|
|
||||||||
Correspondence to:
A. Catharine Ross
Lecithin:retinol acyltransferase (LRAT), present in microsomes, catalyzes the transfer of the sn-1 fatty acid of phosphatidylcholine to retinol bound to a cellular retinol-binding protein. In the present study we have cloned mouse and rat liver LRAT cDNA and tested the hypothesis that LRAT mRNA, like LRAT activity, is regulated physiologically in a liver-specific manner. The nucleotide sequences of mouse and rat liver LRAT cDNA each encode a 231-amino acid protein with 94% similarity between these species, and approximately 80% similarity to a cDNA for LRAT from human retinal pigment epithelium. Expression of rat LRAT cDNA in HEK293T cells resulted in functional retinol esterification and storage. RNA from several rat tissues hybridized with liver LRAT cDNA. However, LRAT mRNA was virtually absent from the liver of vitamin A-deficient animals, while being unaffected in intestine and testis. LRAT mRNA was rapidly induced by retinoic acid (RA) in liver of vitamin A-deficient mice and rats (P < 0.01). LRAT mRNA and enzymatic activity were well correlated in the same livers of rats treated with exogenous RA (r = 0.895, P < 0.0001), and in a dietary study that encompassed a broad range of vitamin A exposure (r = 0.799, P < 0.0001). Liver total retinol of <100 nmol/g was associated with low LRAT expression (<33% of control).
We propose that RA, derived exogenously or from metabolism, serves as an important signal of vitamin A status. The constitutive expression of liver LRAT during retinoid sufficiency would serve to divert retinol into storage pools, while the curtailment of LRAT expression in retinoid deficiency would maintain retinol for secretion and delivery to peripheral tissues. Zolfaghari, R., and A. C. Ross. Lecithin:retinol acyltransferase from mouse and rat liver: cDNA cloning and liver-specific regulation by dietary vitamin A and retinoic acid. J. Lipid Res. 2000. 41: 2024;2034.
Supplementary key words:
retinyl ester, hepatic retinoid metabolism, liver retinol, nutritional status
Copyright © 2000 by Lipid Research, Inc.
Original Article
Lecithin:retinol acyltransferase from mouse and rat liver: cDNA cloning and liver-specific regulation by dietary vitamin A and retinoic acid
Reza Zolfagharia and
A. Catharine Rossa
a Department of Nutrition, Pennsylvania State University, University Park, PA 16802
![]()
CiteULike
Complore
Connotea
Del.icio.us
Digg
Reddit
Technorati What's this?
This article has been cited by other articles:
![]() |
Y.-K. Kim, L. Wassef, L. Hamberger, R. Piantedosi, K. Palczewski, W. S. Blaner, and L. Quadro Retinyl Ester Formation by Lecithin:Retinol Acyltransferase Is a Key Regulator of Retinoid Homeostasis in Mouse Embryogenesis J. Biol. Chem., February 29, 2008; 283(9): 5611 - 5621. [Abstract] [Full Text] [PDF] |
||||
![]() |
A. Ruiz, N. B. Ghyselinck, N. Mata, S. Nusinowitz, M. Lloyd, C. Dennefeld, P. Chambon, and D. Bok Somatic Ablation of the Lrat Gene in the Mouse Retinal Pigment Epithelium Drastically Reduces Its Retinoid Storage Invest. Ophthalmol. Vis. Sci., December 1, 2007; 48(12): 5377 - 5387. [Abstract] [Full Text] [PDF] |
||||
![]() |
A. C. Ross and N.-q. Li Retinol Combined with Retinoic Acid Increases Retinol Uptake and Esterification in the Lungs of Young Adult Rats when Delivered by the Intramuscular as well as Oral Routes J. Nutr., November 1, 2007; 137(11): 2371 - 2376. [Abstract] [Full Text] [PDF] |
||||
![]() |
X.-H. Jin, Y. Okamoto, J. Morishita, K. Tsuboi, T. Tonai, and N. Ueda Discovery and Characterization of a Ca2+-independent Phosphatidylethanolamine N-Acyltransferase Generating the Anandamide Precursor and Its Congeners J. Biol. Chem., February 9, 2007; 282(6): 3614 - 3623. [Abstract] [Full Text] [PDF] |
||||
![]() |
