K1 is a bacteriocin produced by Pediococcus sp. KCA 1303-10, isolated from traditionally fermented flatfish in Korea. Pediocin K1-dependent antibiosis and pediocin K1-independent antibiosis against Listeria monocyrogenes were investigated by comparing antibiosis potential of the ped+ wild-type strain of Pediococcus sp. KCA1303-10 with that of the ped- mutant strain in 3 different media at 3 different temperatures. In the synthetic MRS-APT medium, bacteriocin (pediocin K1)-dependent antibiosis (BDA) acted as the major driving force of overall antibiosis at the initial stage before the pH of the media was not sufficiently lowered, while bacteriocin-independent antibiosis (BIA) took over the major role at the late stage of antibiosis by killing otherwise resistant cells in the modium. The role of BDA increased as the temperature of the system decreased. The antibiosis potential of BDA among the overall antibiosis of Pediococcus against Listeria at $37^{\circ}C$ was calculated as 46%, and as 75% at $25^{\circ}C$. In the skim milk medium, antibiosis of Pediococcus against Listeria was weakened more than 4 log cycles compared to that of the synthetic medium; however, BDA worked as the main antibiosis force regardless of the culturing temperature in the skim milk medium. In the bean soup medium, BDA also worked as the major killing mechanism against Listeria, but BIA played as another suppressing mechanism against otherwise pediocin-resistant Listeria population. These results suggest that a large portion of the inhibitory action of the ped+Pediococcus sp. KCA1303-10 was attributable to the bacteriocin produced by the strain and that viable Pediococcus sp. KCA1303-10 was superior to the purified bacteriocin in suppressing the occurrence of the bacteriocin-resistant Listeria monocytogenes in food systems.

Influence of Ribosomal Protein L39-L in the Drug Resistance Mechanisms of Lacrimal Gland Adenoid Cystic Carcinoma Cells

  • Ye, Qing;Ding, Shao-Feng;Wang, Zhi-An;Feng, Jie;Tan, Wen-Bin
    • Asian Pacific Journal of Cancer Prevention
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    • 제15권12호
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    • pp.4995-5000
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    • 2014
  • Background: Cancer constitutes a key pressure on public health regardless of the economy state in different countries. As a kind of highly malignant epithelial tumor, lacrimal gland adenoid cystic carcinoma can occur in any part of the body, such as salivary gland, submandibular gland, trachea, lung, breast, skin and lacrimal gland. Chemotherapy is one of the key treatment techniques, but drug resistance, especially MDR, seriously blunts its effects. As an element of the 60S large ribosomal subunit, the ribosomal protein L39-L gene appears to be documented specifically in the human testis and many human cancer samples of different origins. Materials and Methods: Total RNA of cultured drug-resistant and susceptible lacrimal gland adenoid cystic carcinoma cells was seperated, and real time quantitative RT-PCR were used to reveal transcription differences between amycin resistant and susceptible strains of lacrimal gland adenoid cystic carcinoma cells. Viability assays were used to present the amycin resistance difference in a RPL39-L transfected lacrimal gland adenoid cystic carcinoma cell line as compared to control vector and null-transfected lacrimal gland adenoid cystic carcinoma cell lines. Results: The ribosomal protein L39-L transcription level was 6.5-fold higher in the drug-resistant human lacrimal gland adenoid cystic carcinoma cell line than in the susceptible cell line by quantitative RT-PCR analysis. The ribosomal protein L39-L transfected cells revealed enhanced drug resistance compared to plasmid vector-transfected or null-transfected cells as determined by methyl tritiated thymidine (3H-TdR) incorporation. Conclusions: The ribosomal protein L39-L gene could possibly have influence on the drug resistance mechanism of lacrimal gland adenoid cystic carcinoma cells.

Mechanism of resistance acquisition and treatment of macrolide-resistant Mycoplasma pneumoniae pneumonia in children

  • Yang, Hyeon-Jong;Song, Dae Jin;Shim, Jung Yeon
    • Clinical and Experimental Pediatrics
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    • 제60권6호
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    • pp.167-174
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    • 2017
  • Mycoplasma pneumoniae pneumonia (MPP) is one of the most common forms of community-acquired pneumonia in children and adolescents. Outbreaks of MPP occur in 3- to 7-year cycles worldwide; recent epidemics in Korea occurred in 2006-2007, 2011, and 2015-2016. Although MPP is known to be a mild, self-limiting disease with a good response to macrolides, it can also progress into a severe and fulminant disease. Notably, since 2000, the prevalence of macrolide-resistant MPP has rapidly increased, especially in Asian countries, recently reaching up to 80%-90%. Macrolide-resistant Mycoplasma pneumoniae (MRMP) harbors a point mutation in domain V of 23S rRNA with substitutions mainly detected at positions 2063 and 2064 of the sequence. The excessive use of macrolides may contribute to these mutations. MRMP can lead to clinically refractory pneumonia, showing no clinical or radiological response to macrolides, and can progress to severe and complicated pneumonia. Refractory MPP is characterized by an excessive immune response against the pathogen as well as direct injury caused by an increasing bacterial load. A change of antibiotics is recommended to reduce the bacterial load. Tetracyclines or quinolones can be alternatives for treating MRMP. Otherwise, corticosteroid or intravenous immunoglobulin can be added to the treatment regimen as immunomodulators to downregulate an excessive host immune reaction and alleviate immune-mediated pulmonary injury. However, the exact starting time point, dose, or duration of immunomodulators has not been established. This review focuses on the mechanism of resistance acquisition and treatment options for MRMP pneumonia.

