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首页> 外文期刊>Genomics, proteomics & bioinformatics >Proteomics Analysis of Lipid Droplets from the Oleaginous Alga Chromochloris zofingiensis Reveals Novel Proteins for Lipid Metabolism
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Proteomics Analysis of Lipid Droplets from the Oleaginous Alga Chromochloris zofingiensis Reveals Novel Proteins for Lipid Metabolism

机译:来自植物藻类藻类血液滴的脂滴蛋白质组学分析Zofingiensis揭示了脂质代谢的新蛋白质

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摘要

Chromochloris zofingiensis represents an industrially relevant and unique green alga, given its capability of synthesizing triacylglycerol (TAG) and astaxanthin simultaneously for storage in lipid droplets (LDs). To further decipher lipid metabolism, the nitrogen deprivation (ND)-induced LDs from C. zofingiensis were isolated, purified, and subjected to proteomic analysis. Intriguingly, many C. zofingiensis LD proteins had no orthologs present in LD proteome of the model alga Chlamydomonas reinhardtii . Seven novel LD proteins ( i.e. , two functionally unknown proteins, two caleosins , two lipases , and one l -gulonolactone oxidase) and the major LD protein (MLDP), which were all transcriptionally up-regulated by ND, were selected for further investigation. Heterologous expression in yeast demonstrated that all tested LD proteins were localized to LDs and all except the two functionally unknown proteins enabled yeast to produce more TAG. MLDP could restore the phenotype of mldp mutant strain and enhance TAG synthesis in wild-type strain of C. reinhardtii . Although MLDP and caleosins had a comparable abundance in LDs, they responded distinctly to ND at the transcriptional level. The two lipases, instead of functioning as TAG lipases, likely recycled polar lipids to support TAG synthesis. For the first time, we reported that l -gulonolactone oxidase was abundant in LDs and facilitated TAG accumulation. Moreover, we also proposed a novel working model for C. zofingiensis LDs. Taken together, our work unravels the unique characteristics of C. zofingiensis LDs and provides insights into algal LD biogenesis and TAG synthesis, which would facilitate genetic engineering of this alga for TAG improvement.
机译:Chromochloris Zofingiensis代表了一种工业相关和独特的绿藻,鉴于其合成三酰基甘油(标签)和虾青蛋白同时用于脂质液滴(LDS)的能力。为了进一步破译脂质代谢,分离出C. Zofingiensis的氮剥夺(Nd)诱导的LDS,纯化,并进行蛋白质组学分析。有趣的是,许多C. Zofingiensis LD蛋白没有在模型藻类衣原体Reinhardtii的LD蛋白质组中存在直肠。选择七种新型LD蛋白(即两个功能未知的蛋白质,两个亚硼丝,两种脂肪酶和一个L-甘油酮氧化酶)和主要由Nd转录上调的主要LD蛋白(MLDP)进行进一步调查。酵母中的异源表达证明,所有测试的LD蛋白都局部化为LD,除了两个功能未知的蛋白质,使酵母产生更多标签。 MLDP可以恢复MLDP突变体菌株的表型,并在野生型C. Reinhardtii中增强标签合成。尽管MLDP和亚硒酸钠在LDS中具有相当的丰度,但它们在转录水平下明显响应ND。两种脂肪酶,代替用作标签脂肪酶,可能再循环极性脂质以支撑标签合成。我们首次报道,LDS中L-Gulonolodone氧化酶丰富,促进标签积累。此外,我们还提出了一种用于C. Zofingiensis LD的新型工作模型。我们的工作结合在一起,无论是C. Zofingiensis LDS的独特特征,并为藻类LD生物发生和标签合成提供了见解,这将促进该藻类的遗传工程以进行标签改善。

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