Target intelligence / Profile preview

HTH-type transcriptional regulator EthR (and EthR2 for the paralog) (EthR; EthR2)

Target
EthR; EthR2
Molecular classification
Transcription factor, Repressor protein, TetR family repressor, Helix-turn-helix (HTH) DNA-binding protein
01

Overview

HTH-type transcriptional regulator EthR is a Mycobacterium tuberculosis (M. tuberculosis) protein belonging to the TetR family of repressors, characterized by a helix-turn-helix (HTH) DNA-binding motif. EthR represses the expression of EthA, a monooxygenase required for activation of ethionamide, a prodrug used to treat multidrug-resistant tuberculosis. By inhibiting EthR (or the related EthR2 paralog), the expression of EthA (or analogous enzymes) is increased, resulting in enhanced activation and efficacy of ethionamide and related prodrugs. EthR is targeted by several experimental ligands, which bind and induce conformational changes that prevent DNA binding, thereby derepressing gene expression. EthR2, a paralog, regulates a distinct but related bioactivation pathway, and can be targeted by small molecules such as SMARt-420. These regulators are considered promising targets for adjunctive therapies to overcome drug resistance in tuberculosis by boosting the activation of existing prodrugs.

Other names
EthREthR2Transcriptional repressor EthRTetR family transcriptional repressor EthR
02

Mechanism of action

Inhibition of EthR/EthR2 leads to derepression of EthA or related monooxygenases, enabling/enhancing prodrug (ethionamide) activation. Direct binding of small molecules to EthR/EthR2 alters their conformation, preventing DNA binding and thus derepressing target gene expression.

03

Biological functions

Regulation of gene expressionRepression of EthA monooxygenase expressionModulation of antibiotic activationTranscriptional regulation
04

Disease associations

Infection (especially tuberculosis)Antibiotic resistance
05

Safety considerations

No major direct safety concerns identified; safety relates to modulation of antibiotic efficacy and potential effects on bacterial viabilityOveractivation could contribute to rapid resistance selection in bacteriaOff-target effects in other bacterial species are possible, but no data
06

Interacting drugs

Ethionamide (prodrug whose activity is modulated by EthR/EthR2)

2 more in the full profile.

07

Biomarkers

Not established as routine therapeutic biomarkersPotential: Expression levels of EthR, EthR2, or EthA as markers for ethionamide susceptibility or resistance

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