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脂质颗粒生物发生对酿酒酵母中角鲨烯亚细胞分布的影响。

Effect of lipid particle biogenesis on the subcellular distribution of squalene in the yeast Saccharomyces cerevisiae.

机构信息

Institute of Biochemistry, Graz University of Technology, Petersgasse 12/II, A-8010 Graz, Austria.

出版信息

J Biol Chem. 2010 Feb 26;285(9):6127-33. doi: 10.1074/jbc.M109.074229. Epub 2009 Dec 23.

Abstract

Squalene belongs to the group of isoprenoids and is a precursor for the synthesis of sterols, steroids, and ubiquinones. In the yeast Saccharomyces cerevisiae, the amount of squalene can be increased by variation of growth conditions or by genetic manipulation. In this report, we show that a hem1Delta mutant accumulated a large amount of squalene, which was stored almost exclusively in cytoplasmic lipid particles/droplets. Interestingly, a strain bearing a hem1Delta deletion in a dga1Delta lro1Delta are1Delta are2Delta quadruple mutant background (QMhem1Delta), which is devoid of the classical storage lipids, triacylglycerols and steryl esters, and lacks lipid particles, accumulated squalene at similar amounts as the hem1Delta mutant in a wild type background. In QMhem1Delta, however, increased amounts of squalene were found in cellular membranes, especially in microsomes. The fact that QMhem1Delta did not form lipid particles indicated that accumulation of squalene solely was not sufficient to initiate proliferation of lipid particles. Most importantly, these results also demonstrated that (i) squalene was not lipotoxic under the conditions tested, and (ii) organelle membranes in yeast can accommodate relatively large quantities of this non-polar lipid without compromising cellular functions. In summary, localization of squalene as described here can be regarded as an unconventional example of non-polar lipid storage in cellular membranes.

摘要

角鲨烯属于异戊二烯类,是甾醇、类固醇和泛醌合成的前体。在酵母酿酒酵母中,通过改变生长条件或遗传操作可以增加角鲨烯的含量。在本报告中,我们表明,hem1Δ 突变体积累了大量的角鲨烯,这些角鲨烯几乎仅储存在细胞质脂滴/液滴中。有趣的是,在 dga1Δ lro1Δ are1Δ are2Δ 四重缺失突变体背景下携带 hem1Δ 缺失的菌株(QMhem1Δ),缺乏经典的储存脂质三酰基甘油和甾醇酯,并且没有脂滴,在野生型背景下积累的角鲨烯与 hem1Δ 突变体相似。然而,在 QMhem1Δ 中,发现角鲨烯在细胞膜中,特别是在微粒体中大量积累。QMhem1Δ 不形成脂滴这一事实表明,仅积累角鲨烯不足以引发脂滴的增殖。最重要的是,这些结果还表明:(i)在测试的条件下角鲨烯没有脂毒性,(ii)酵母中的细胞器膜可以容纳相对大量的这种非极性脂质,而不会损害细胞功能。总之,本文对角鲨烯的定位可以被视为细胞内膜中非极性脂质储存的一种非传统例子。

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