Protein Domain : IPR015893

Type:  Domain Name:  Tetracycline transcriptional regulator, TetR-like, C-terminal
Description:  The antibiotic tetracycline has a broad spectrum of activity, acting to inhibit bacterial protein synthesis by binding to the 30S ribosomal subunit, which prevents the association of the aminoacyl-tRNA to the ribosomal acceptor A site. Tetracycline binding is reversible, therefore diluting out the antibiotic can reverse its effects. Tetracycline resistance genes are often located on mobile elements, such as plasmids, transposons and/or conjugative transposons, which can sometimes be transferred between bacterial species. In certain cases, tetracycline can enhance the transfer of these elements, thereby promoting resistance amongst a bacterial colony. There are three types of tetracycline resistance: tetracycline efflux, ribosomal protection, and tetracycline modification [, ]: Tetracycline efflux proteins belong to the major facilitator superfamily. Efflux proteins are membrane-associated proteins that recognise and export tetracycline from the cell. They are found in both Gram-positive and Gram-negative bacteria []. There are at least 22 different tetracycline efflux proteins, grouped according to sequence similarity: Group 1 are Tet(A), Tet(B), Tet(C), Tet(D), Tet(E), Tet(G), Tet(H), Tet(J), Tet(Z) and Tet(30); Group 2 are Tet(K) and Tet(L); Group 3 are Otr(B) and Tcr(3); Group 4 is TetA(P); Group 5 is Tet(V). In addition, there are the efflux proteins Tet(31), Tet(33), Tet(V), Tet(Y), Tet(34), and Tet(35).Ribosomal protection proteins are cytoplasmic proteins that display homology with the elongation factors EF-Tu and EF-G. Protection proteins bind the ribosome, causing an alteration in ribosomal conformation that prevents tetracycline from binding. There are at least ten ribosomal protection proteins: Tet(M), Tet(O), Tet(S), Tet(W), Tet(32), Tet(36), Tet(Q), Tet(T), Otr(A), and TetB(P). Both Tet(M) and Tet(O) have ribosome-dependent GTPase activity, the hydrolysis of GTP providing the energy for the ribosomal conformational changes. Tetracycline modification proteins include the enzymes Tet(37) and Tet(X), both of which inactivate tetracycline. In addition, there are the tetracycline resistance proteins Tet(U) and Otr(C).The expression of several of these tet genes is controlled by a family of tetracycline transcriptional regulators known as TetR. TetR family regulators are involved in the transcriptional control of multidrug efflux pumps, pathways for the biosynthesis of antibiotics, response to osmotic stress and toxic chemicals, control of catabolic pathways, differentiation processes, and pathogenicity []. The TetR proteins identified in over 115 genera of bacteria and archaea share a common helix-turn-helix (HTH) structure in their DNA-binding domain. However, TetR proteins can work in different ways: they can bind a target operator directly to exert their effect (e.g. TetR binds Tet(A) gene to repress it in the absence of tetracycline), or they can be involved in complex regulatory cascades in which the TetR protein can either be modulated by another regulator or TetR can trigger the cellular response. This entry represents the C-terminal domain found in a number of different TetR transcription regulator proteins. TetR regulates the expression of the membrane-associated tetracycline resistance protein, TetA, which exports the tetracycline antibiotic out of the cell before it can attach to the ribosomes and inhibit protein synthesis []. TetR blocks transcription from the genes encoding both TetA and TetR in the absence of antibiotic. The C-terminal domain is multi-helical and is interlocked in the homodimer with the helix-turn-helix (HTH) DNA-binding domain. Other members of the TetR family of transcriptional regulators carry this C-terminal domain. These include:QacR from Staphylococcus aureus, a multidrug binding protein that represses transcription of the qacA multidrug transporter gene []Ethr, a repressor from Mycobacterium tuberculosisimplicated in ethionamide drug resistance []YcdC, a hypothetical transcriptional regulator from Escherichia coliYsiA and YfiR, hypothetical transcriptional regulators from Bacillus subtilis Short Name:  Tet_transcr_reg_TetR-like_C

4 Child Features

DB identifier Type Name
IPR011075 Domain Tetracycline transcriptional regulator, TetR-related, C-terminal
IPR013573 Domain Transcription regulator YcdC, C-terminal
IPR004111 Domain Tetracycline transcriptional regulator, TetR, C-terminal
IPR013570 Domain Transcription regulator YsiA, C-terminal

0 Contains

1 Cross References

Identifier
G3DSA:1.10.357.10

2 Found Ins

DB identifier Type Name
IPR003012 Family Tetracycline transcriptional regulator, TetR
IPR019915 Family Transcription regulator, pyrimidine utilisation, RutR

1 GO Annotation

GO Term Gene Name
GO:0003677 IPR015893

1 Ontology Annotations

GO Term Gene Name
GO:0003677 IPR015893

0 Parent Features

3256 Proteins

DB identifier UniProt Accession Secondary Identifier Organism Name Length
430402 D8T9B0 PAC:15419973 Selaginella moellendorffii 554  
162537 D8TAU3 PAC:15405327 Selaginella moellendorffii 284  
412513 D8RLQ3 PAC:15412237 Selaginella moellendorffii 153  
412631 D8RM44 PAC:15413095 Selaginella moellendorffii 904  
96259 D8RM29 PAC:15406241 Selaginella moellendorffii 619  
103221 D8RWK6 PAC:15407356 Selaginella moellendorffii 162  
416350 D8RZ07 PAC:15422396 Selaginella moellendorffii 429  
107914 D8S3D3 PAC:15402178 Selaginella moellendorffii 741  
81263 D8QYY5 PAC:15406747 Selaginella moellendorffii 488  
233833 D8SEZ2 PAC:15403243 Selaginella moellendorffii 230  
446703 D8STM6 PAC:15402330 Selaginella moellendorffii 368  
127009 D8SX16 PAC:15409653 Selaginella moellendorffii 246  
425869 D8SUK3 PAC:15408204 Selaginella moellendorffii 174  
409212 D8RAQ7 PAC:15423095 Selaginella moellendorffii 214  
64357 D8R754 PAC:15401935 Selaginella moellendorffii 265  
164618 D8QTG6 PAC:15411995 Selaginella moellendorffii 513  
403744 D8QSE1 PAC:15409551 Selaginella moellendorffii 378  
403360 D8QTX5 PAC:15406479 Selaginella moellendorffii 1029  
403361 D8QTX6 PAC:15406481 Selaginella moellendorffii 838  
230075 D8QT59 PAC:15410896 Selaginella moellendorffii 722  
90136 D8RCM6 PAC:15410291 Selaginella moellendorffii 464  
91982 D8REG4 PAC:15419384 Selaginella moellendorffii 517  
evm.model.supercontig_104.39 PAC:16405044 Carica papaya 639  
evm.model.supercontig_107.57 PAC:16405362 Carica papaya 479  
evm.model.supercontig_1175.2 PAC:16406459 Carica papaya 508  
evm.model.supercontig_149.20 PAC:16409296 Carica papaya 64  
evm.model.supercontig_159.30 PAC:16409922 Carica papaya 190  
evm.model.supercontig_24.4 PAC:16414492 Carica papaya 175  
evm.model.supercontig_26.27 PAC:16415216 Carica papaya 150  
evm.model.supercontig_26.283 PAC:16415231 Carica papaya 349  

7 Publications

First Author Title Year Journal Volume Pages PubMed ID
            7707374
            16887689
            15837373
            1423217
            15944459
            11739955
            15236969