MECHANISMS UNDERLYING EXPRESSION OF TN10 ENCODED TETRACYCLINE RESISTANCE

被引:411
作者
HILLEN, W
BERENS, C
机构
[1] Lehrstuhl für Mikrobiologie, Inst. fur Mikrobiologie/Biochemie, Friedrich-Alexander Univ. E.N., 91058 Erlangen
关键词
TRANSCRIPTIONAL REGULATION; TET REPRESSOR; DNA RECOGNITION; TETRACYCLINE BINDING; CRYSTAL STRUCTURE;
D O I
10.1146/annurev.mi.48.100194.002021
中图分类号
Q93 [微生物学];
学科分类号
071005 [微生物学]; 100705 [微生物与生化药学];
摘要
Tetracycline-resistance determinants encoding active efflux of the drug are widely distributed in gram-negative bacteria and unique with respect to genetic organization and regulation of expression. Each determinant consists of two genes called tetA and tetR, which are oriented with divergent polarity, and between them is a central regulatory region with overlapping promoters and operators. The amino acid sequences of the encoded proteins are 43-78% identical. The resistance protein TetA is a tetracycline/metal-proton antiporter located in the cytoplasmic membrane, while the regulatory protein TetR is a tetracycline inducible repressor. TetR binds via a helix-turn-helix motif to the two tet operators, resulting in repression of both genes. A detailed model of the repressor-operator complex has been proposed on the basis of biochemical and genetic data. The tet genes are differentially regulated so that repressor synthesis can occur before the resistance protein is expressed, This has been demonstrated for the Tn10-encoded tet genes and may be a common property of all tet determinants, as suggested by the similar locations of operators with respect to promoters. Induction is mediated by a tetracycline-metal complex and requires only nanomolar concentrations of the drug. This is the most sensitive effector-inducible system of transcriptional regulation known to date. The crystal structure of the TetR-tetracycline/metal complex shows the Tet repressor in the induced, non-DNA binding conformation. The structural interpretation of many noninducible TetR mutants has offered insight into the conformational changes associated with the switch between inducing and repressing structures of TetR. Tc is buried in the core of TetR, where it is held in place by multiple contacts to the protein.
引用
收藏
页码:345 / 369
页数:25
相关论文
共 93 条
[1]
QUANTITATIVE MODEL FOR GENE-REGULATION BY LAMBDA-PHAGE REPRESSOR [J].
ACKERS, GK ;
JOHNSON, AD ;
SHEA, MA .
PROCEEDINGS OF THE NATIONAL ACADEMY OF SCIENCES OF THE UNITED STATES OF AMERICA-BIOLOGICAL SCIENCES, 1982, 79 (04) :1129-1133
[2]
SEQUENCE OF A CLASS-E TETRACYCLINE RESISTANCE GENE FROM ESCHERICHIA-COLI AND COMPARISON OF RELATED TETRACYCLINE EFFLUX PROTEINS [J].
ALLARD, JD ;
BERTRAND, KP .
JOURNAL OF BACTERIOLOGY, 1993, 175 (14) :4554-4560
[3]
NUCLEOTIDE-SEQUENCE OF CLASS-D TETRACYCLINE RESISTANCE GENES FROM SALMONELLA-ORDONEZ [J].
ALLARD, JD ;
GIBSON, ML ;
VU, LH ;
NGUYEN, TT ;
BERTRAND, KP .
MOLECULAR & GENERAL GENETICS, 1993, 237 (1-2) :301-305
[4]
ALLARD JD, 1992, J BIOL CHEM, V267, P17809
[5]
A THREONINE TO ALANINE EXCHANGE AT POSITION-40 OF TET REPRESSOR ALTERS THE RECOGNITION OF THE 6TH BASE PAIR OF TET OPERATOR FROM GC TO AT [J].
ALTSCHMIED, L ;
BAUMEISTER, R ;
PFLEIDERER, K ;
HILLEN, W .
EMBO JOURNAL, 1988, 7 (12) :4011-4017
[6]
[Anonymous], 1999, INTRO PROTEIN STRUCT
[7]
TETRACYCLINE DIFFUSION THROUGH PHOSPHOLIPID-BILAYERS AND BINDING TO PHOSPHOLIPIDS [J].
ARGAST, M ;
BECK, CF .
ANTIMICROBIAL AGENTS AND CHEMOTHERAPY, 1984, 26 (02) :263-265
[8]
FUNCTIONAL ROLES OF AMINO-ACID-RESIDUES INVOLVED IN FORMING THE ALPHA-HELIX-TURN-ALPHA-HELIX OPERATOR DNA-BINDING MOTIF OF TET REPRESSOR FROM TN10 [J].
BAUMEISTER, R ;
MULLER, G ;
HECHT, B ;
HILLEN, W .
PROTEINS-STRUCTURE FUNCTION AND GENETICS, 1992, 14 (02) :168-177
[9]
CONTACTS BETWEEN TET REPRESSOR AND TET OPERATOR REVEALED BY NEW RECOGNITION SPECIFICITIES OF SINGLE AMINO-ACID REPLACEMENT MUTANTS [J].
BAUMEISTER, R ;
HELBL, V ;
HILLEN, W .
JOURNAL OF MOLECULAR BIOLOGY, 1992, 226 (04) :1257-1270
[10]
LACK OF A 5' NONCODING REGION IN TN1721 ENCODED TETR MESSENGER-RNA IS ASSOCIATED WITH A LOW EFFICIENCY OF TRANSLATION AND A SHORT HALF-LIFE IN ESCHERICHIA-COLI [J].
BAUMEISTER, R ;
FLACHE, P ;
MELEFORS, O ;
VONGABAIN, A ;
HILLEN, W .
NUCLEIC ACIDS RESEARCH, 1991, 19 (17) :4595-4600