Src Family Kinase Inhibitor PP2 Induces LC3 Conversion in a Manner That is Uncoupled from Autophagy and Increases Apoptosis in Multidrug-Resistant Cells

  • Kim, Yun-Ki;Ahn, Jun-Ho;Lee, Mi-Chael
    • Biomolecules & Therapeutics
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    • 제20권4호
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    • pp.393-398
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    • 2012
  • Recently, we reported that defective autophagy may contribute to the inhibition of the growth in response to PP2 (4-amino-5-(4-chlorophenyl)-7-(t-butyl)pyrazolo[3,4-d]pyrimidine), a selective SFK inhibitor, in multidrug-resistant v-Ha-ras-transformed NIH 3T3 cells (Ras-NIH 3T3/Mdr). In this study, we demonstrated that PP2 induces LC3 conversion via a mechanism that is uncoupled from autophagy and increases apoptosis in Ras-NIH 3T3/Mdr cells. PP2 preferentially induced autophagy in Ras-NIH 3T3 cells rather than in Ras-NIH 3T3/Mdr cells as determined by LC3-I to LC3-II conversion and GFP-LC3 fluorescence microscopy. Beclin 1 knockdown experiments showed that, regardless of drug resistance, PP2 induces autophagy via a Beclin 1-dependent mechanism. PP2 induced a conformational change in Beclin 1, resulting in the enhancement of the pro-autophagic activity of Beclin 1, in Ras-NIH 3T3 cells. Further, PI3K inhibition induced by wortmannin caused a significant increase in apoptosis in Ras-NIH 3T3 cells, as demonstrated by flow cytometric analysis of Annexin V staining, implying that autophagy inhibition through PI3K increases apoptosis in response to PP2 in Ras-NIH 3T3 cells. However, despite the fact that wortmannin abrogates PP2-induced GFP-LC3 punctae formation, some LC3 conversion remains in Ras-NIH 3T3/Mdr cells, suggesting that LC3 conversion may occur in an autophagy-independent manner. Taken together, these results suggest that PP2 induces LC3 conversion independent of PI3K, concomitant with the uncoupling of LC3 conversion from autophagy, in multidrug-resistant cells.

대황목단탕의 메티실린 내성 황색 포도상구균에 대한 항균활성 (The Antimicrobial Activity of Daehwangmokdan-tang against Methicillin-resistant Staphylococcus aureus)

  • 한형선;권동렬;강옥화
    • 대한본초학회지
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    • 제35권3호
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    • pp.47-54
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    • 2020
  • Objective : Infectious diseases are a growing problem worldwide by Methicillin-resistant Staphylococcus aureus (MRSA). Daehwangmokdan-tang is one of the oriental medicine prescriptions contained in Principles and Practice of Eastern Medicine. This study investigated the antibacterial activity of EtOH 70% extracts of Daehwangmokdan-tang (DMT) which prescription is composed of oriental medicine against MRSA. Methods : The antimicrobial activity and active concentration of MRSA were verified by measuring the minimum inhibitory concentration (MIC) of DMT. In addition, the effects of the disease were checked by treating the existing antibiotics and large ethanol extract in parallel, and the extent of growth suppression was checked over time. In addition, cell membrane permeability experiment confirmed the effect of large DMT on the immunity mechanism of MRSA. Results : TThe minimum inhibitory concentration of DMT against MRSA is 500 ~ 2000 ㎍/㎖ by broth dilution method. In the checkerboard method, the combinations of DMT with antibiotics has partial synergistic effect or synergy effect and DMT markedly reduced the MICs of the antibiotics oxacillin (OX), gentamicin (GEN) against MRSA. In the inhibition of resistance mechanism of DMT against MRSA, the expression of resistance gene and protein about β-lactam antibiotic was reduced. Also, we observed the effect of DMT about cell membrane permeability against MRSA, and confirmed that DMT suppressed growth of strains by increasing cell membrane permeability and energy metabolism. Conclusion : Basis on the result, we speculate that DMT may be useful for the treatment of MRSA infections when used in combination with β-lactam antibiotic.

