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New Gene Responsible for Resistance of Clinical Corynebacteria to Macrolide, Lincosamide and Streptogramin B


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Akan A., J. Bengisun, A. Bati, M. Arat, O. Ilhan and H. Akan. 2002. A case of catheter related septicemia caused by Corynebacterium jeikeium. Turk. J. Haematol. 19: 47–50.AkanA.J.BengisunA.BatiM.AratO.IlhanH.Akan2002A case of catheter related septicemia caused by Corynebacterium jeikeiumTurk. J. Haematol.194750Search in Google Scholar

Alibi S., A. Ferjani, J. Boukadida, M.E. Cano, M. Fernández-Martínez, L. Martínez-Belmares J., S. Detterline, J.B. Pak and J.P. Parada. 2007. Corynebacterium endocarditis species – specific risk factors and outcomes. BMC Infect. Dis. 7: 4.AlibiS.A.FerjaniJ.BoukadidaM.E.CanoM.Fernández-MartínezL.Martínez-Belmares J.S.DetterlineJ.B.PakJ.P.Parada2007Corynebacterium endocarditis species – specific risk factors and outcomesBMC Infect. Dis.7410.1186/1471-2334-7-4Search in Google Scholar

Cetin E.S., H. Gunes, S. Kaya, B.C. Aridogan and M. Demirci. 2010. Distribution of genes encoding resistance to macrolides, lincosamides and streptogramins among clinical staphylococcal isolates in a Turkish University Hospital. J. Microbiol. Immunol. Infect. 43: 524–529.CetinE.S.H.GunesS.KayaB.C.AridoganM.Demirci2010Distribution of genes encoding resistance to macrolides, lincosamides and streptogramins among clinical staphylococcal isolates in a Turkish University HospitalJ. Microbiol. Immunol. Infect.4352452910.1016/S1684-1182(10)60081-3Search in Google Scholar

Chaieb K., T. Zmantar, O. Chehab, O. Bouchami, A.B. Hasen and K. Mahdouani. 2007. Antibiotic resistance genes detected by multiplex PCR assays in Staphylococcus epidermidis strains isolated from dialysis fluid and needles in a dialysis service. Jpn. J. Infect. Dis. 60: 183–187.ChaiebK.T.ZmantarO.ChehabO.BouchamiA.B.HasenK.Mahdouani2007Antibiotic resistance genes detected by multiplex PCR assays in Staphylococcus epidermidis strains isolated from dialysis fluid and needles in a dialysis serviceJpn. J. Infect. Dis.60183187Search in Google Scholar

Chen F.L., P.R. Hsueh, S.O. Teng, T.Y. Ou, W.S. Lee 2012. Corynebacterium striatum bacteremia associated with central venous catheter infection. J. Microbiol. Immunol. Infect. 45: 255–258.ChenF.L.P.R.HsuehS.O.TengT.Y.OuW.S.Lee2012Corynebacterium striatum bacteremia associated with central venous catheter infectionJ. Microbiol. Immunol. Infect.4525525810.1016/j.jmii.2011.09.01622154992Search in Google Scholar

CLSI, Clinical and Laboratory Standards Institute. 2015. Methods for Antimicrobial Dilution and Disk Susceptibility Testing of Infrequently Isolated or Fastidious Bacteria; Approved Guideline – 3nd ed. M45, Wayne, PA, USA.CLSI, Clinical and Laboratory Standards Institute2015Methods for Antimicrobial Dilution and Disk Susceptibility Testing of Infrequently Isolated or Fastidious Bacteria; Approved Guideline3nded. M45,Wayne, PA, USASearch in Google Scholar

Daisuke U., T. Oishi, K. Yamane and K. Terada. 2017. Corynebacterium striatum bacteremia associated with a catheter-related blood stream infection. 2017. Case Rep. Infect. Dis. 2017: 2682149.DaisukeU.T.OishiK.YamaneK.Terada2017Corynebacterium striatum bacteremia associated with a catheter-related blood stream infection. 2017Case Rep. Infect. Dis.2017268214910.1155/2017/2682149528646828197349Search in Google Scholar

El-Mahdy T.S., S. Abdalla, R. El-Domany, M.S. Mohamed, J.I. Ross and A.M. Snelling. 2010. Detection of a new erm(X)-mediated antibiotic resistance in Egyptian cutaneous propionibacteria. Anaerobe 16: 376–379.El-MahdyT.S.S.AbdallaR.El-DomanyM.S.MohamedJ.I.RossA.M.Snelling2010Detection of a new erm(X)-mediated antibiotic resistance in Egyptian cutaneous propionibacteriaAnaerobe1637637910.1016/j.anaerobe.2010.06.00320541615Search in Google Scholar

