• Title/Summary/Keyword: aminoglycoside

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Cloning and Sequence Analysis of the Aminoglycoside Resistance Gene from a Nebramycin Complex Producer, Streptoalloteichus hindustanus

  • Hyun, Chang-Gu;Kim, Jong-Woo;Han, Jae-Jin;Choi, Young-Nae;Suh, Joo-Won
    • Journal of Microbiology and Biotechnology
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    • v.8 no.2
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    • pp.146-151
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    • 1998
  • The aminoglycoside multiple-resistance determinant from Streptoalloteichus hindustanus was cloned into Streptomyces lividans and named nbrB. The 1.2-kb ApaI- BclI fragment encompassing nbrB was located within a 2.6-kb ApaI fragment by successive subcloning experiments. The complete DNA nucleotide sequence of 1.2-kb containing nbrB was determined. The sequence contains an open reading frame that putatively encodes a polypeptide of 281 amino acids with a predicted molecular weight of 30,992. The deduced amino acid sequence of nbrB shows identities of 85.1% to kgmB of S. tenebrarius, 59.6% to sgm of Micromonospora zionensis, and 57.7% to grm of M. rosea. The similarity of nbrB to kgmB suggests that nbrB encodes a 16S rRNA methylase similar to that encoded by kgmB and that both genes might be derived from a common ancestral gene.

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Rv3168 Phosphotransferase Activity Mediates Kanamycin Resistance in Mycobacterium tuberculosis

  • Ahn, Jae-Woo;Kim, Kyung-Jin
    • Journal of Microbiology and Biotechnology
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    • v.23 no.11
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    • pp.1529-1535
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    • 2013
  • Tuberculosis is a worldwide epidemic disease caused by Mycobacterium tuberculosis, with an estimated one-third of the human population currently affected. Treatment of this disease with aminoglycoside antibiotics has become less effective owing to antibiotic resistance. Recent determination of the crystal structure of the M. tuberculosis Rv3168 protein suggests a structure similar to that of Enterococcus faecalis APH(3')-IIIa, and that this protein may be an aminoglycoside phosphotransferase. To determine whether Rv3168 confers antibiotic resistance against kanamycin, we performed dose-response antibiotic resistance experiments using kanamycin. Expression of the Rv3168 protein in Escherichia coli conferred antibiotic resistance against $100{\mu}M$ kanamycin, a concentration that effected cell growth arrest in the parental E. coli strain and an E. coli strain expressing the $Rv3168^{D249A}$ mutant, in which the catalytic Asp249 residue was mutated to alanine. Furthermore, we detected phosphotransferase activity of Rv3168 against kanamycin as a substrate. Moreover, docking simulation of kanamycin into the Rv3168 structure suggests that kanamycin fits well into the substrate binding pocket of the protein, and that the phosphorylation-hydroxyl-group of kanamycin was located at a position similar to that in E. faecalis APH(3')-IIIa. On the basis of these results, we suggest that the Rv3168 mediates kanamycin resistance in M. tuberculosis, likely through phosphotransferase targeting of kanamycin.

Molecular Biological Detection of the Genes Encoding Aminoglycosise Acetyltransferases and Aerolysin in Water Samples from Juam Lake (주암호에서 Aminoglycoside Acetyltransferases와 Aerolysin 유전자의 분자생물학적 검출)

  • 이영종;한효심;정재성
    • Korean Journal of Microbiology
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    • v.36 no.4
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    • pp.273-278
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    • 2000
  • The aacCl, aacC2, aacC3, and aacC4 genes, which encode aminoglycoside acetyltransferase AAC(3)-I, AA(3)-II, AAC(3)-III, and AAC(3)-IV, respectively, and aerolysin genes in water samples from Juam lake were surveyed by polymerase chain reaction. Surface water was collected from January 1996 to December 1998, and then bacterial DNA was extracted from the water. Twelve samples were tested by PCR to servey the genes for aminoglycoside acetyltransferase and aerolysin in the lake water. The aacC2 gene was detected in 9 of 12 DNA samples. Among 9 samples showing aacC2 positive, 7 samples were associated with Tn3 sequence. However, none of the twelve samples amplified the expected DNA fragment for aacC1, aacC3, and aacC4 genes. PCR primer to detect the aerolysin gene was designed using the conserved region of the genes for aerolysin and hemolysin of Aeromonas spp. This primer set successfully amplified the expected 414 bp PCR product with the DNA samples from the lake water. The aerolysin gene was detected in 7 of 12 DNA samples. When Southern hybridization of the gel with probe was performed, the aerolysin gene was detected in 10 of 12 DNA samples. However, the seasonal fluctuation of these genes was not found.

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Comparison of Antibiotic Regimens for the Treatment of Community Acquired Pneumonia (원외획득 폐렴 환자치료에서 항생제 regimen 별 효능비교)

  • Moon, Hong-Seop;Choe, In;Lee, Seung-Il
    • Korean Journal of Clinical Pharmacy
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    • v.16 no.2
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    • pp.81-85
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    • 2006
  • Community acquired pneumonia(CAP) is the most prevalent disease among pneumonia patients and progressed to severe pneumonia. A retrospective study was performed to evaluate antibiotic regimens according to guidelines of Infectious Disease Society of America. From January to October 2005, chart review of 50 patients with CAP was peformed in terms of microbiology and laboratory data of each regimen. Temperature, WBC count, ALT, AST and alkaline phosphatase of each patient were examined for liver toxicity. In three patients received levofloxacin appeared to have normalized temperature and improved cough. The patients who received cefmetazole -aminoglycoside appeared to have worsen LFT(Liver function test). Many patients in flomoxef-aminoglycoside group received mechanical ventilation because of the basis diseases like tuberculosis, diabetes mellitus and hypertension. In conclusion, antibiotic therapy for the treatment of CAP should be selected according to tolerance, bacteria and severity of disease.

