• Title/Summary/Keyword: AME genes

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Multiplex PCR for Simultaneous Detection of Aminoglycoside Resistance Genes in Escherichia coli and Klebsiella pneumoniae

  • Kim, Hyun Chul;Jang, Ji-Hyun;Kim, Hyogyeong;Kim, Young-Jin;Lee, Kyoung-Ryul;Kim, Yun-Tae
    • Korean Journal of Clinical Laboratory Science
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    • v.44 no.3
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    • pp.155-165
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    • 2012
  • The purpose of this study was to develop a multiplex PCR for the detection of aac(6')-Ib, aph(3')-Ia, and ant(2")-Ia; the genes that encode the most clinically relevant aminoglycoside modifying enzymes (AMEs) in Gram-negative bacteria. Clinical isolates of 80 E. coli and 23 K. pneumoniae from tertiary university hospital were tested by multiplex PCR. The most prevalent AME gene was aac(6')-Ib which was found in 22.3% of the isolates. Of the total 80 E. coli isolates, 1 isolate was found to contain both aph(3')-Ia and ant(2")-Ia simultaneouly. Of the total 23 K. pneumoniae isolates, 2 isolates were found to contain both aac(6')-Ib and aph(3')-Ia, and 1 isolate was found to contain both aac(6')-Ib and ant(2")-Ia simultaneously. Annual (2005~2009) analysis of isolates that contain the AME genes were of no correlation. The sensitivity and specificity of multiplex PCR in detecting AME genes was 94.4% (34 of 36 cases) and 100%, respectively. We suggest the multiplex PCR method we developed could be highly sensitive and specific in detecting the AME genes of E. coli and K. pneumoniae. This study could be the first published investigation in which the multiplex PCR method detects aac(6')-Ib, aph(3')-Ia, and ant(2")-Ia genes.

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Biological Effects of Allium monanthum Extracts on Lipid Metabolism, Anti-oxidation and the Production of Pro-inflammatory Cytokines in Rats Fed a High-Fat Diet

  • Yoon, Kwang Ro;Ryu, Jae Kuk;Lee, Eun
    • Korean Journal of Plant Resources
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    • v.26 no.3
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    • pp.337-346
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    • 2013
  • This study is a basic study on the development of functional substances involved in obesity prevention, lipid metabolism, and immune regulation. Male Sprague-Dawley rats were fed a high-fat diet for 10 weeks. Allium monanthum extracts (AME) were administered orally to obesity-induced rats, and their lipid-lowering, antioxidative and various types of biological effects related to the immune system were examined. Blood free fatty acid and triglyceride concentrations decreased as the dose of AME increased. Total cholesterol and LDL cholesterol concentrations in the blood decreased as the dose of AME increased. The total cholesterol concentrations in the liver of the AME-treated groups were lower than the control group. The thiobarbituric acid reactive concentrations were lower in the plasma and liver of all AME-treated groups than the control group. Plasma AST and ALT activities did not show any significant differences among the treatment groups. IL-$1{\beta}$ and IL-6 concentrations in the liver tended to decrease as the dose of AME increased. TNF-${\alpha}$ and IL-10 concentrations did now show any significant differences compared to the control group. Lower expression levels of TNF-${\alpha}$, Apo-B and Apo-E genes were found in the AME-treated groups. Taken together, these results indicate that AME may show positive effects in lipid lowering, antioxidation and anti-inflammation.