EUCAST, European Committee on Antimicrobial Susceptibility Testing. Breakpoint tables for interpretation of MICs and zone diameters. Version 7.1, valid from 2017.03.13.EUCAST, European Committee on Antimicrobial Susceptibility TestingBreakpoint tables for interpretation of MICs and zone diameters. Version 7.1, valid from 2017.03.13Search in Google Scholar

Gatermann S.G., T. Koschinski and S. Friedrich. 2007. Distribution and expression of macrolide resistance genes in coagulase-negative staphylococci. Clin. Microbiol. Infect. 13: 777–781.GatermannS.G.T.KoschinskiS.Friedrich2007Distribution and expression of macrolide resistance genes in coagulase-negative staphylococciClin. Microbiol. Infect.1377778110.1111/j.1469-0691.2007.01749.x17501977Search in Google Scholar

Hahn W. O., J. B. Werth, S. M. Butler-Wu and R. M. Rakita. 2016. Multidrug-resistant Corynebacterium striatum associated with increased use of parenteral antimicrobial drugs. Emerg. Infect. Dis. 22: 1908–1914.HahnW. O.J. B.WerthS. M.Butler-WuR. M.Rakita2016Multidrug-resistant Corynebacterium striatum associated with increased use of parenteral antimicrobial drugsEmerg. Infect. Dis.221908191410.3201/eid2211.160141508800227767926Search in Google Scholar

Juda M. 2010. PhD. thesis, Phenotypic and genetic analysis of coagulase-negative staphylococci resistance to macrolides, lincosamides and streptogramins (in Polish). Department of Pharmaceutical Microbiology with Laboratory for Microbiological Diagnostics, Medical University of Lublin. Lublin. Poland.JudaM.2010PhD. thesisPhenotypic and genetic analysis of coagulase-negative staphylococci resistance to macrolides, lincosamides and streptogramins (in Polish)Department of Pharmaceutical Microbiology with Laboratory for Microbiological Diagnostics, Medical University of LublinLublin. PolandSearch in Google Scholar

Khamis A., D. Raoult and B. La Scola. 2004. rpoB gene sequencing for identification of Corynebacterium species. J. Clin. Microbiol. 42: 3925–3931.KhamisA.D.RaoultB.La Scola2004rpoB gene sequencing for identification of Corynebacterium speciesJ. Clin. Microbiol.423925393110.1128/JCM.42.9.3925-3931.200451635615364970Search in Google Scholar

Lee P.P., D.A. Ferguson and F.A. Sarubbi. 2005. Corynebacterium striatum: an underappreciated community and nosocomial pathogen. J. Infect. 50: 338–343.LeeP.P.D.A.FergusonF.A.Sarubbi2005Corynebacterium striatum: an underappreciated community and nosocomial pathogenJ. Infect.5033834310.1016/j.jinf.2004.05.00515845432Search in Google Scholar

Lina G., A. Quaglia, M. Reverdy, R. Leclercq, F. Vandenesch, and J. Etienne. 1999. Distribution of genes encoding resistance to macrolides, lincosamides and streptogramins among staphylococci. Antimicrob. Agents Chemother. 43: 1062–1066.LinaG.A.QuagliaM.ReverdyR.LeclercqF.Vandenesch, and J.Etienne1999Distribution of genes encoding resistance to macrolides, lincosamides and streptogramins among staphylococciAntimicrob. Agents Chemother.431062106610.1128/AAC.43.5.10628911110223914Search in Google Scholar

Luna V.A., P. Coates, A. Eady, J.H Cove., T.T.H. Nguyen and M.C. Roberts. 1999. A variety of Gram-positive bacteria carry mobile mef genes. J. Antimicrob. Chemother. 44: 19–25LunaV.A.P.CoatesA.EadyJ.H Cove.T.T.H.NguyenM.C.Roberts1999A variety of Gram-positive bacteria carry mobile mef genesJ. Antimicrob. Chemother.44192510.1093/jac/44.1.1910459806Search in Google Scholar

Maravic G. 2004. Macrolide resistance based on the Ermmediated rRNA methylation. Curr. Drug Targets Infect. Disord. 4: 193–202.MaravicG.2004Macrolide resistance based on the Ermmediated rRNA methylationCurr. Drug Targets Infect. Disord.419320210.2174/156800504334077715379730Search in Google Scholar

