Ethambutol resistance in Mycobacterium tuberculosis: Critical role of embB mutations

被引:231
作者
Sreevatsan, S
Stockbauer, KE
Pan, X
Kreiswirth, BN
Moghazeh, SL
Jacobs, WR
Telenti, A
Musser, JM
机构
[1] BAYLOR COLL MED,DEPT PATHOL,SECT MOL PATHOBIOL,HOUSTON,TX 77030
[2] METHODIST HOSP,CLIN MICROBIOL LAB,HOUSTON,TX 77030
[3] PUBL HLTH RES INST,TB CTR,NEW YORK,NY
[4] ALBERT EINSTEIN COLL MED,DEPT MICROBIOL & IMMUNOL,BRONX,NY 10467
[5] ALBERT EINSTEIN COLL MED,HOWARD HUGHES MED INST,BRONX,NY 10467
[6] UNIV BERN,INST MED MICROBIOL,CH-3012 BERN,SWITZERLAND
关键词
D O I
10.1128/AAC.41.8.1677
中图分类号
Q93 [微生物学];
学科分类号
071005 ; 100705 ;
摘要
Ethambutol I(S,S')-2,2'-(ethylenediimino)di-1-butanol EMB], is a first-line drug used to treat tuberculosis. To gain insight into the molecular basis of EMB resistance, we characterized the 10-kb embCAB locus in 16 EMB-resistant and 3 EMB-susceptible genetically distinct Mycobacterium tuberculosis strains from diverse localities by automated DNA sequencing and single-stranded conformation polymorphism analysis. All 19 organisms had virtually identical sequences for the entire 10-kb region. Eight EMB-resistant organisms had mutations located in codon 306 of embB that resulted in the replacement of the wild-type Met residue with Ile or Val. Automated sequence analysis of the 5' region (1,892 bp) of embB in an additional 69 EMB-resistant and 30 EMB-susceptible M. tuberculosis isolates from diverse geographic localities and representing 70 distinct IS6110 fingerprints confirmed the unique association of substitutions in amino acid residue 306 of EmbB with EMB resistance. Six other embB nucleotide substitutions resulting in four amino acid replacements were uniquely found in resistant strains, Sixty-nine percent of epidemiologically unassociated EMB-resistant organisms had an amino acid substitution not found in susceptible strains, and most (89%) replacements occurred at amino acid residue 306 of EmbB, For strains with the Met306Leu or Met306Val replacements EMB MICs were generally higher (40 mu g/ml) than those for organisms with Met306Ile substitutions (20 mu g/ml). The data are consistent with the idea that amino acid substitutions in EmbB alter the drug-protein interaction and thereby cause EMB resistance.
引用
收藏
页码:1677 / 1681
页数:5
相关论文
共 39 条
[11]   ETHAMBUTOL MICS AND MBCS FOR MYCOBACTERIUM-AVIUM COMPLEX AND MYCOBACTERIUM-TUBERCULOSIS [J].
HEIFETS, LB ;
ISEMAN, MD ;
LINDHOLMLEVY, PJ .
ANTIMICROBIAL AGENTS AND CHEMOTHERAPY, 1986, 30 (06) :927-932
[12]   IMPLICATIONS OF MULTIDRUG-RESISTANCE FOR THE FUTURE OF SHORT-COURSE CHEMOTHERAPY OF TUBERCULOSIS - A MOLECULAR STUDY [J].
HEYM, B ;
HONORE, N ;
TRUFFOTPERNOT, C ;
BANERJEE, A ;
SCHURRA, C ;
JACOBS, WR ;
VANEMBDEN, JD ;
GROSSET, JH ;
COLE, ST .
LANCET, 1994, 344 (8918) :293-298
[13]  
KAPUR V, 1995, ARCH PATHOL LAB MED, V119, P131
[14]   IS MYCOBACTERIUM-TUBERCULOSIS 15,000 YEARS OLD [J].
KAPUR, V ;
WHITTAM, TS ;
MUSSER, JM .
JOURNAL OF INFECTIOUS DISEASES, 1994, 170 (05) :1348-1349
[15]   CHARACTERIZATION BY AUTOMATED DNA-SEQUENCING OF MUTATIONS IN THE GENE (RPOB) ENCODING THE RNA-POLYMERASE BETA-SUBUNIT IN RIFAMPIN-RESISTANT MYCOBACTERIUM-TUBERCULOSIS STRAINS FROM NEW-YORK-CITY AND TEXAS [J].
KAPUR, V ;
LI, LL ;
IORDANESCU, S ;
HAMRICK, MR ;
WANGER, A ;
KREISWIRTH, BN ;
MUSSER, JM .
JOURNAL OF CLINICAL MICROBIOLOGY, 1994, 32 (04) :1095-1098
[16]   EFFECTS OF ETHAMBUTOL ON PHOSPHOLIPID-METABOLISM IN MYCOBACTERIUM-SMEGMATIS [J].
KILBURN, JO ;
TAKAYAMA, K ;
ARMSTRONG, EL ;
GREENBERG, J .
ANTIMICROBIAL AGENTS AND CHEMOTHERAPY, 1981, 19 (02) :346-348
[17]  
KREISWIRTH BN, 1996, TUBERCULOSIS, P199
[18]   Glycosyltransferases as targets for inhibition of cell wall synthesis in M-tuberculosis and M-avium [J].
Maddry, JA ;
Suling, WJ ;
Reynolds, RC .
RESEARCH IN MICROBIOLOGY, 1996, 147 (1-2) :106-112
[19]   Correlation of molecular resistance mechanisms and phenotypic resistance levels in streptomycin-resistant Mycobacterium tuberculosis [J].
Meier, A ;
Sander, P ;
Schaper, KJ ;
Scholz, M ;
Bottger, EC .
ANTIMICROBIAL AGENTS AND CHEMOTHERAPY, 1996, 40 (11) :2452-2454
[20]   BIOGENESIS OF THE MYCOBACTERIAL CELL-WALL AND THE SITE OF ACTION OF ETHAMBUTOL [J].
MIKUSOVA, K ;
SLAYDEN, RA ;
BESRA, GS ;
BRENNAN, PJ .
ANTIMICROBIAL AGENTS AND CHEMOTHERAPY, 1995, 39 (11) :2484-2489