Evernimicin binds exclusively to the 50S ribosomal subunit and inhibits translation in cell-free systems derived from both gram-positive and gram-negative bacteria

被引:58
作者
McNicholas, PM [1 ]
Najarian, DJ [1 ]
Mann, PA [1 ]
Hesk, D [1 ]
Hare, RS [1 ]
Shaw, KJ [1 ]
Black, TA [1 ]
机构
[1] Schering Plough Corp, Res Inst, Kenilworth, NJ 07033 USA
关键词
D O I
10.1128/AAC.44.5.1121-1126.2000
中图分类号
Q93 [微生物学];
学科分类号
071005 ; 100705 ;
摘要
Evernimicin (SCH 27899) is a new antibiotic with activity against a wide spectrum of gram-positive bacteria and activity against some gram-negative bacteria. Previous metabolic labeling studies indicated that evernimicin specifically inhibited protein synthesis in Staphylococcus aureus. Using a susceptible Escherichia coli strain, we demonstrated that evernimicin also inhibited protein synthesis in E. coli. In cell-free translation assays with extracts from either E. coli or S. aureus, evernimicin had a 50% inhibitory concentration of approximately 125 nM. In contrast, cell-free systems derived from wheat germ and rabbit reticulocytes were inhibited only by very high levels of evernimicin. Evernimicin did not promote transcript misreading, [C-14]evernimicin specifically bound to the 50S subunit from E. coli. Nonlinear regression analysis of binding data generated with 70S ribosomes from E. coli and S. aureus and 50S subunits from E, coli returned dissociation constants of 84, 86, and 160 nM, respectively. In binding experiments, performed in the presence of excess quantities of a selection of antibiotics known to bind to the 50S subunit, only the structurally similar drug avilamycin blocked binding of [C-14]evernimicin to ribosomes.
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页码:1121 / 1126
页数:6
相关论文
共 26 条
[1]   Association between decreased susceptibility to a new antibiotic for treatment of human diseases, everninomicin (SCH 27899), and resistance to an antibiotic used for growth promotion in animals, avilamycin [J].
Aarestrup, FM .
MICROBIAL DRUG RESISTANCE, 1998, 4 (02) :137-141
[2]   POLYNUCLEOTIDE-PROTEIN INTERACTIONS IN THE TRANSLATION SYSTEM - IDENTIFICATION OF PROTEINS INTERACTING WITH TRANSFER-RNA IN THE A-SITE AND P-SITE OF ESCHERICHIA-COLI RIBOSOMES [J].
ABDURASHIDOVA, GG ;
TURCHINSKY, MF ;
ASLANOV, KA ;
BUDOWSKY, EI .
NUCLEIC ACIDS RESEARCH, 1979, 6 (12) :3891-3909
[3]   Mutations in ribosomal protein L16 conferring reduced susceptibility to evernimicin (SCH27899): Implications for mechanism of action [J].
Adrian, PV ;
Zhao, WJ ;
Black, TA ;
Shaw, KJ ;
Hare, RS ;
Klugman, KP .
ANTIMICROBIAL AGENTS AND CHEMOTHERAPY, 2000, 44 (03) :732-738
[4]  
FERNANDEZMUNOZ R, 1971, METHOD ENZYMOL, V20, P481
[5]   Determination of the absolute stereochemistry at the C16 orthoester of everninomicin antibiotics; A novel acid-catalyzed isomerization of orthoesters [J].
Ganguly, AK ;
McCormick, JL ;
Chan, TM ;
Saksena, AK ;
Das, PR .
TETRAHEDRON LETTERS, 1997, 38 (46) :7989-7992
[6]  
GANGULY AK, 1989, HETEROCYCLES, V28, P83
[7]   CHEMICAL MODIFICATION OF EVERNINOMICINS [J].
GANGULY, AK ;
GIRIJAVALLABHAN, VM ;
MILLER, GH ;
SARRE, OZ .
JOURNAL OF ANTIBIOTICS, 1982, 35 (05) :561-570
[8]  
Hesk D, 1999, J LABELLED COMPD RAD, V42, P159, DOI 10.1002/(SICI)1099-1344(199902)42:2<159::AID-JLCR177>3.0.CO
[9]  
2-6
[10]  
JONES RN, 1995, J CLIN MICROBIOL INF, V1, P35