Target intelligence / Profile preview

Hydroxymethylpyrimidine-binding protein (ThiY) (ThiY)

Target
ThiY
Molecular classification
Periplasmic binding protein, ABC transporter component, Solute-binding protein
01

Overview

Hydroxymethylpyrimidine-binding protein (ThiY) is a specialized periplasmic binding protein primarily found in bacteria and some archaea [1, 7]. It serves as the substrate-recognition component of the ThiXYZ ATP-binding cassette (ABC) transporter system, which facilitates the uptake of hydroxymethylpyrimidine (HMP) and its precursors, such as N-formyl-4-amino-5-aminomethyl-2-methylpyrimidine (FAMP) [7, 9]. These molecules are critical intermediates in the salvage and biosynthesis of thiamine (Vitamin B1), an essential cofactor for enzymes involved in carbohydrate and amino acid metabolism [1, 6]. Since humans do not possess the machinery to synthesize or salvage thiamine precursors in this manner, ThiY is considered a promising target for the development of narrow-spectrum or novel antimicrobial drugs [1, 3]. Targeting ThiY aims to disrupt the pathogen's thiamine supply, leading to metabolic arrest and cell death, particularly in environments where de novo thiamine synthesis is restricted [1, 11]. Research into ThiY inhibitors focuses on HMP analogs, such as CF3-HMP, that can competitively bind the protein or block the transport channel [1, 3]. The protein's structure, characterized by a typical periplasmic binding protein fold, provides a clear template for structure-based drug design [7, 9]. Overall, ThiY represents a strategic vulnerability in bacterial metabolism that can be exploited for therapeutic intervention against infectious diseases [1, 12].

Other names
ThiYYkoFFAMP-binding proteinHydroxymethylpyrimidine-binding periplasmic proteinThiamine/HMP-binding protein
02

Mechanism of action

Inhibition of the thiamine salvage pathway by blocking the transport of hydroxymethylpyrimidine (HMP) precursors, leading to thiamine deficiency and metabolic arrest in bacteria.

03

Biological functions

Thiamine salvageHydroxymethylpyrimidine transportVitamin B1 metabolism
04

Disease associations

Bacterial infection
05

Safety considerations

Potential disruption of beneficial gut microbiotaTherapeutic challenge of achieving high affinity and specificity in vivo
06

Interacting drugs

4-amino-2-trifluoromethyl-5-hydroxymethylpyrimidine (CF3-HMP)
07

Biomarkers

Intracellular thiamine levelsBacterial growth rateExpression levels of thiamine-regulated genes (riboswitches)

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