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Fatty Acid Desaturase Mutants of Yeast: Growth Requirements and Electron Spin Resonance Spin-Label Distribution

机译:酵母脂肪酸脱氢酶突变体:生长要求和电子自旋共振自旋标签分布。

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摘要

Two respiratory-sufficient and one respiratory-deficient (nuclear petite) strains of yeast Δ9-desaturase mutants were analyzed to determine which fatty acids would serve as replacements for the naturally occurring fatty acids, 16:1 Δ9cis and 18:1 Δ9cis. The requirement can be satisfied by several fatty acids differing in double-bond position, steric configuration, chain length, and degree of unsaturation. The features common to growth-supporting fatty acids are presented and the effects of varying the carbon source and temperature are considered. In addition, we illustrate several pitfalls encountered in membrane studies which exploit lipid-requiring organisms. Since the membrane fatty acid composition of these mutants can be modified readily, electron spin resonance spectroscopy is used to compare membranes of mutant strains enriched for different fatty acids. The lipid distribution pattern of the most commonly employed electron spin resonance spin-label, 12-nitroxide stearate, was ascertained and compared to that of 18:1 Δ9cis.
机译:分析了酵母的两个呼吸充足和呼吸不足(核娇小)菌株Δ 9 -desaturase突变体,以确定哪些脂肪酸可以替代天然存在的脂肪酸16:1Δ 9 顺式和18:1Δ 9 顺式。可以通过在双键位置,空间构型,链长和不饱和度方面不同的几种脂肪酸来满足该要求。介绍了支持生长的脂肪酸共有的特征,并考虑了碳源和温度变化的影响。另外,我们说明了利用脂质需要生物的膜研究中遇到的一些陷阱。由于这些突变体的膜脂肪酸组成很容易被修饰,因此电子自旋共振光谱法可用于比较富含不同脂肪酸的突变体菌株的膜。确定了最常用的电子自旋共振自旋标记物硬脂酸酯12-硝基氧的脂质分布图,并将其与18:1Δ 9 顺式进行比较。

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