Parks L W, Bottema C D, Rodriguez R J, Lewis T A
Methods Enzymol. 1985;111:333-46. doi: 10.1016/s0076-6879(85)11020-7.
Yeast mutants defective in ergosterol synthesis are valuable tools for investigating sterol metabolism. Both sterol mutants and sterol auxotrophs have been utilized in determining what sterol structural features are required for yeast cell viability. Both types of mutants can also be studied to ascertain how changes in sterol structure affect membrane properties. Other aspects of sterol metabolism, such as the specificity of sterol esterification, have been elucidated by the sterol auxotrophs. In broader applications, interrelationships between sterol metabolism and other cellular functions (e.g., heme metabolism) may also be examined with these mutants. By analyzing the lipid composition of the sterol mutants, on the other hand, much of the ergosterol biosynthetic pathway has been delineated. The unusual sterols of the mutants can also be obtained to develop assays for the enzymes involved in ergosterol synthesis. Thus, by utilizing mutants, the simple eukaryotic system of yeast may be extended to explore the entire field of sterol metabolism and its relationship to cellular physiology.
麦角固醇合成有缺陷的酵母突变体是研究固醇代谢的宝贵工具。固醇突变体和固醇营养缺陷型都已被用于确定酵母细胞活力所需的固醇结构特征。这两种类型的突变体也可以用来研究固醇结构的变化如何影响膜的性质。固醇营养缺陷型已经阐明了固醇代谢的其他方面,如固醇酯化的特异性。在更广泛的应用中,这些突变体也可以用于研究固醇代谢与其他细胞功能(如血红素代谢)之间的相互关系。另一方面,通过分析固醇突变体的脂质组成,已经描绘出了大部分麦角固醇生物合成途径。还可以获得突变体的异常固醇,以开发针对参与麦角固醇合成的酶的检测方法。因此,通过利用突变体,简单的真核酵母系统可以扩展到探索整个固醇代谢领域及其与细胞生理学的关系。