Mookadam F., M. Cikes, L.M. Baddour, I.M. Tleyjeh and M. Mookadam. 2006. Corynebacterium jeikeium endocarditis: a systematic overview spanning four decades. Eur. J. Clin. Microbiol. Infect. Dis. 25: 349–353.MookadamF.M.CikesL.M.BaddourI.M.TleyjehM.Mookadam2006Corynebacterium jeikeium endocarditis: a systematic overview spanning four decadesEur. J. Clin. Microbiol. Infect. Dis.2534935310.1007/s10096-006-0145-816767481Search in Google Scholar

Morata L., E. Tornero, J.C. Martínez-Pastor, S. García-Ramiro, J. Mensa and A. Soriano. 2014. Clinical experience with linezolid for the treatment of orthopaedic implant infections. J. Antimicrob. Chemother. 69: 47–52.MorataL.E.TorneroJ.C.Martínez-PastorS.García-RamiroJ.MensaA.Soriano2014Clinical experience with linezolid for the treatment of orthopaedic implant infectionsJ. Antimicrob. Chemother.69475210.1093/jac/dku25225135090Search in Google Scholar

Ojo K.K., M.J. Striplin, C.C. Ulep, N.S. Close, J. Zittle, H. Luis, J. Leitao, M.C. Roberts and M. Bernardo. 2006. Staphylococcus efflux msr(A) gene characterized in Streptococcus, Enterococcus, Corynebacterium, and Pseudomonas isolates. Antimicrob. Agents Chemother. 50: 1089–1091.OjoK.K.M.J.StriplinC.C.UlepN.S.CloseJ.ZittleH.LuisJ.LeitaoM.C.RobertsM.Bernardo2006Staphylococcus efflux msr(A) gene characterized in Streptococcus, Enterococcus, Corynebacterium, and Pseudomonas isolatesAntimicrob. Agents Chemother.501089109110.1128/AAC.50.3.1089-1091.2006142644016495276Search in Google Scholar

Olender A. 2013. Antibiotic resistance and detection of the most common mechanism of resistance (MLSB) of opportunistic Corynebacterium. Chemotherapy 59: 294–306OlenderA.2013Antibiotic resistance and detection of the most common mechanism of resistance (MLSB) of opportunistic CorynebacteriumChemotherapy5929430610.1159/00035746724480817Search in Google Scholar

Olender A. and M. Niemcewicz. 2010. Macrolide, lincosamide, and streptogramin B-constitutive-type resistance in Corynebacterium pseudodiphtheriticum isolated from upper respiratory tract specimens. Microb. Drug Resist. 16: 119–122.OlenderA.M.Niemcewicz2010Macrolide, lincosamide, and streptogramin B-constitutive-type resistance in Corynebacterium pseudodiphtheriticum isolated from upper respiratory tract specimensMicrob. Drug Resist.1611912210.1089/mdr.2009.012220438346Search in Google Scholar

Ortiz-Perez A., N.Z. Martin-de-Hijas, J. Esteban, M.I. Fernandez-Natal, J.I. Garcia-Cia and R. Fernandez-Roblas. 2010. High frequency of macrolide resistance mechanisms in clinical isolates of Corynebacterium species. Microb. Drug Resist. 16: 273–277.Ortiz-PerezA.N.Z.Martin-de-HijasJ.EstebanM.I.Fernandez-NatalJ.I.Garcia-CiaR.Fernandez-Roblas2010High frequency of macrolide resistance mechanisms in clinical isolates of Corynebacterium speciesMicrob. Drug Resist.1627327710.1089/mdr.2010.003220624090Search in Google Scholar

Otsuka Y., K. Ohkusu, Y. Kawamura, S. Baba, T. Azeki and S. Kimura. 2006. Emergence of multidrugresistant Corynebacterium striatum as a nosocomial pathogen in long-term hospitalized patients with underlying diseases. Diagn. Microbiol. Infect. Dis. 54: 109–114.OtsukaY.K.OhkusuY.KawamuraS.BabaT.AzekiS.Kimura2006Emergence of multidrugresistant Corynebacterium striatum as a nosocomial pathogen in long-term hospitalized patients with underlying diseasesDiagn. Microbiol. Infect. Dis.5410911410.1016/j.diagmicrobio.2005.08.00516406181Search in Google Scholar

