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植物甘油脂质代谢的细胞组织和调控。

Cellular Organization and Regulation of Plant Glycerolipid Metabolism.

机构信息

MSU-DOE Plant Research Laboratory, Michigan State University, East Lansing, MI, USA.

Department of Biochemistry and Molecular Biology, Michigan State University, East Lansing, MI, USA.

出版信息

Plant Cell Physiol. 2019 Jun 1;60(6):1176-1183. doi: 10.1093/pcp/pcz016.

Abstract

Great strides have been made in understanding how membranes and lipid droplets are formed and maintained in land plants, yet much more is to be learned given the complexity of plant lipid metabolism. A complicating factor is the multi-organellar presence of biosynthetic enzymes and unique compositional requirements of different membrane systems. This necessitates a rich network of transporters and transport mechanisms that supply fatty acids, membrane lipids and storage lipids to their final cellular destination. Though we know a large number of the biosynthetic enzymes involved in lipid biosynthesis and a few transport proteins, the regulatory mechanisms, in particular, coordinating expression and/or activity of the majority remain yet to be described. Plants undergoing stress alter their membranes' compositions, and lipids such as phosphatidic acid have been implicated in stress signaling. Additionally, lipid metabolism in chloroplasts supplies precursors for jasmonic acid (JA) biosynthesis, and perturbations in lipid homeostasis has consequences on JA signaling. In this review, several aspects of plant lipid metabolism are discussed that are currently under investigation: cellular transport of lipids, regulation of lipid biosynthesis, roles of lipids in stress signaling, and lastly the structural and oligomeric states of lipid enzymes.

摘要

在理解陆地植物中膜和脂滴的形成和维持方面已经取得了重大进展,但考虑到植物脂质代谢的复杂性,还有更多的知识需要学习。一个复杂的因素是生物合成酶的多细胞器存在和不同膜系统的独特组成要求。这需要一个丰富的转运蛋白和运输机制网络,为它们的最终细胞目的地提供脂肪酸、膜脂质和储存脂质。尽管我们知道涉及脂质生物合成的大量生物合成酶和少数几种运输蛋白,但调节机制,特别是协调大多数的表达和/或活性,仍有待描述。处于胁迫下的植物会改变其膜的组成,而像磷脂酸这样的脂质已被牵涉到胁迫信号中。此外,叶绿体中的脂质代谢为茉莉酸 (JA) 生物合成提供前体,脂质稳态的干扰会对 JA 信号产生影响。在这篇综述中,讨论了植物脂质代谢的几个方面,这些方面正在研究中:脂质的细胞运输、脂质生物合成的调节、脂质在胁迫信号中的作用,以及最后是脂质酶的结构和寡聚态。

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