Literature DB >> 25576482

Dynamics of the lipid droplet proteome of the Oleaginous yeast rhodosporidium toruloides.

Zhiwei Zhu1, Yunfeng Ding2, Zhiwei Gong1, Li Yang2, Sufang Zhang3, Congyan Zhang2, Xinping Lin1, Hongwei Shen3, Hanfa Zou1, Zhensheng Xie2, Fuquan Yang2, Xudong Zhao2, Pingsheng Liu4, Zongbao K Zhao5.   

Abstract

Lipid droplets (LDs) are ubiquitous organelles that serve as a neutral lipid reservoir and a hub for lipid metabolism. Manipulating LD formation, evolution, and mobilization in oleaginous species may lead to the production of fatty acid-derived biofuels and chemicals. However, key factors regulating LD dynamics remain poorly characterized. Here we purified the LDs and identified LD-associated proteins from cells of the lipid-producing yeast Rhodosporidium toruloides cultured under nutrient-rich, nitrogen-limited, and phosphorus-limited conditions. The LD proteome consisted of 226 proteins, many of which are involved in lipid metabolism and LD formation and evolution. Further analysis of our previous comparative transcriptome and proteome data sets indicated that the transcription level of 85 genes and protein abundance of 77 proteins changed under nutrient-limited conditions. Such changes were highly relevant to lipid accumulation and partially confirmed by reverse transcription-quantitative PCR. We demonstrated that the major LD structure protein Ldp1 is an LD marker protein being upregulated in lipid-rich cells. When overexpressed in Saccharomyces cerevisiae, Ldp1 localized on the LD surface and facilitated giant LD formation, suggesting that Ldp1 plays an important role in controlling LD dynamics. Our results significantly advance the understanding of the molecular basis of lipid overproduction and storage in oleaginous yeasts and will be valuable for the development of superior lipid producers.
Copyright © 2015, American Society for Microbiology. All Rights Reserved.

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Year:  2015        PMID: 25576482      PMCID: PMC4346559          DOI: 10.1128/EC.00141-14

Source DB:  PubMed          Journal:  Eukaryot Cell        ISSN: 1535-9786


  66 in total

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