A. Isken, J. Holzschuh, J. M. Lampert, L. Fischer, V. Oberhauser, K. Palczewski, and J. von Lintig Sequestration of Retinyl Esters Is Essential for Retinoid Signaling in the Zebrafish Embryo J. Biol. Chem., January 12, 2007; 282(2): 1144 - 1151. [Abstract] [Full Text] [PDF] |
||||
![]() |
C. J. Cifelli and A. C. Ross Chronic Vitamin A Status and Acute Repletion with Retinyl Palmitate Are Determinants of the Distribution and Catabolism of all-trans-Retinoic Acid in Rats J. Nutr., January 1, 2007; 137(1): 63 - 70. [Abstract] [Full Text] [PDF] |
||||
![]() |
C. J. Cifelli and A. C. Ross All-trans-retinoic acid distribution and metabolism in vitamin A-marginal rats. Am J Physiol Gastrointest Liver Physiol, August 1, 2006; 291(2): G195 - G202. [Abstract] [Full Text] [PDF] |
||||
![]() |
O. Strauss The Retinal Pigment Epithelium in Visual Function Physiol Rev, July 1, 2005; 85(3): 845 - 881. [Abstract] [Full Text] [PDF] |
||||
![]() |
C.-L. E. Yen, M. Monetti, B. J. Burri, and R. V. Farese Jr. The triacylglycerol synthesis enzyme DGAT1 also catalyzes the synthesis of diacylglycerols, waxes, and retinyl esters J. Lipid Res., July 1, 2005; 46(7): 1502 - 1511. [Abstract] [Full Text] [PDF] |
||||
![]() |
C. J. Cifelli, J. B. Green, and M. H. Green Dietary Retinoic Acid Alters Vitamin A Kinetics in Both the Whole Body and in Specific Organs of Rats with Low Vitamin A Status J. Nutr., April 1, 2005; 135(4): 746 - 752. [Abstract] [Full Text] [PDF] |
||||
![]() |
H. K. Biesalski and D. Nohr New Aspects in Vitamin A Metabolism: the Role of Retinyl Esters as Systemic and Local Sources for Retinol in Mucous Epithelia J. Nutr., December 1, 2004; 134(12): 3453S - 3457S. [Abstract] [Full Text] [PDF] |
||||
![]() |
M. L. Batten, Y. Imanishi, T. Maeda, D. C. Tu, A. R. Moise, D. Bronson, D. Possin, R. N. Van Gelder, W. Baehr, and K. Palczewski Lecithin-retinol Acyltransferase Is Essential for Accumulation of All-trans-Retinyl Esters in the Eye and in the Liver J. Biol. Chem., March 12, 2004; 279(11): 10422 - 10432. [Abstract] [Full Text] [PDF] |
||||
![]() |
A. C. Ross and R. Zolfaghari Regulation of Hepatic Retinol Metabolism: Perspectives from Studies on Vitamin A Status J. Nutr., January 1, 2004; 134(1): 269S - 275. [Abstract] [Full Text] [PDF] |
||||
![]() |
K. Hellemans, K. Rombouts, E. Quartier, A. S. Dittie, A. Knorr, L. Michalik, V. Rogiers, F. Schuit, W. Wahli, and A. Geerts PPAR{beta} regulates vitamin A metabolism-related gene expression in hepatic stellate cells undergoing activation J. Lipid Res., February 1, 2003; 44(2): 280 - 295. [Abstract] [Full Text] [PDF] |
||||
![]() |
X.-D. Wang Retinoids and Alcohol-Related Carcinogenesis J. Nutr., January 1, 2003; 133(1): 287S - 290. [Abstract] [Full Text] [PDF] |
||||
![]() |
A. C. Ross Retinoid Production and Catabolism: Role of Diet in Regulating Retinol Esterification and Retinoic Acid Oxidation J. Nutr., January 1, 2003; 133(1): 291S - 296. [Abstract] [Full Text] [PDF] |
||||
![]() |
R. Reifen, T. Nur, K. Ghebermeskel, G. Zaiger, R. Urizky, and M. Pines Vitamin A Deficiency Exacerbates Inflammation in a Rat Model of Colitis through Activation of Nuclear Factor-{kappa}B and Collagen Formation J. Nutr., September 1, 2002; 132(9): 2743 - 2747. [Abstract] [Full Text] [PDF] |
||||
![]() |
R. Zolfaghari and A. C. Ross Lecithin:Retinol Acyltransferase Expression Is Regulated by Dietary Vitamin A and Exogenous Retinoic Acid in the Lung of Adult Rats J. Nutr., June 1, 2002; 132(6): 1160 - 1164. [Abstract] [Full Text] [PDF] |
||||
![]() |
J. Chung, C. Liu, D. E. Smith, H. K. Seitz, R. M. Russell, and X.-D. Wang Restoration of retinoic acid concentration supresses ethanol-enhanced c-Jun expression and hepatocyte proliferation in rat liver Carcinogenesis, August 1, 2001; 22(8): 1213 - 1219. [Abstract] [Full Text] [PDF] |
||||
| HOME | HELP | FEEDBACK | SUBSCRIPTIONS | ARCHIVE | SEARCH | TABLE OF CONTENTS |
| All ASBMB Journals | Journal of Biological Chemistry |
| Molecular and Cellular Proteomics | ASBMB Today |