首页> 外文期刊>Biochimie >Dynamics of neutral lipid storage and mobilization in yeast
【24h】

Dynamics of neutral lipid storage and mobilization in yeast

机译:酵母中性脂质存储和动员的动力学

获取原文
获取原文并翻译 | 示例
       

摘要

We make use of the yeast Saccharomyces cerevisiae as a flexible experimental system to investigate coordinate pathways of neutral lipid synthesis, storage and mobilization with special emphasis on the role of different organelles in these processes. Recently, a number of new gene products involved in triacylglycerol (TAG) and steryl ester (STE) metabolism were identified in our laboratory and by other groups. STE are synthesized by the two STE synthases Are1p and Are2p, whereas TAG are formed mainly through the action of the two TAG synthases Dga1p and Lro1p with minor contributions of Are1p and Are2p. Once formed, TAG and STE are stored in so-called lipid particles. A dga1 Δlro1Δare1Δare2Δ quadruple mutant which lacks neutral lipid synthesis and is consequently devoid of lipid particles turned out to be a valuable tool for studying the physiological role of storage lipids and lipid particles. Mobilization of neutral lipid depots occurs through catalysis of TAG lipases and STE hydrolases. Three TAG lipases named Tg13p, Tg14p and Tg15p, and three STE hydrolases named Tg11p, Yeh1p and Yeh2p were recently identified at the molecular level. Although these hydrolases exhibit overlapping function within the enzyme families, they are specific for TAG and STE, respectively. With the exception of Dga1p, whose activity is partially localized to lipid particles, TAG and STE forming enzymes are restricted to the endoplasmic reticulum. TAG lipases and STE hydrolases are components of lipid particles with the exception of Yeh2p, which is plasma membrane located. Thus, neutral lipid metabolism is not only regulated at the enzyme level but also by the distribution of the components to organelles. The fact that neutral lipid homeostasis is linked to a number of cell biological processes confirms the important role of this class of lipids as cellular modulators or effectors.
机译:我们利用酵母酿酒酵母作为灵活的实验系统来研究中性脂质合成,存储和动员的协调途径,并特别强调不同细胞器在这些过程中的作用。最近,在我们的实验室和其他小组中发现了许多涉及三酰甘油(TAG)和甾醇酯(STE)代谢的新基因产物。 STE由两个STE合成酶Are1p和Are2p合成,而TAG主要是通过两个TAG合成酶Dga1p和Lro1p的作用形成的,而Are1p和Are2p的贡献较小。 TAG和STE一旦形成,就存储在所谓的脂质颗粒中。缺少中性脂质合成并且因此没有脂质颗粒的dga1Δlro1Δare1Δare2Δ四重突变体被证明是研究贮藏脂质和脂质颗粒的生理作用的有价值的工具。中性脂质贮库的动员通过TAG脂肪酶和STE水解酶的催化而发生。最近在分子水平上鉴定了三种名为Tg13p,Tg14p和Tg15p的TAG脂肪酶,以及三种名为Tg11p,Yeh1p和Yeh2p的STE水解酶。尽管这些水解酶在酶家族中显示出重叠的功能,但是它们分别对TAG和STE具有特异性。除了Dga1p(其活性部分定位于脂质颗粒)外,TAG和STE形成酶仅限于内质网。 TAG脂肪酶和STE水解酶是脂质颗粒的组成成分,但Yeh2p除外,后者位于质膜上。因此,中性脂质代谢不仅在酶水平上受调节,而且还受组分向细胞器的分布的调节。中性脂质稳态与许多细胞生物学过程有关的事实证实了这类脂质作为细胞调节剂或效应物的重要作用。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号