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氮饥饿导致藻类集胞藻和莱茵衣藻中的 TOR 激酶介导的脂肪酸合成下调。

Nitrogen starvation leads to TOR kinase-mediated downregulation of fatty acid synthesis in the algae Chlorella sorokiniana and Chlamydomonas reinhardtii.

机构信息

School of Biological Sciences, University of Nebraska-Lincoln, Lincoln, NE, USA.

Department of Biochemistry, University of Nebraska-Lincoln, Lincoln, NE, USA.

出版信息

BMC Plant Biol. 2024 Aug 6;24(1):753. doi: 10.1186/s12870-024-05408-7.

Abstract

BACKGROUND

When subject to stress conditions such as nutrient limitation microalgae accumulate triacylglycerol (TAG). Fatty acid, a substrate for TAG synthesis is derived from de novo synthesis or by membrane remodeling. The model industrial alga Chlorellasorokiniana accumulates TAG and other storage compounds under nitrogen (N)-limited growth. Molecular mechanisms underlying these processes are still to be elucidated.

RESULT

Previously we used transcriptomics to explore the regulation of TAG synthesis in C. sorokiniana. Surprisingly, our analysis showed that the expression of several key genes encoding enzymes involved in plastidic fatty acid synthesis are significantly repressed. Metabolic labeling with radiolabeled acetate showed that de novo fatty acid synthesis is indeed downregulated under N-limitation. Likewise, inhibition of the Target of Rapamycin kinase (TOR), a key regulator of metabolism and growth, decreased fatty acid synthesis. We compared the changes in proteins and phosphoprotein abundance using a proteomics and phosphoproteomics approach in C. sorokiniana cells under N-limitation or TOR inhibition and found extensive overlap between the N-limited and TOR-inhibited conditions. We also identified changes in the phosphorylation status of TOR complex proteins, TOR-kinase, and RAPTOR, under N-limitation. This indicates that TOR signaling is altered in a nitrogen-dependent manner. We find that TOR-mediated metabolic remodeling of fatty acid synthesis under N-limitation is conserved in the chlorophyte algae Chlorella sorokiniana and Chlamydomonas reinhardtii.

CONCLUSION

Our results indicate that under N-limitation there is significant metabolic remodeling, including fatty acid synthesis, mediated by TOR signaling. This process is conserved across chlorophyte algae. Using proteomic and phosphoproteomic analysis, we show that N-limitation affects TOR signaling and this in-turn affects the metabolic status of the cells. This study presents a link between N-limitation, TOR signaling and fatty acid synthesis in green-lineage.

摘要

背景

当受到应激条件(如营养限制)时,微藻会积累三酰基甘油(TAG)。脂肪酸是 TAG 合成的底物,来源于从头合成或膜重塑。模式工业藻类集胞藻(Chlorellasorokiniana)在氮(N)限制生长下积累 TAG 和其他储存化合物。这些过程的分子机制仍有待阐明。

结果

我们之前使用转录组学来探索 C. sorokiniana 中 TAG 合成的调控。令人惊讶的是,我们的分析表明,参与质体脂肪酸合成的几个关键基因的表达显著受到抑制。用放射性标记的醋酸盐进行代谢标记表明,在 N 限制下,从头脂肪酸合成确实受到下调。同样,抑制雷帕霉素靶蛋白激酶(TOR),一种代谢和生长的关键调节剂,也会降低脂肪酸合成。我们在 C. sorokiniana 细胞中比较了 N 限制或 TOR 抑制下的蛋白质和磷酸蛋白丰度的变化,发现 N 限制和 TOR 抑制条件之间有广泛的重叠。我们还发现 N 限制下 TOR 复合物蛋白、TOR 激酶和 RAPTOR 的磷酸化状态发生了变化。这表明 TOR 信号在氮依赖性方式下发生改变。我们发现,在 N 限制下,TOR 介导的脂肪酸合成的代谢重塑在绿藻集胞藻和莱茵衣藻中是保守的。

结论

我们的结果表明,在 N 限制下,存在由 TOR 信号介导的显著代谢重塑,包括脂肪酸合成。这个过程在绿藻中是保守的。通过蛋白质组学和磷酸蛋白质组学分析,我们表明 N 限制会影响 TOR 信号,进而影响细胞的代谢状态。这项研究在绿藻中建立了 N 限制、TOR 信号和脂肪酸合成之间的联系。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/449b/11302099/b303745578aa/12870_2024_5408_Fig1_HTML.jpg

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