Studies on the Biosynthesis of the ergosterol side chain

Author:

Akhtar M1,Parvez M. A.1,Hunt P. F.1

Affiliation:

1. Department of Physiology and Biochemistry, University of Southampton, SO9 5NH

Abstract

1. A convenient synthesis of 24-methylene[23,25−3H3]dihydrolanosterol is described. 2. A general anaerobic–aerobic method for the incorporation of sterols into whole yeast cells is also described and illustrated by experiments with 3H-labelled lanosterol. 3. The method was used to convert labelled 24-methylene-dihydrolanosterol into ergosterol, in good yield, by Saccharomyces cerevisiae. 4. Degradation of the biosynthetic ergosterol provided confirmation of the conversion, which supports the proposed mechanism for the biosynthesis of the ergosterol side chain. 5. Mechanisms for the further conversion of the 24-methylene side chain into the ergosterol side chain are discussed and it was shown that a compound, [3α−3H1]-ergost-7-en-3β-ol, with a fully saturated side chain, can also be efficiently incorporated into ergosterol. 6. This result was confirmed by a procedure involving formation of the 5,8-epidioxide and subsequently the 5,8-epidioxy-22,23-epoxide of the biosynthetic ergosterol.

Publisher

Portland Press Ltd.

Cited by 19 articles. 订阅此论文施引文献 订阅此论文施引文献,注册后可以免费订阅5篇论文的施引文献,订阅后可以查看论文全部施引文献

1. P450 catalysed dehydrogenation;Pure and Applied Chemistry;2017-06-27

2. Metabolism of Sterols in Yeast;CRC Critical Reviews in Microbiology;1978-01

3. Some biological transformations involving unsaturated linkages: the importance of charge separation and charge neutralization in enzyme catalysis;Tetrahedron;1978-01

4. The Biosynthesis of Plant Sterols;Lipids and Lipid Polymers in Higher Plants;1977

5. The Biochemistry of Plant Sterols;Advances in Lipid Research;1977

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