|  Help  |  About  |  Contact Us

Publication : Cholesterol esterification by ACAT2 is essential for efficient intestinal cholesterol absorption: evidence from thoracic lymph duct cannulation.

First Author  Nguyen TM Year  2012
Journal  J Lipid Res Volume  53
Issue  1 Pages  95-104
PubMed ID  22045928 Mgi Jnum  J:179403
Mgi Id  MGI:5302163 Doi  10.1194/jlr.M018820
Citation  Nguyen TM, et al. (2012) Cholesterol esterification by ACAT2 is essential for efficient intestinal cholesterol absorption: evidence from thoracic lymph duct cannulation. J Lipid Res 53(1):95-104
abstractText  The hypothesis tested in this study was that cholesterol esterification by ACAT2 would increase cholesterol absorption efficiency by providing cholesteryl ester (CE) for incorporation into chylomicrons. The assumption was that absorption would be proportional to Acat2 gene dosage. Male ACAT2(+/+), ACAT2(+/-), and ACAT2(-/-) mice were fed a diet containing 20% of energy as palm oil with 0.2% (w/w) cholesterol. Cholesterol absorption efficiency was measured by fecal dual-isotope and thoracic lymph duct cannulation (TLDC) methods using [(3)H]sitosterol and [(14)C]cholesterol tracers. Excellent agreement among individual mice was found for cholesterol absorption measured by both techniques. Cholesterol absorption efficiency in ACAT2(-/-) mice was 16% compared with 46-47% in ACAT2(+/+) and ACAT2(+/-) mice. Chylomicrons from ACAT2(+/+) and ACAT2(+/-) mice carried approximately 80% of total sterol mass as CE, whereas ACAT2(-/-) chylomicrons carried >90% of sterol mass in the unesterified form. The total percentage of chylomicron mass as CE was reduced from 12% in the presence of ACAT2 to approximately 1% in ACAT2(-/-) mice. Altogether, the data demonstrate that ACAT2 increases cholesterol absorption efficiency by providing CE for chylomicron transport, but one copy of the Acat2 gene, providing approximately 50% of ACAT2 mRNA and enzyme activity, was as effective as two copies in promoting cholesterol absorption.
Quick Links:
 
Quick Links:
 

Expression

Publication --> Expression annotations

 

Other

4 Bio Entities

Trail: Publication

0 Expression