Spreading of Aminoglycoside-Modifying Enzymes among Escherichia coli Isolated from Clinical Specimens in Chungcheong Province (충청지역의 임상검체로부터 분리된 대장균에 Aminoglycoside-Modifying Enzymes 확산)

  • Sung, Ji Youn;Kwon, Pil Seung
    • Korean Journal of Clinical Laboratory Science
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    • v.52 no.2
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    • pp.136-142
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    • 2020
  • The antimicrobial resistance rate in bacteria has increased over the last several decades. The transfer of antimicrobial resistant determinants on mobile genetic elements could cause the accelerated emergence and spread of multidrug resistant bacteria. This study investigated the aminoglycoside resistance determinants transferred by mobile genetic elements in a total of 33 aminoglycoside non-susceptible E. coli isolated from clinical specimens in Chungcheong province. 16S ribosomal RNA methyl-transferases (RMTases) and aminoglycoside-modifying enzyme (AME) genes were detected via PCR and DNA sequencing. The most common AME genes were aac(3')-II gene (54.5%), followed by aph(3')-Ia (18.2%) and aac(6')-Ib (15.2%). None of the evaluated RMTase genes were detected in the 33 isolates. Seventeen of the 18 isolates harboring aac(3')-II gene were resistant to gentamicin, and 16 of them were resistant to tobramycin. The 5 isolates harboring aac(6')-Ib gene were all resistant to tobramycin. In this study, we confirmed that one of the important mechanisms of aminoglycoside resistance in E. coli isolated from human is the acquisition of AME genes. Continuing investigations of antimicrobial resistant determinants in bacteria isolated from human may be required to prevent dissemination of antimicrobial resistant bacteria.

Effect of Astragalus membranaceus-postbiotics Polysaccharide Changed by Lactic Acid Bacteria on Macrophage (유산균에 의해 변화된 황기-포스트바이오틱스 다당류가 대식세포에 미치는 영향)

  • Yeon Suk Kim;Hyun Young Shin;Won Bi Jeong;Eun Ji Ha;Ja Pyeong Koo;Ji-Young Shin;Kwang-Won Yu
    • The Korean Journal of Food And Nutrition
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    • v.37 no.1
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    • pp.17-29
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    • 2024
  • To increase industrial applicability of Astragalus membranaceus (AM) as immunostimulating materials, hot-water extract (AME) was prepared from AM and fermented with Kimchi-lactic acid bacteria (Lactobacillus sakei & Leuconostoc mesenteroides) to prepare fermented AM-postbiotics (FAME). Although FAME prepared from AM-postbiotics did not show a significant enhancement in macrophage stimulating activity compared to non-fermented AME, crude polysaccharide (FAME-CP) fractionated by EtOH precipitation from FAME showed significantly higher macrophage stimulating activity than AME-CP. Compared to AME-CP, FAME-CP showed dramatic changes in component sugar and molecular weight distribution. FAME-CP was a polysaccharide with a major molecular weight distribution of 113.4 kDa containing Man (44.2%), Glc (19.3%), Gal (10.2%), GalA (10.2%), and Ara (7.4%) as sugar components. FAME-CP with enhanced macrophage stimulatory activity not only increased expression levels of mRNA genes encoding macrophage-activated factors (iNOS, TNF-α, MCP-1, IL-6, and COX-2), but also led the nuclear translocation of activated p65 and c-Jun. In conclusion, crude polysaccharide from AM-postbiotics fermented with lactic acid bacteria could increase industrial applicability as a functional material with enhanced immunostimulating activity than AME-CP.

Restriction Analyses of PCR Amplified Partial SSU Ribosomal DNA to Distinguish Arbuscular Mycorrhizal Fungi from Other Fungi Colonizing Plant Roots

  • Lee, Jae-Koo;Tae, Moon-Sung;Eom, Ahn-Heum;Lee, Sang-Sun
    • Mycobiology
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    • v.31 no.2
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    • pp.68-73
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    • 2003
  • Roots of Glycine max and Miscanthus sinensis and soil samples were collected from various field sites at Goesan, Chungbuk in Korea. Microscopic observations of the roots indicated high colonization rates of both arbuscular mycorrhizal fungi(AMF) and other fungi. The partial small subunit of ribosomal DNA genes were amplified with the genomic DNA extracted from their roots by nested polymerase chain reaction(PCR) with universal primer NS1 and fungal specific primers AML Restriction fragment length polymorphism(RFLP) was analyzed using the combinations of three restriction enzymes, HinfI, AluI and AsuC21. Nucleotides sequence analysis revealed that ten sequences from Miscanthus sinensis and one sequence from Glycine max were close to those of arbuscular mycorrhizal fungi. Also, 33% of total clones amplified with NS31-AM1 primers from M. sinensis and 97% from G. max were close to Fusarium oxysporum or other pathogenic fungi, and they were successfully distinguished from AME Results suggested that these techniques could help to distinguish arbuscular mycorrhizal fungi from root pathogenic fungi in the plant roots. Especially, DNA amplified by these primers showed distinct polymorphisms between AMF and plant pathogenic species of Fusarium when digested with AsuC21.

