Journal of Biological Chemistry 2016-02-05

Characterization of a Novel Intestinal Glycerol-3-phosphate Acyltransferase Pathway and Its Role in Lipid Homeostasis.

Irani Khatun, Ronald W Clark, Nicholas B Vera, Kou Kou, Derek M Erion, Timothy Coskran, Walter F Bobrowski, Carlin Okerberg, Bryan Goodwin

Index: J. Biol. Chem. 291 , 2602-15, (2016)

Full Text: HTML

Abstract

Dietary triglycerides (TG) are absorbed by the enterocytes of the small intestine after luminal hydrolysis into monacylglycerol and fatty acids. Before secretion on chylomicrons, these lipids are reesterified into TG, primarily through the monoacylglycerol pathway. However, targeted deletion of the primary murine monoacylglycerol acyltransferase does not quantitatively affect lipid absorption, suggesting the existence of alternative pathways. Therefore, we investigated the role of the glycerol 3-phosphate pathway in dietary lipid absorption. The expression of glycerol-3-phosphate acyltransferase (GPAT3) was examined throughout the small intestine. To evaluate the role for GPAT3 in lipid absorption, mice harboring a disrupted GPAT3 gene (Gpat3(-/-)) were subjected to an oral lipid challenge and fed a Western-type diet to characterize the role in lipid and cholesterol homeostasis. Additional mechanistic studies were performed in primary enterocytes. GPAT3 was abundantly expressed in the apical surface of enterocytes in the small intestine. After an oral lipid bolus, Gpat3(-/-) mice exhibited attenuated plasma TG excursion and accumulated lipid in the enterocytes. Electron microscopy studies revealed a lack of lipids in the lamina propria and intercellular space in Gpat3(-/-) mice. Gpat3(-/-) enterocytes displayed a compensatory increase in the synthesis of phospholipid and cholesteryl ester. When fed a Western-type diet, hepatic TG and cholesteryl ester accumulation was significantly higher in Gpat3(-/-) mice compared with the wild-type mice accompanied by elevated levels of alanine aminotransferase, a marker of liver injury. Dysregulation of bile acid metabolism was also evident in Gpat3-null mice. These studies identify GPAT3 as a novel enzyme involved in intestinal lipid metabolism. © 2016 by The American Society for Biochemistry and Molecular Biology, Inc.


Related Compounds

Related Articles:

G-protein-coupled estrogen receptor 1 is anatomically positioned to modulate synaptic plasticity in the mouse hippocampus.

2015-02-11

[J. Neurosci. 35(6) , 2384-97, (2015)]

Neuroprotective effect of modified Chungsimyeolda-tang, a traditional Korean herbal formula, via autophagy induction in models of Parkinson's disease.

2015-01-15

[J. Ethnopharmacol. 159 , 93-101, (2014)]

Nerve demyelination increases metabotropic glutamate receptor subtype 5 expression in peripheral painful mononeuropathy.

2015-01-01

[Int. J. Mol. Sci. 16(3) , 4642-65, (2015)]

Control of cytoplasmic dynein force production and processivity by its C-terminal domain.

2015-01-01

[Nat. Commun. 6 , 6206, (2015)]

Gene therapy with AAV2-CDNF provides functional benefits in a rat model of Parkinson's disease.

2013-03-01

[Brain Behav. 3(2) , 75-88, (2013)]

More Articles...