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不同定位的溶血磷脂酸酰基转移酶对产油藻类盐藻三酰基甘油生物合成至关重要。

Differently localized lysophosphatidic acid acyltransferases crucial for triacylglycerol biosynthesis in the oleaginous alga Nannochloropsis.

机构信息

School of Life Science and Technology, Tokyo Institute of Technology, 4259-B-65 Nagatsuta-cho, Midori-ku, Yokohama, 226-8501, Japan.

CREST, JST, Yokohama, Japan.

出版信息

Plant J. 2017 May;90(3):547-559. doi: 10.1111/tpj.13512. Epub 2017 Mar 28.

Abstract

The production of renewable bioenergy will be necessary to meet rising global fossil fuel demands. Members of the marine microalgae genus Nannochloropsis produce large quantities of oils (triacylglycerols; TAGs), and this genus is regarded as one of the most promising for biodiesel production. Recent genome sequencing and transcriptomic studies on Nannochloropsis have provided a foundation for understanding its oleaginous trait, but the mechanism underlying oil accumulation remains to be clarified. Here we report Nannochloropsis knock-out strains of four extraplastidic lysophosphatidic acid acyltransferases (LPAT1-LPAT4) that catalyze a major de novo biosynthetic step of TAGs and membrane lipids. We found that the four LPATs are differently involved in lipid metabolic flow in Nannochloropsis. Double knock-outs among the LPATs revealed the pivotal LPATs for TAG biosynthesis, and localization analysis indicated that the stramenopile-specific LPATs (LPAT3 and LPAT4) associated with TAG synthesis reside at the perimeter of lipid droplets. No homologous region has been found with other lipid droplet-associated proteins, however. Lipid droplets are an organelle found in nearly all organisms, and recently they were shown to play important roles in cellular metabolism and signaling. Our results provide direct evidence for the importance of the perimeter of lipid droplet in TAG synthesis in addition to its known role in maintaining TAG stability, and these findings suggest that the oleaginous trait of Nannochloropsis is enabled by the acquisition of LPATs at the perimeter of lipid droplets.

摘要

生产可再生生物能源对于满足全球不断增长的化石燃料需求是必要的。海洋微藻属拟球藻(Nannochloropsis)的成员能够大量生产油脂(三酰基甘油;TAGs),该属被认为是最有前途的生物柴油生产原料之一。最近对拟球藻的基因组测序和转录组研究为理解其油脂特性提供了基础,但油脂积累的机制仍有待阐明。在这里,我们报告了四个质体外源性溶血磷脂酸酰基转移酶(LPAT1-LPAT4)的拟球藻敲除株,这些酶催化TAG 和膜脂的主要从头生物合成步骤。我们发现,这四个 LPAT 在拟球藻的脂质代谢流中具有不同的作用。LPAT 之间的双敲除揭示了 TAG 生物合成的关键 LPAT,并定位分析表明与 TAG 合成相关的鞭毛藻类特异性 LPAT(LPAT3 和 LPAT4)位于脂滴的周边。然而,没有发现与其他脂滴相关蛋白具有同源区域。脂滴是几乎所有生物体中都存在的细胞器,最近的研究表明,它们在细胞代谢和信号转导中起着重要作用。我们的研究结果为脂滴周边在 TAG 合成中的重要性提供了直接证据,除了其已知的维持 TAG 稳定性的作用外,这些发现表明,拟球藻的油脂特性是通过在脂滴周边获得 LPAT 而实现的。

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