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在正常条件下或热休克及乙醇胁迫下,甾醇糖苷和脑苷脂会在巴斯德毕赤酵母、大麦网斑病菌及其他真菌中积累。

Sterol glycosides and cerebrosides accumulate in Pichia pastoris, Rhynchosporium secalis and other fungi under normal conditions or under heat shock and ethanol stress.

作者信息

Sakaki T, Zähringer U, Warnecke D C, Fahl A, Knogge W, Heinz E

机构信息

Department of Bioscience and Technology, Hokkaido Tokai University, Sapporo 005-8601, Japan.

出版信息

Yeast. 2001 Jun;18(8):679-95. doi: 10.1002/yea.720.

Abstract

The occurrence of glycolipids such as sterol glycosides, acylated sterol glycosides, cerebrosides and glycosyldiacylglycerols was examined in the three yeast species Candida albicans, Pichia pastoris and Pichia anomala, as well as in the six fungal species Sordaria macrospora, Pyrenophora teres, Ustilago maydis, Acremonium chrysogenum, Penicillium olsonii and Rhynchosporium secalis. Cerebroside was found in all organisms tested, whereas acylated sterol glycosides and glycosyldiacylglycerols were not found in any organism. Sterol glycosides were detected in P. pastoris strain GS115, U. maydis, S. macrospora and R. secalis. This glycolipid occurred in both yeast and filamentous forms of U. maydis but in neither form of C. albicans. This suggests that sterol glycoside is not correlated with the separately grown dimorphic forms of these organisms. Cerebrosides and sterol glycosides from P. pastoris and R. secalis were purified and characterized by mass spectrometry and nuclear magnetic resonance spectroscopy. The cerebrosides are beta-glucosyl ceramides consisting of a saturated alpha-hydroxy or non-hydroxy fatty acid and a Delta4,8-diunsaturated, C9-methyl-branched sphingobase. Sterol glycoside from P. pastoris was identified as ergosterol-beta-D-glucopyranoside, whereas the sterol glucosides from R. secalis contain two derivatives of ergosterol. The biosynthesis of sterol glucoside in P. pastoris CBS7435 and GS115 depended on the culture conditions. The amount of sterol glucoside in cells grown in complete medium was much lower than in cells from minimal medium and a strong increase in the content of sterol glucoside was observed when cells were subjected to stress conditions such as heat shock or increased ethanol concentrations. From these data we suggest that, in addition to Saccharomyces cerevisiae, new yeast and fungal model organisms should be used to study the physiological functions of glycolipids in eukaryotic cells. This suggestion is based on the ubiquitous and frequent occurrence of cerebrosides and sterol glycosides, both of which are rarely detected in S. cerevisiae. We suggest P. pastoris and two plant pathogenic fungi to be selected for this approach.

摘要

在白色念珠菌、巴斯德毕赤酵母和异常毕赤酵母这三种酵母菌种,以及大孢粪壳菌、圆核腔菌、玉米黑粉菌、产黄青霉、奥尔森青霉和黑麦喙孢这六种真菌中,检测了甾醇糖苷、酰化甾醇糖苷、脑苷脂和糖基二酰甘油等糖脂的存在情况。在所测试的所有生物体中均发现了脑苷脂,而在任何生物体中均未发现酰化甾醇糖苷和糖基二酰甘油。在巴斯德毕赤酵母菌株GS115、玉米黑粉菌、大孢粪壳菌和黑麦喙孢中检测到了甾醇糖苷。这种糖脂在玉米黑粉菌的酵母形式和丝状形式中均有出现,但在白色念珠菌的两种形式中均未出现。这表明甾醇糖苷与这些生物体单独生长的双态形式无关。对巴斯德毕赤酵母和黑麦喙孢中的脑苷脂和甾醇糖苷进行了纯化,并通过质谱和核磁共振光谱进行了表征。脑苷脂是由饱和α-羟基或非羟基脂肪酸以及Δ4,8-二不饱和、C9-甲基支链鞘氨醇组成的β-葡萄糖基神经酰胺。巴斯德毕赤酵母中的甾醇糖苷被鉴定为麦角甾醇-β-D-葡萄糖苷,而黑麦喙孢中的甾醇葡萄糖苷含有两种麦角甾醇衍生物。巴斯德毕赤酵母CBS7435和GS115中甾醇葡萄糖苷的生物合成取决于培养条件。在完全培养基中生长的细胞中甾醇葡萄糖苷的含量远低于在基本培养基中生长的细胞,并且当细胞受到热休克或乙醇浓度增加等应激条件时,甾醇葡萄糖苷的含量会大幅增加。根据这些数据,我们建议,除了酿酒酵母之外,应使用新的酵母和真菌模式生物来研究糖脂在真核细胞中的生理功能。这一建议基于脑苷脂和甾醇糖苷的普遍且频繁出现,而这两种物质在酿酒酵母中很少被检测到。我们建议选择巴斯德毕赤酵母和两种植物病原真菌用于这种方法。

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