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3-hydroxyacyl-[acyl-carrier-protein] dehydratase FabZ (commonly abbreviated as FabZ) is an enzyme universally expressed in the bacterial type II fatty acid synthase (FASII) pathway[6][8]. It catalyzes the dehydration of (3R)-hydroxyacyl-ACP intermediates to form trans-2-acyl-ACPs, a key step in elongating fatty acids that are vital for cell membrane biosynthesis[1][3][6]. FabZ acts on both short- and long-chain saturated and unsaturated fatty acyl substrates, in contrast to its isoform FabA, which has more substrate selectivity and an additional isomerization function[3][4][5]. FabZ forms functional hexamers (or trimer of dimers), with a conserved His/Glu catalytic dyad deeply buried in the active site tunnel[6]. Loss of FabZ function impairs bacterial growth and virulence; for instance, in Toxoplasma gondii, FabZ deletion reduces pathogenicity[7]. Because human fatty acid synthesis uses a different, type I FAS system, FabZ and other FASII enzymes are considered attractive antibiotic targets, with experimental inhibitors under investigation[6][8]. No clinical drugs specifically target FabZ to date, but its essentiality in many pathogens underpins ongoing drug discovery efforts.
Inhibition of FabZ leads to disruption of bacterial fatty acid synthesis, compromising membrane formation and bacterial viability
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