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酵母中固醇变化的生化和生理效应——综述

Biochemical and physiological effects of sterol alterations in yeast--a review.

作者信息

Parks L W, Smith S J, Crowley J H

机构信息

Department of Microbiology, North Carolina State University, Raleigh 27695-7915, USA.

出版信息

Lipids. 1995 Mar;30(3):227-30. doi: 10.1007/BF02537825.

Abstract

Considerable progress has been made in the selection and characterization of mutants that are defective in the synthesis of ergosterol in the yeast, Saccharomyces cerevisiae. Mutations in nearly every step of the yeast sterol biosynthetic pathway have been induced and selected. These mutants have been used to elucidate the sequential order of steps in sterol synthesis, to study the mode of action of antifungal agents and to determine the method of resistance of some pathogenic fungi, and to answer questions on the role of sterols in general cell biology. Physiological examination of ergosterol null mutants, lacking all biochemical activity attributed to the particular gene, supports a role for ergosterol in a number of critical functions in the organism. Among the physiological functions attributed to ergosterol are sparking and bulking requirements, involvement in amino acid and pyrimidine transport, resistance to antifungal agents and certain cations, and a requirement for respiratory activity. Those genetic null alleles discussed in this review are erg24, lacking the ability to reduce the delta 14 double bond; erg6, unable to methylate C-24; and erg3, defective in the C-5 desaturase. The different biochemical activities that are disrupted in the ergosterol mutants support a role for ergosterol in a number of critical functions in yeast.

摘要

在酿酒酵母中,对麦角固醇合成缺陷型突变体的筛选和特性鉴定方面已经取得了相当大的进展。酵母固醇生物合成途径几乎每个步骤中的突变都已被诱导和筛选出来。这些突变体已被用于阐明固醇合成步骤的顺序,研究抗真菌剂的作用方式,确定一些致病真菌的耐药方法,并回答关于固醇在一般细胞生物学中的作用的问题。对缺乏归因于特定基因的所有生化活性的麦角固醇缺失突变体的生理学检查,支持了麦角固醇在该生物体的许多关键功能中发挥作用。归因于麦角固醇的生理功能包括引发和体积需求、参与氨基酸和嘧啶转运、对抗真菌剂和某些阳离子的抗性以及对呼吸活性的需求。本综述中讨论的那些基因无效等位基因是erg24,缺乏还原δ14双键的能力;erg6,无法甲基化C-24;以及erg3,C-5去饱和酶有缺陷。麦角固醇突变体中被破坏的不同生化活性支持了麦角固醇在酵母的许多关键功能中发挥作用。

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