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A Case of Streptococcus Agalactiae Pneumonia In An Adult Diabetic Man (성인 당뇨병 남자에서 발생한 Streptococcus agalactiae 폐렴 1예)

  • Park, Choon-Sik;Lee, Jee-Yun;Woo, Jun-Hee
    • Tuberculosis and Respiratory Diseases
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    • v.41 no.2
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    • pp.165-170
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    • 1994
  • B군 연쇄상구균(group B streptococcus or Streptococcus agalactiae)은 신생아 뇌막염과 균혈증의 원인균으로 알려져 있고, 우리나라에서는 현재까지 23예의 신생아 B군 연쇄상구균 감염 임상 증례가 보고되었다. 그러나 성인에서의 B군 연쇄상구균 분리 동정에 대한 분석은 보고되었으나, 폐렴 증례는 아직 보고된 바 없고, S. agalactiae의 penicillin에 대한 최소억제농도가 대표적 연쇄상구균인 S. pyogenes 보다 높고 동물실험 및 시험관검사에서 penicillin과 aminoglycoside을 병합사용할 경우 상승작용이 관찰되었기 때문에, 치료제로 penicillin 또는 cephalosporin 을 aminoglycoside와 병합투여하여야 하는 특정을 지니고 있다. 저자들은 74세 남자 당뇨 환자에서 B군 연쇄상구균에 의한 폐렴과 패혈증이 발생한 증례를 치험하여 보고하고자 한다.

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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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Investigation on antimicrobial resistance genes of Salmonella Schwarzengrund isolated from pigs (돼지유래 Salmonella Schwarzengrund의 약제내성 유전자에 관한 연구)

  • Lee, Woo-Won;Kim, Sang-Hyun;Lee, Seung-Mi;Lee, Gang-Rok;Lee, Gi-Heun;Kim, Yong-Hwan
    • Korean Journal of Veterinary Service
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    • v.35 no.1
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    • pp.1-8
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    • 2012
  • To detect the virulence genes (invA and spvC) and antimicrobial resistance genes, polymerase chain reaction (PCR) was carried out using total 67 strains of S. Schwarzengrund isolated from pigs. As results, invA was detected from all 67 strains of S. Schwarzengrund, however, spvC was not at all. All 12 strains with ampicillin resistance, 15 strains with chloramphenicol resistance, 9 strains with kanamycin resistance, 1 strain with sulfamethoxazole/trimethoprim resistance, and 66 (98.5%) of 67 strains with tetracycline resistance carried TEM (${\beta}$-lactamase $bla_{TEM}$), cmlA (nonenzymatic chloramphenicol resistance), aphA1-Iab (aminoglycoside phosphotransferase), sulII (dihydropteroate synthase), and tetA (class A tetracycline resistance), respectively. All 63 strains with streptomycin resistance carried 3 aminoglycoside resistance genes, including aadA (aminoglycoside adenyltransferase), strA, and strB (streptomycin phosphotransferase). With respect to prevalence of antibiotic resistance genes occurred in S. Schwarzengrund, genes for strB (46.0%); strA and strB (30.2%); aadA, strA, and strB (9.5%); strA (7.9%); aadA and strB (3.2%); and aadA (3.2%) were detected by PCR.

In Vivo Characterization of Phosphotransferase-Encoding Genes istP and forP as Interchangeable Launchers of the C3',4'-Dideoxygenation Biosynthetic Pathway of 1,4-Diaminocyclitol Antibiotics

  • Nguyen, Lan Huong;Lee, Na Joon;Hwang, Hyun Ha;Son, Hye Bin;Kim, Hye Ji;Seo, Eun Gyo;Nguyen, Huu Hoang;Park, Je Won
    • Journal of Microbiology and Biotechnology
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    • v.29 no.3
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    • pp.367-372
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    • 2019
  • Deactivation of aminoglycosides by their modifying enzymes, including a number of aminoglycoside O-phosphotransferases, is the most ubiquitous resistance mechanism in aminoglycoside-resistant pathogens. Nonetheless, in a couple of biosynthetic pathways for gentamicins, fortimicins, and istamycins, phosphorylation of aminoglycosides seems to be a unique and initial step for the creation of a natural defensive structural feature such as a 3',4'-dideoxy scaffold. Our aim was to elucidate the biochemical details on the beginning of these C3',4'-dideoxygenation biosynthetic steps for aminoglycosides. The biosynthesis of istamycins must surely involve these 3',4'-didehydroxylation steps, but much less has been reported in terms of characterization of istamycin biosynthetic genes, especially about the phosphotransferase-encoding gene. In the disruption and complementation experiments pointing to a putative gene, istP, in the genome of wild-type Streptomyces tenjimariensis, the function of the istP gene was proved here to be a phosphotransferase. Next, an in-frame deletion of a known phosphotransferase-encoding gene forP from the genome of wild-type Micromonospora olivasterospora resulted in the appearance of a hitherto unidentified fortimicin shunt product, namely 3-O-methyl-FOR-KK1, whereas complementation of forP restored the natural fortimicin metabolite profiles. The bilateral complementation of an istP gene (or forP) in the ${\Delta}forP$ mutant (or ${\Delta}istP$ mutant strain) successfully restored the biosynthesis of 3',4'-dideoxy fortimicins and istamycins, thus clearly indicating that they are interchangeable launchers of the biosynthesis of 3',4'-dideoxy types of 1,4-diaminocyclitol antibiotics.