Perreten V., L. Vorlet-Fawer, P. Slickers, R. Ehricht, P. Kuhnert, and J. Frey. 2005. Microarray-based detection of 90 antibiotic resistance genes of gram-positive bacteria. J. Clin. Microbiol. 43: 2291–2302.PerretenV.L.Vorlet-FawerP.SlickersR.EhrichtP.Kuhnert, and J.Frey2005Microarray-based detection of 90 antibiotic resistance genes of gram-positive bacteriaJ. Clin. Microbiol.432291230210.1128/JCM.43.5.2291-2302.2005115373015872258Search in Google Scholar

Reddy B.S., A. Chaudhury, U. Kalawat, R. Jayaprada, G.S.K. Reddy and B.V. Ramana. 2012. Isolation, speciation and antibiogram of clinically relevant non-diphterial Corynebacteria (Diphtheroids). Indian J. Med. Microbiol. 30: 52–57.ReddyB.S.A.ChaudhuryU.KalawatR.JayapradaG.S.K.ReddyB.V.Ramana2012Isolation, speciation and antibiogram of clinically relevant non-diphterial Corynebacteria (Diphtheroids)Indian J. Med. Microbiol.30525710.4103/0255-0857.9303322361761Search in Google Scholar

Roberts M.C. 2008. Update on macrolide-lincosamide streptogramin, ketolide, and oxazolidinone resistance genes. FEMS Microbiol. Lett. 282: 147–159.RobertsM.C.2008Update on macrolide-lincosamide streptogramin, ketolide, and oxazolidinone resistance genesFEMS Microbiol. Lett.28214715910.1111/j.1574-6968.2008.01145.x18399991Search in Google Scholar

Roberts M.C., R.B. Leonard, A. Briselden, F.D. Schoenknecht and M.B. Coyle. 1992. Characterization of antibiotic-resistant Corynebacterium striatum strains. J. Antimicrob. Chemother. 30: 463–474.RobertsM.C.R.B.LeonardA.BriseldenF.D.SchoenknechtM.B.Coyle1992Characterization of antibiotic-resistant Corynebacterium striatum strainsJ. Antimicrob. Chemother.3046347410.1093/jac/30.4.4631490919Search in Google Scholar

Roberts M.C., J. Sutcliffe, P. Courvalin, L.B. Jensen, J. Rood, and H. Seppala. 1999. Nomenclature for macrolide and macrolide-lincosamide-streptogramin B resistance determinants. Antimicrob. Agents Chemother. 43: 2823–2830.RobertsM.C.J.SutcliffeP.CourvalinL.B.JensenJ.Rood, and H.Seppala1999Nomenclature for macrolide and macrolide-lincosamide-streptogramin B resistance determinantsAntimicrob. Agents Chemother.432823283010.1128/AAC.43.12.28238957210582867Search in Google Scholar

Rosato A.E., B.S. Lee and K.A. Nash. 2001. Inducible macrolide resistance in Corynebacterium jeikeium. Antimicrob. Agents Chemother. 45: 1982–1989.RosatoA.E.B.S.LeeK.A.Nash2001Inducible macrolide resistance in Corynebacterium jeikeiumAntimicrob. Agents Chemother.451982198910.1128/AAC.45.7.1982-1989.20019058911408212Search in Google Scholar

Ross J.I., A.A. Eady, E. Carnegle and J.H. Cove. 2002. Detection of transposon Tn5432-mediated macrolide-lincosamide-streptogramin B (MLSB) resistance in cutaneus propionibacterie from six European cities. J. Antimicrob. Chemother. 49: 165–168.RossJ.I.A.A.EadyE.CarnegleJ.H.Cove2002Detection of transposon Tn5432-mediated macrolide-lincosamide-streptogramin B (MLSB) resistance in cutaneus propionibacterie from six European citiesJ. Antimicrob. Chemother.4916516810.1093/jac/49.1.16511751782Search in Google Scholar

Soriano F., J. Zapardiel and E. Nieto. 1995. Antimicrobial susceptibilities of Corynebacterium species and other non-spore-forming gram-positive bacilli to 18 antimicrobial agents. Antimicrob. Agents Chemother. 39: 208–214.SorianoF.J.ZapardielE.Nieto1995Antimicrobial susceptibilities of Corynebacterium species and other non-spore-forming gram-positive bacilli to 18 antimicrobial agentsAntimicrob. Agents Chemother.3920821410.1128/AAC.39.1.2081625107695308Search in Google Scholar

