The Corynebacterium xerosis composite transposon Tn5432 consists of two identical insertion sequences, designated IS1249, flanking the erythromycin resistance gene ermCX

Tauch A, KASSING F, Kalinowski J, Pühler A (1995)
Plasmid 34(2): 119-131.

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Abstract / Bemerkung
Analysis of the 50-kb R-plasmid pTP10 from the clinical isolate Corynebacterium xerosis M82B revealed that the erythromycin resistance gene, ermCX, is located on a 4524-bp composite transposable element, Tn5432. The ends of Tn5432 are identical, direct repeats of an insertion sequence, designated IS1249, encoding a putative transposase of the IS256 family. IS1249 consists of 1385 bp with 45/42 imperfect terminal inverted repeats. The nucleotide sequence of the 1754-bp Tn5432 central region is 99% identical to the previously sequenced erythromycin resistance region of the Corynebacterium diphtheriae plasmid pNG2. It encodes the erythromycin resistance gene, ermCX, and an ORF homologous to the amino-terminal end of the transposase of IS31831 from Corynebacterium glutamicum. Transposons with regions flanking the insertion sites were recovered from the C. glutamicum chromosome by a plasmid rescue technique. Insertion of Tn5432 created 8-bp target site duplications. A Tn5432-induced isoleucine/valine-auxotrophic mutant was found to carry the transposon in the 5' region of the ilvBNC cluster; in pTP10 the transposon is inserted in a region similar to replication and partitioning functions of the Enterococcus faecalis plasmid pAD1 and the Agrobacterium tumefaciens plasmid pTAR. (C) 1995 Academic Press, Inc.
Erscheinungsjahr
1995
Zeitschriftentitel
Plasmid
Band
34
Ausgabe
2
Seite(n)
119-131
ISSN
0147-619X
Page URI
https://pub.uni-bielefeld.de/record/1639972

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Tauch A, KASSING F, Kalinowski J, Pühler A. The Corynebacterium xerosis composite transposon Tn5432 consists of two identical insertion sequences, designated IS1249, flanking the erythromycin resistance gene ermCX. Plasmid. 1995;34(2):119-131.
Tauch, A., KASSING, F., Kalinowski, J., & Pühler, A. (1995). The Corynebacterium xerosis composite transposon Tn5432 consists of two identical insertion sequences, designated IS1249, flanking the erythromycin resistance gene ermCX. Plasmid, 34(2), 119-131. https://doi.org/10.1006/plas.1995.9995
Tauch, Andreas, KASSING, F, Kalinowski, Jörn, and Pühler, Alfred. 1995. “The Corynebacterium xerosis composite transposon Tn5432 consists of two identical insertion sequences, designated IS1249, flanking the erythromycin resistance gene ermCX”. Plasmid 34 (2): 119-131.
Tauch, A., KASSING, F., Kalinowski, J., and Pühler, A. (1995). The Corynebacterium xerosis composite transposon Tn5432 consists of two identical insertion sequences, designated IS1249, flanking the erythromycin resistance gene ermCX. Plasmid 34, 119-131.
Tauch, A., et al., 1995. The Corynebacterium xerosis composite transposon Tn5432 consists of two identical insertion sequences, designated IS1249, flanking the erythromycin resistance gene ermCX. Plasmid, 34(2), p 119-131.
A. Tauch, et al., “The Corynebacterium xerosis composite transposon Tn5432 consists of two identical insertion sequences, designated IS1249, flanking the erythromycin resistance gene ermCX”, Plasmid, vol. 34, 1995, pp. 119-131.
Tauch, A., KASSING, F., Kalinowski, J., Pühler, A.: The Corynebacterium xerosis composite transposon Tn5432 consists of two identical insertion sequences, designated IS1249, flanking the erythromycin resistance gene ermCX. Plasmid. 34, 119-131 (1995).
Tauch, Andreas, KASSING, F, Kalinowski, Jörn, and Pühler, Alfred. “The Corynebacterium xerosis composite transposon Tn5432 consists of two identical insertion sequences, designated IS1249, flanking the erythromycin resistance gene ermCX”. Plasmid 34.2 (1995): 119-131.

