4.6 Article

Purification, characterization and inhibition of sterol C24-methyltransferase from Candida albicans

Journal

ARCHIVES OF BIOCHEMISTRY AND BIOPHYSICS
Volume 505, Issue 2, Pages 194-201

Publisher

ELSEVIER SCIENCE INC
DOI: 10.1016/j.abb.2010.10.008

Keywords

Sterol C24-methyltransferase; Ergosterol biosynthesis; Antifungal agents; Suicide substrates; Membranes; Sterol inhibitors

Funding

  1. National Science Foundation [MCB-0417436, 0929212]
  2. Direct For Biological Sciences
  3. Div Of Molecular and Cellular Bioscience [0920212] Funding Source: National Science Foundation
  4. Division Of Human Resource Development
  5. Direct For Education and Human Resources [0929212] Funding Source: National Science Foundation

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Solubilized sterol C24-methyltransferase (24-SMT) was purified to homogeneity from a cell extract of the yeast Candida albicans (Ca) by anion exchange chromatography, gel permeation chromatography and fast performance liquid chromatography using a Mono Q column. The purified enzyme has an apparent molecular mass of 178 kDa on gel permeation chromatography and 43 kDa on SDS/PAGE, indicating that it is composed of four identical subunits. The substrate requirement of the native enzyme has an optimal specificity for zymosterol with associated kinetic constants of K-m 50 mu M and k(cat) of 0.01 s(-1). The product of the enzyme incubated with zymosterol was fecosterol. Inhibition of the catalyst was observed with substrate analogs designed as transition state analogs (25-azalanosterol, K-i = 54 nM and 24 (R,S),25-epiminolanosterol, K-i = 11 nM) or as mechanism-based inactivators (26,27-dehydrozymosterol, K-i 9 mu M) and k(inact) = 0.03 min(-1)) of the C24-methylation reaction. Product analogs ergosterol and fecosterol, but neither cholesterol nor sitosterol, inhibited activity affording K-i values of 20 and 72 mu M, respectively. Ammonium and thia analogs of the intermediates of the sterol C24-methyl reaction sequence were effective growth inhibitors exhibiting IC50 values that ranged from 3 to 20 mu M. (C) 2010 Elsevier Inc. All rights reserved.

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