Sutcliffe J., T. Grebe, A. Tait-Kamradt, and L. Wondrack. 1996. Detection of erythromycin-resistant determinants by PCR. Antimicrob. Agents Chemother. 40: 2562–2566.SutcliffeJ.T.GrebeA.Tait-Kamradt, and L.Wondrack1996Detection of erythromycin-resistant determinants by PCRAntimicrob. Agents Chemother.402562256610.1128/AAC.40.11.25621635768913465Search in Google Scholar

Szemraj M, A. Kwaszewska, R. Pawlak and E.M. Szewczyk. 2014. Macrolide, lincosamide, and streptogramin B resistance in lipophilic corynebacteria inhabiting healthy human skin. Microb. Drug Resist. 20: 404–409.Szemraj MA.KwaszewskaR.PawlakE.M.Szewczyk2014Macrolide, lincosamide, and streptogramin B resistance in lipophilic corynebacteria inhabiting healthy human skinMicrob. Drug Resist.2040440910.1089/mdr.2013.019224735183Search in Google Scholar

Tang S., L. Yao, X. Hao, X. Zhang, G. Liu, X. Liu, M. Wu, L. Zen, H. Sun, Y. Liu and others. 2015. Efficacy, safety and tolerability of linezolid for the treatment of XDR-TB: a study in China. Eur. Respir. J. 45: 161–170.TangS.L.YaoX.HaoX.ZhangG.LiuX.LiuM.WuL.ZenH.SunY.Liuand others2015Efficacy, safety and tolerability of linezolid for the treatment of XDR-TB: a study in ChinaEur. Respir. J.4516117010.1183/09031936.0003511425234807Search in Google Scholar

Tauch A., N. Bischoff, I. Brune and J. Kalinowski. 2003. Insights into the genetic organization of the Corynebacterium diphtheriae erythromycin resistance plasmid pNG2 deduced from its complete nucleotide sequence. Plasmid. 49: 63–74.TauchA.N.BischoffI.BruneJ.Kalinowski2003Insights into the genetic organization of the Corynebacterium diphtheriae erythromycin resistance plasmid pNG2 deduced from its complete nucleotide sequencePlasmid.49637410.1016/S0147-619X(02)00115-4Search in Google Scholar

Tauch A., O. Kaiser, T. Hain, A. Goesmann, B. Weisshaar, A. Albersmeier, T. Bekel, N. Bischoff, I. Brune, T. Chakraborty and others. 2005. Complete genome sequence and analysis of the multiresistant nosocomial pathogen Corynebacterium jeikeium K411, a lipidrequiring bacterium of the human skin flora. J. Bacteriol. 187: 4671–4682.TauchA.O.KaiserT.HainA.GoesmannB.WeisshaarA.AlbersmeierT.BekelN.BischoffI.BruneT.Chakrabortyand others2005Complete genome sequence and analysis of the multiresistant nosocomial pathogen Corynebacterium jeikeium K411, a lipidrequiring bacterium of the human skin floraJ. Bacteriol.1874671468210.1128/JB.187.13.4671-4682.2005115175815968079Search in Google Scholar

Tauch A., F. Kassing, J. Kalinowski and A. Pühler. 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.TauchA.F.KassingJ.KalinowskiA.Pühler1995The Corynebacterium xerosis composite transposon Tn5432 consists of two identical insertion sequences, designated IS1249, flanking the erythromycin resistance gene ermCXPlasmid3411913110.1006/plas.1995.99958559800Search in Google Scholar

Tleyjeh I.M., M.O. Qutub, M. Bakleh, M.R. Sohail and A. Virk. 2005. Corynebacterium jeikeium prosthetic joint infection: case report and literature review. Scand. J. Infect. Dis. 37: 151–153.TleyjehI.M.M.O.QutubM.BaklehM.R.SohailA.Virk2005Corynebacterium jeikeium prosthetic joint infection: case report and literature reviewScand. J. Infect. Dis.37151153Search in Google Scholar

Wang C., D. Mattson and A. Wald. 2001. Corynebacterium jeikeium bacteriemia in bone marrow transplant patients with Hickman catheters. Bone Marrow Transplant 27: 445–449.WangC.D.MattsonA.Wald2001Corynebacterium jeikeium bacteriemia in bone marrow transplant patients with Hickman cathetersBone Marrow Transplant2744544910.1038/sj.bmt.170280811313675Search in Google Scholar

Weisblum B. 1995. Erythromycin resistance by ribosome modification. Antimicrob. Agents Chemother. 39: 577–585.WeisblumB.1995Erythromycin resistance by ribosome modificationAntimicrob. Agents Chemother.3957758510.1128/AAC.39.3.5771625877793855Search in Google Scholar

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