국내에서 분리된 포도상구균의 Vancomycin 내성빈도 및 특성 (Characterization and Frequency of Vancomycin Resistance in Staphylococcus aureus Isolated in Korea)

  • 박성언;김종배
    • 대한의생명과학회지
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    • 제6권3호
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    • pp.201-208
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    • 2000
  • Vancomycin은 세포벽의 합성을 억제하여 세균에 대한 항균효과를 나타내는 glycopeptide 계 항생물질로서 그람양성세균으로 인한 감염치료에 광범위하게 사용되며, 특히 methicillin 내성 포도상구균의 선택적 치료제로 쓰이고 있다. 그러나 최근 임상검체에서도 중등도의 내성을 가지는 포도상구균 (Mu50: MIC 8 $\mu\textrm{g}$/ml)이 나타나기 시작하였고 여러 가지 여건상 국내에서도 내성균주가 분리될 가능성이 높다고 사료되어 임상검체 중 methcillin 내성 포도상구균을 대상으로 vancomycin 감수성 및 내성빈도 조사를 실시하고 이에 따른 내성기전을 알아보고자 하였다. 본 실험 결과 107주 (株)의 methicillin 내성균주 중 23.3%가 vancomycin에 대하여 내성을 보였으며 vancomycin 내성을 나타내는 표준균주인 Mu50과 Mu3의 중간 정도의 내성빈도를 보였다. 중합효소 연쇄반응을 통해 장구균의 vancomycin 내성에 관여하는 vanA, vanB, vanC1, vanC2, vanH 특이 유전자는 증폭되지 않았다. SDS-PAGE를 실시하여 81 kDa, 58 kDa, 33 kDa, 28 kDa 등의 주요 단백 분획을 확인하였고, Mu50에서 45 kDa의 특징적인 단백 분획을 관찰하였다. LDH enzyme assay에서는 한 개의 검체가 Mu50과 함께 높은 LDH 활성을 보였다.

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국내에서 분리된 Streptomycin 저항성 Pseudomonas syringae pv. actinidiae Biovar 3 균주에서 rpsL 유전자의 돌연변이 (Mutation of rpsL Gene in Streptomycin-Resistant Pseudomonas syringae pv. actinidiae Biovar 3 Strains Isolated from Korea)

  • 이영선;김경희;고영진;정재성
    • 식물병연구
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    • 제28권1호
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    • pp.26-31
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    • 2022
  • Pseudomonas syringae pv. actinidiae (Psa)는 키위에 세균성 궤양병을 일으키는 병원균이다. Psa 균주는 유전적 및 생화학적 특징에 따라 5개의 biovar로 나누어진다. 그중 biovar 2와 3이 국내에서 발견되어 광범위한 피해를 주고 있다. Psa를 방제하는 효율적인 방법 중 한가지는 streptomycin과 같은 항생제를 사용하는 것이다. 그러나, 이 항생제에 저항성을 갖는 균주가 국내에서 분리되었고, 선행 연구에서 biovar 2 균주의 저항성이 strA-strB 유전자에 의한 것으로 밝혀졌다. 본 연구에서는 Psa biovar 3 균주에서 streptomycin 저항성의 분자적 기작을 밝히고자 하였다. 실험실에서 선발된 streptomycin 저항성 균주의 리보솜 단백질 S12를 암호화하는 유전자인 rpsL의 염기서열을 결정한 결과, 43번째 또는 88번째 코돈에서 자연발생적 점 돌연변이가 일어난 것을 확인하였다. 한편, 두 곳의 키위 과수원에서 분리된 4개의 streptomycin 저항성 biovar 3 균주에서는 민감성 균주에서 AAA인 rpsL의 코돈 43이 AGA로 단일 염기 치환이 일어났고, 이는 아미노산을 lysine에서 arginine으로 변화시키게 된다. 국내에서 발견된 biovar 3 균주 모두의 저항성 기작은 rpsL 유전자의 돌연변이에 기인하였다.

Comparative Analysis of Defense Responses in Chocolate Spot-Resistant and -Susceptible Faba Bean (Vicia faba) Cultivars Following Infection by the Necrotrophic Fungus Botrytis fabae

  • El-Komy, Mahmoud H.
    • The Plant Pathology Journal
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    • 제30권4호
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    • pp.355-366
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    • 2014
  • In this study, resistance responses were investigated during the interaction of Botrytis fabae with two faba bean cultivars expressing different levels of resistance against this pathogen, Nubaria (resistant) and Giza 40 (susceptible). Disease severity was assessed on leaves using a rating scale from 1 to 9. Accumulation levels of reactive oxygen species (ROS), lipid peroxidation and antioxidant enzymes (superoxide dismutase, catalase and ascorbate peroxidase) were measured in leaf tissues at different times of infection. The expression profiles of two pathogenesis-related proteins (PRPs) encoded by the genes PR-1 and ${\beta}$-1,3-glucanase were also investigated using reverse transcription RT-PCR analysis. The accumulation of these defense responses was induced significantly in both cultivars upon infection with B. fabae compared with un-inoculated controls. The resistant cultivar showed weaker necrotic symptom expression, less ROS accumulation, a lower rate of lipid peroxidation and higher activity of the enzymatic ROS scavenging system compared with susceptible cultivar. Interestingly, ROS accumulated rapidly in the resistant leaf tissues and peaked during the early stages of infection, whereas accumulation was stronger and more intense in the susceptible tissues in later stages. Moreover, the response of the resistant cultivar to infection was earlier and stronger, exhibiting high transcript accumulation of the PR genes. These results indicated that the induction of oxidant/antioxidant responses and the accumulation of PRPs are part of the faba bean defense mechanism against the necrotrophic fungus B. fabae with a different intensity and timing of induction, depending on the resistance levels.