Literature DB >> 17130488

OXPAT/PAT-1 is a PPAR-induced lipid droplet protein that promotes fatty acid utilization.

Nathan E Wolins1, Benjamin K Quaynor, James R Skinner, Anatoly Tzekov, Michelle A Croce, Matthew C Gropler, Vijayalakshmi Varma, Aiwei Yao-Borengasser, Neda Rasouli, Philip A Kern, Brian N Finck, Perry E Bickel.   

Abstract

Lipid droplet proteins of the PAT (perilipin, adipophilin, and TIP47) family regulate cellular neutral lipid stores. We have studied a new member of this family, PAT-1, and found that it is expressed in highly oxidative tissues. We refer to this protein as "OXPAT." Physiologic lipid loading of mouse liver by fasting enriches OXPAT in the lipid droplet tissue fraction. OXPAT resides on lipid droplets with the PAT protein adipophilin in primary cardiomyocytes. Ectopic expression of OXPAT promotes fatty acid-induced triacylglycerol accumulation, long-chain fatty acid oxidation, and mRNAs associated with oxidative metabolism. Consistent with these observations, OXPAT is induced in mouse adipose tissue, striated muscle, and liver by physiological (fasting), pathophysiological (insulin deficiency), pharmacological (peroxisome proliferator-activated receptor [PPAR] agonists), and genetic (muscle-specific PPARalpha overexpression) perturbations that increase fatty acid utilization. In humans with impaired glucose tolerance, PPARgamma agonist treatment induces adipose OXPAT mRNA. Further, adipose OXPAT mRNA negatively correlates with BMI in nondiabetic humans. Our collective data in cells, mice, and humans suggest that OXPAT is a marker for PPAR activation and fatty acid oxidation. OXPAT likely contributes to adaptive responses to the fatty acid burden that accompanies fasting, insulin deficiency, and overnutrition, responses that are defective in obesity and type 2 diabetes.

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Year:  2006        PMID: 17130488     DOI: 10.2337/db06-0399

Source DB:  PubMed          Journal:  Diabetes        ISSN: 0012-1797            Impact factor:   9.461


  148 in total

Review 1.  The role of lipid droplets in metabolic disease in rodents and humans.

Authors:  Andrew S Greenberg; Rosalind A Coleman; Fredric B Kraemer; James L McManaman; Martin S Obin; Vishwajeet Puri; Qing-Wu Yan; Hideaki Miyoshi; Douglas G Mashek
Journal:  J Clin Invest       Date:  2011-06-01       Impact factor: 14.808

Review 2.  Oxidative tissue: perilipin 5 links storage with the furnace.

Authors:  Hong Wang; Carole Sztalryd
Journal:  Trends Endocrinol Metab       Date:  2011-05-31       Impact factor: 12.015

3.  A single centrifugation method for isolating fat droplets from cells and tissues.

Authors:  Lydia-Ann L S Harris; Trevor M Shew; James R Skinner; Nathan E Wolins
Journal:  J Lipid Res       Date:  2012-02-11       Impact factor: 5.922

Review 4.  The dynamic roles of intracellular lipid droplets: from archaea to mammals.

Authors:  Denis J Murphy
Journal:  Protoplasma       Date:  2011-10-15       Impact factor: 3.356

5.  Perilipin 5 and liver fatty acid binding protein function to restore quiescence in mouse hepatic stellate cells.

Authors:  Jianguo Lin; Shizhong Zheng; Alan D Attie; Mark P Keller; David A Bernlohr; William S Blaner; Elizabeth P Newberry; Nicholas O Davidson; Anping Chen
Journal:  J Lipid Res       Date:  2018-01-09       Impact factor: 5.922

6.  Distinct cellular pools of perilipin 5 point to roles in lipid trafficking.

Authors:  Sadie R Bartholomew; Erica Hlavin Bell; Taryn Summerfield; Leslie C Newman; Erin L Miller; Brian Patterson; Zach P Niday; William E Ackerman; John T Tansey
Journal:  Biochim Biophys Acta       Date:  2011-10-29

7.  Re-patterning of skeletal muscle energy metabolism by fat storage-inducing transmembrane protein 2.

Authors:  Diego A Miranda; Timothy R Koves; David A Gross; Alexandra Chadt; Hadi Al-Hasani; Gary W Cline; Gary J Schwartz; Deborah M Muoio; David L Silver
Journal:  J Biol Chem       Date:  2011-10-14       Impact factor: 5.157

8.  Training alters the distribution of perilipin proteins in muscle following acute free fatty acid exposure.

Authors:  S O Shepherd; J A Strauss; Q Wang; J J Dube; B Goodpaster; D G Mashek; L S Chow
Journal:  J Physiol       Date:  2017-06-27       Impact factor: 5.182

9.  Imaging of neutral lipids and neutral lipid associated proteins.

Authors:  Lydia-Ann L S Harris; James R Skinner; Nathan E Wolins
Journal:  Methods Cell Biol       Date:  2013       Impact factor: 1.441

Review 10.  The PAT family of lipid droplet proteins in heart and vascular cells.

Authors:  Antoni Paul; Lawrence Chan; Perry E Bickel
Journal:  Curr Hypertens Rep       Date:  2008-12       Impact factor: 5.369

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