Target intelligence / Profile preview

Sterol 24-C-methyltransferase (Erg6p) (Erg6p)

Target
Erg6p
Molecular classification
Enzyme, Methyltransferase, Transferase
01

Overview

Erg6p, also known as Sterol 24-C-methyltransferase, is a fungal-specific enzyme essential for the biosynthesis of ergosterol, the primary sterol in fungal cell membranes [1, 3]. It catalyzes the transfer of a methyl group from S-adenosyl-L-methionine (SAM) to the C-24 position of sterol precursors such as zymosterol or lanosterol, a biochemical step that is absent in the human cholesterol biosynthetic pathway [10, 11]. This specificity makes Erg6p an attractive therapeutic target for novel antifungal development, as its inhibition disrupts membrane integrity and reduces fungal virulence [1, 7]. In filamentous fungi like Aspergillus fumigatus, the enzyme is essential for viability, while in Candida species, its inhibition or deletion significantly impairs hyphal formation and biofilm development [7, 10]. Although no FDA-approved drugs currently target Erg6p as their primary mechanism, experimental inhibitors like the allosteric compound H55 and various azasterols have shown efficacy in preclinical models [1, 11]. Notably, mutations in the ERG6 gene are associated with clinical resistance to polyene antifungals like amphotericin B, as the resulting loss of ergosterol removes the drug's primary binding target [2, 15].

Other names
Sterol C-24 methyltransferaseDelta(24)-sterol C-methyltransferaseS-adenosylmethionine:delta24-sterol C-methyltransferaseErgosterol biosynthetic protein 6SAM:SMTSCMT
02

Mechanism of action

Inhibition of the sterol 24-C-methyltransferase enzyme activity, which prevents the C-24 methylation of sterol precursors (e.g., zymosterol or lanosterol), thereby disrupting the ergosterol biosynthetic pathway and destabilizing the fungal cell membrane.

03

Biological functions

Sterol biosynthesisLipid metabolismC-24 methylation of sterolsPlasma membrane organizationCell wall integrityFungal virulenceStress response
04

Disease associations

InfectionAspergillosisCandidiasis
05

Safety considerations

Antifungal drug resistance developmentCross-resistance to polyene antifungals (e.g., Amphotericin B)Reduced susceptibility to azoles in specific fungal speciesPotential for therapeutic failure in immunocompromised patients due to fungistatic nature in some yeasts
06

Interacting drugs

H55

5 more in the full profile.

07

Biomarkers

Zymosterol accumulationLanosterol accumulation7-Dehydrodesmosterol levelsErgosterol depletion

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