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PMID: 29326010
Phenotypic, molecular characterization, antimicrobial susceptibility and draft genome sequence of Corynebacterium argentoratense strains isolated from clinical samples.
Fernández-Natal I, Sáez-Nieto JA, Rodríguez-Lázaro D, Valdezate-Ramos S, Parras-Padilla T, Medina MJ, Rodríguez-Pollán RH, Blom J, Tauch A, Soriano F., New Microbes New Infect 10(), 2016
PMID: 26933505
Functional characterization of a vanillin dehydrogenase in Corynebacterium glutamicum.
Ding W, Si M, Zhang W, Zhang Y, Chen C, Zhang L, Lu Z, Chen S, Shen X., Sci Rep 5(), 2015
PMID: 25622822
Detection of erm(X)-mediated antibiotic resistance in Bifidobacterium longum subsp. longum
Luo C, Hang X, Liu X, Zhang M, Yang X, Yang H., Ann Microbiol 65(4), 2015
PMID: IND604659445
Genome sequence of the squalene-degrading bacterium Corynebacterium terpenotabidum type strain Y-11(T) (= DSM 44721(T)).
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PMID: 25197436
Genetic characterization of 4-cresol catabolism in Corynebacterium glutamicum.
Li T, Chen X, Chaudhry MT, Zhang B, Jiang CY, Liu SJ., J Biotechnol 192 Pt B(), 2014
PMID: 24480572
Erm(X)-mediated resistance to macrolides, lincosamides and streptogramins in Actinobaculum schaalii.
Hays C, Lienhard R, Auzou M, Barraud O, Guérin F, Ploy MC, Cattoir V., J Antimicrob Chemother 69(8), 2014
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Physiological roles of mycothiol in detoxification and tolerance to multiple poisonous chemicals in Corynebacterium glutamicum.
Liu YB, Long MX, Yin YJ, Si MR, Zhang L, Lu ZQ, Wang Y, Shen XH., Arch Microbiol 195(6), 2013
PMID: 23615850
Mobilome and genetic modification of bifidobacteria.
Guglielmetti S, Mayo B, Álvarez-Martín P., Benef Microbes 4(2), 2013
PMID: 23271067
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Schaffert L, Albersmeier A, Bednarz H, Niehaus K, Kalinowski J, Rückert C., Stand Genomic Sci 8(3), 2013
PMID: 24501635
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Petri K, Walter F, Persicke M, Rückert C, Kalinowski J., BMC Genomics 14(), 2013
PMID: 24138314
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Zhang Y, Shang X, Lai S, Zhang G, Liang Y, Wen T., Appl Environ Microbiol 78(16), 2012
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PMID: 23408721
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PMID: 21468701
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PMID: 20055984
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Zhao KX, Huang Y, Chen X, Wang NX, Liu SJ., J Bacteriol 192(6), 2010
PMID: 20081038
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Boumghar-Bourtchai L, Chardon H, Malbruny B, Mezghani S, Leclercq R, Dhalluin A., Int J Antimicrob Agents 34(3), 2009
PMID: 19414240
Genetic and biochemical characterization of a 4-hydroxybenzoate hydroxylase from Corynebacterium glutamicum.
Huang Y, Zhao KX, Shen XH, Jiang CY, Liu SJ., Appl Microbiol Biotechnol 78(1), 2008
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Brinkrolf K, Plöger S, Solle S, Brune I, Nentwich SS, Hüser AT, Kalinowski J, Pühler A, Tauch A., Microbiology 154(pt 4), 2008
PMID: 18375800
Corynebacterium glutamicum contains 3-deoxy-D-arabino-heptulosonate 7-phosphate synthases that display novel biochemical features.
Liu YJ, Li PP, Zhao KX, Wang BJ, Jiang CY, Drake HL, Liu SJ., Appl Environ Microbiol 74(17), 2008
PMID: 18621870
Genetic characterization of the resorcinol catabolic pathway in Corynebacterium glutamicum.
Huang Y, Zhao KX, Shen XH, Chaudhry MT, Jiang CY, Liu SJ., Appl Environ Microbiol 72(11), 2006
PMID: 16963551
Functional genomics and expression analysis of the Corynebacterium glutamicum fpr2-cysIXHDNYZ gene cluster involved in assimilatory sulphate reduction.
Rückert C, Koch DJ, Rey DA, Albersmeier A, Mormann S, Pühler A, Kalinowski J., BMC Genomics 6(), 2005
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Funke G, Pünter V, von Graevenitz A., Antimicrob Agents Chemother 40(12), 1996
PMID: 9124857
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