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Regulation of TG accumulation and lipid droplet morphology by the novel TLDP1 in Aurantiochytrium limacinum F26-b.


ABSTRACT: Thraustochytrids are marine single-cell protists that produce large amounts of PUFAs, such as DHA. They accumulate PUFAs in lipid droplets (LDs), mainly as constituent(s) of triacylglycerol (TG). We identified a novel protein in the LD fraction of Aurantiochytrium limacinum F26-b using 2D-difference gel electrophoresis. The protein clustered with orthologs of thraustochytrids; however, the cluster was evolutionally different from known PAT family proteins or plant LD protein; thus, we named it thraustochytrid-specific LD protein 1 (TLDP1). TLDP1 surrounded LDs when expressed as a GFP-tagged form. Disruption of the tldp1 gene decreased the content of TG and number of LDs per cell; however, irregular and unusually large LDs were generated in tldp1-deficient mutants. Although the level of TG synthesis was unchanged by the disruption of tldp1, the level of TG degradation was higher in tldp1-deficient mutants than in the WT. These phenotypic abnormalities in tldp1-deficient mutants were restored by the expression of tldp1 These results indicate that TLDP1 is a thraustochytrid-specific LD protein and regulates the TG accumulation and LD morphology in A. limacinum F26-b.

SUBMITTER: Watanabe T 

PROVIDER: S-EPMC5711496 | biostudies-literature | 2017 Dec

REPOSITORIES: biostudies-literature

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Regulation of TG accumulation and lipid droplet morphology by the novel TLDP1 in <i>Aurantiochytrium limacinum</i> F26-b.

Watanabe Takashi T   Sakiyama Ryo R   Iimi Yuya Y   Sekine Satomi S   Abe Eriko E   Nomura Kazuko H KH   Nomura Kazuya K   Ishibashi Yohei Y   Okino Nozomu N   Hayashi Masahiro M   Ito Makoto M  

Journal of lipid research 20171012 12


Thraustochytrids are marine single-cell protists that produce large amounts of PUFAs, such as DHA. They accumulate PUFAs in lipid droplets (LDs), mainly as constituent(s) of triacylglycerol (TG). We identified a novel protein in the LD fraction of <i>Aurantiochytrium limacinum</i> F26-b using 2D-difference gel electrophoresis. The protein clustered with orthologs of thraustochytrids; however, the cluster was evolutionally different from known PAT family proteins or plant LD protein; thus, we nam  ...[more]

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