Target intelligence / Profile preview

Malate dehydrogenase (Escherichia coli) (MDH)

Target
MDH
Molecular classification
Enzyme, Oxidoreductase
01

Overview

Malate dehydrogenase (MDH) from Escherichia coli is a fundamental metabolic enzyme that catalyzes the reversible conversion of L-malate to oxaloacetate, utilizing NAD+ as a cofactor [1]. It is an essential component of the tricarboxylic acid (TCA) cycle and plays a vital role in gluconeogenesis and the maintenance of the cellular redox state by regulating the NAD+/NADH ratio [2]. Because it is central to bacterial energy production and carbon metabolism, E. coli MDH is a target of interest for the development of novel antibacterial agents, particularly to combat multi-drug resistant infections [3]. Although it shares structural similarities with eukaryotic MDHs, specific differences in its active site architecture and allosteric regulation allow for the possibility of developing selective inhibitors [4]. Most current research focuses on experimental small molecules designed to disrupt bacterial metabolic pathways without affecting the host's mitochondrial or cytosolic MDH functions [5].

Other names
L-malate dehydrogenaseNAD-dependent malate dehydrogenaseMdhMalic dehydrogenase
02

Mechanism of action

Inhibition of the enzyme's catalytic activity by competing with the NAD+ cofactor or the L-malate substrate for binding at the active site, thereby disrupting the tricarboxylic acid (TCA) cycle.

03

Biological functions

Citric acid cycleGluconeogenesisOxidation-reduction processCarbohydrate metabolismMalate-aspartate shuttle
04

Disease associations

Bacterial infection
05

Safety considerations

Potential cross-reactivity with human malate dehydrogenase isoforms (MDH1 and MDH2)Risk of mitochondrial toxicity due to structural homology with human MDH2Interference with host cellular redox balance and energy production
06

Interacting drugs

Experimental small molecule inhibitors

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