Unique Regulation of Adipose Triglyceride Lipase (ATGL) by Perilipin 5, a Lipid Droplet-associated Protein
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MLA
Wang, Hong, et al. Unique Regulation of Adipose Triglyceride Lipase (atgl) by Perilipin 5, a Lipid Droplet-associated Protein. 2011. https://doi.org/10.17615/1exs-ww28APA
Wang, H., Bell, M., Sreenevasan, U., Hu, H., Liu, J., Dalen, K., Londos, C., Yamaguchi, T., Rizzo, M., Coleman, R., Gong, D., Brasaemle, D., & Sztalryd, C. (2011). Unique Regulation of Adipose Triglyceride Lipase (ATGL) by Perilipin 5, a Lipid Droplet-associated Protein. https://doi.org/10.17615/1exs-ww28Chicago
Wang, Hong, Ming Bell, Urmilla Sreenevasan, Hong Hu, Jun Liu, Knut Dalen, Constantine Londos et al. 2011. Unique Regulation of Adipose Triglyceride Lipase (atgl) by Perilipin 5, a Lipid Droplet-Associated Protein. https://doi.org/10.17615/1exs-ww28- Creator
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Wang, Hong
- Other Affiliation: University of Maryland, Baltimore
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Bell, Ming
- Other Affiliation: University of Maryland, Baltimore
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Sreenevasan, Urmilla
- Other Affiliation: University of Maryland, Baltimore
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Hu, Hong
- Other Affiliation: University of Maryland, Baltimore
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Liu, Jun
- Other Affiliation: University of Kentucky
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Dalen, Knut
- Other Affiliation: National Institute of Diabetes and Digestive and Kidney Diseases (NIDDK)
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Londos, Constantine
- Other Affiliation: National Institute of Diabetes and Digestive and Kidney Diseases (NIDDK)
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Yamaguchi, Tomohiro
- Other Affiliation: University of Hyogo
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Rizzo, Mark A.
- Other Affiliation: University of Maryland, Baltimore
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Coleman, Rosalind
- University of North Carolina at Chapel Hill
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Gong, Dawei
- Other Affiliation: University of Maryland, Baltimore
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Brasaemle, Dawn
- Other Affiliation: Rutgers University–New Brunswick
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Sztalryd, Carole
- Other Affiliation: University of Maryland, Baltimore
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Wang, Hong
- Abstract
- Lipolysis is a critical metabolic pathway contributing to energy homeostasis through degradation of triacylglycerides stored in lipid droplets (LDs), releasing fatty acids. Neutral lipid lipases act at the oil/water interface. In mammalian cells, LD surfaces are coated with one or more members of the perilipin protein family, which serve important functions in regulating lipolysis. We investigated mechanisms by which three perilipin proteins control lipolysis by adipocyte triglyceride lipase (ATGL), a key lipase in adipocytes and non-adipose cells. Using a cell culture model, we examined interactions of ATGL and its co-lipase CGI-58 with perilipin 1 (perilipin A), perilipin 2 (adipose differentiation-related protein), and perilipin 5 (LSDP5) using multiple techniques as follows: anisotropy Forster resonance energy transfer, co-immunoprecipitation, [32P]orthophosphate radiolabeling, and measurement of lipolysis. The results show that ATGL interacts with CGI-58 and perilipin 5; the latter is selectively expressed in oxidative tissues. Both proteins independently recruited ATGL to the LD surface, but with opposite effects; interaction of ATGL with CGI-58 increased lipolysis, whereas interaction of ATGL with perilipin 5 decreased lipolysis. In contrast, neither perilipin 1 nor 2 interacted directly with ATGL. Activation of protein kinase A (PKA) increased [32P]orthophosphate incorporation into perilipin 5 by 2-fold, whereas neither ATGL nor CGI-58 was labeled under the incubation conditions. Cells expressing both ectopic perilipin 5 and ATGL showed a 3-fold increase in lipolysis following activation of PKA. Our studies establish perilipin 5 as a novel ATGL partner and provide evidence that the protein composition of perilipins at the LD surface regulates lipolytic activity of ATGL.
- Date of publication
- 2011
- Keyword
- DOI
- Identifier
- Publisher DOI: https://doi.org/10.1074/jbc.M110.207779
- Onescience id: 0b6057588901a09a19daf5fab09f77f00a728b44
- PMID: 21393244
- PMCID: PMC3091179
- Resource type
- Article
- Rights statement
- In Copyright
- Journal title
- The Journal of Biological Chemistry
- Journal volume
- 286
- Journal issue
- 18
- Language
- English
- ISSN
- 1083-351X
- 0021-9258
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