An Analysis of the Antibiotic Resistance Genes of Multi-Drug Resistant (MDR) Acinetobacter baumannii (다제내성 Acinetobacter baumannii 의 항생제 내성 유전자 분석)

  • Lim, Jina;Lee, Gyusang;Choi, Yeonim;Kim, Jongbae
    • Korean Journal of Clinical Laboratory Science
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    • v.48 no.3
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    • pp.217-224
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    • 2016
  • Acinetobacter baumannii (A. baumannii) is prevalent in hospital environments and is an important opportunistic pathogen of nosocomial infection. It is known that this pathogen cause herd infection in hospitals, and the mortality rate is remarkably higher for patients infected with this pathogen and already have other underlying diseases. Herein, we investigated the antibiotic resistance rate and the type of resistance genes in 85 isolates of multi-drug resistant A. baumannii from the samples commissioned to laboratory medicine in two university hospitals-in hospital A and hospital B-located in Cheonan and Chungcheong provinces, respectively, in Korea. As a result, $bla_{OXA-23-like}$ and $bla_{OXA-51-like}$ were detected in 82 stains (96.5%). These 82 strains of $bla_{OXA-23-like}$ producing A. baumannii were confirmed with the ISAba1 gene found at the top of the $bla_{OXA-23-like}$ genes by PCR, inducing the resistance against carbapenemase. The armA, AME gene that induces the resistance against aminoglycoside was detected in 34 strains out of 38 strains from Hospital A (89.5%), and in 40 strains out of 47 strains from Hospital B (85.1%), while AMEs were found in 33 strains out of 38 strains from Hospital A (70.2%) and in 44 strains out of 47 strains in Hospital B (93.6%). Therefore, it was found that most multi-drug resistant A. baumannii from the Cheonan area expressed both acethyltransferase and adenyltransferase. This study investigated the multi-drug resistant A. baumannii isolated from Cheonan and Chungcheong provinces in Korea, and it is thought that the results of the study can be utilized as the basic information to cure multi-drug resistant A. baumannii infections and to prevent the spread of drug resistance.

Effects of carbendazim on DNA, gene and chromosome (살균제 carbendazim이 DNA, 유전자 및 염색체에 미치는 영향)

  • Lee, Je-Bong;Sung, Pil-Nam;Jeong, Mi-Hye;Shin, Jin-Sup;Kang, Kyu-Young
    • The Korean Journal of Pesticide Science
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    • v.8 no.4
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    • pp.288-298
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    • 2004
  • Benzimidazole pesticide carbendazim that is effective against a wide range of fungal plant pathogens is a protective, eradicant, and systemic fungicide. For genetic toxicity evaluation of carbendazim on DNA, genes and chromosome, were investigated with chromosome aberration, bacterial reverse mutation, micronucleus test in mouse born marrow and DNA damage assay by single cell microgel electrophoresis. Substitution and frameshift mutation were not induce at variable concentration of carbendazim on Ames test with or without rat liver microsomal activation. For the result of chromosome aberration test, numerical changes of chromosome were detected at the concentrations higher than $4.0{\mu}g/m{\ell}$, but structural aberration was not induced. Positive control, Mitomycin-C and captafol made a structural aberration, but numerical change of chromosome did not appear. In the micronucleus test for mouse born marrow, carbendazim was negative, but was weak positive in DNA damage assay by single cell microgel electrophoresis because of increased DNA moving length of 20% to control.