Gene Expression Analysis of a Human Enterocyte Cell Line Reveals Downregulation of Cholesterol Biosynthesis in Response to Short-chain Fatty Acids

被引:130
作者
Alvaro, Adriana [1 ]
Sola, Rosa [1 ]
Rosales, Roser [1 ]
Ribalta, Josep [1 ]
Anguera, Anna [1 ]
Masana, Lluis [1 ]
Caries Vallve, Joan [1 ]
机构
[1] Univ Rovira & Virgili, Res Unit Lipids & Atherosclerosis, St Joan Univ Hosp, E-43201 Reus, Spain
关键词
short-chain fatty acids; intestinal cholesterol biosynthesis; dietary fiber; soluble fiber; microarray analysis; enterocyte;
D O I
10.1002/iub.110
中图分类号
Q5 [生物化学]; Q7 [分子生物学];
学科分类号
071010 [生物化学与分子生物学]; 081704 [应用化学];
摘要
It has been suggested that the short-chain fatty acids (SCFAs) produced by anaerobic bacterial intestinal fermentation of soluble fiber may regulate lipid metabolism in intestine, thus reducing plasma cholesterol levels. However, the exact mechanism of action of SCFAs in lowering cholesterol levels is not fully understood. The aims of this study were to test the effects of SCFAs on gene expression in a human enterocyte cell line Caco-2/TC-7 and to validate microarray data by real-time PCR. Human Caco-2/TC-7 enterocytes were cultured on trans-well filter inserts and incubated with the SCFAs acetate (Ac), propionate (Pr), and butyrate (Bu). Total RNA was then isolated for microarrays and quantitative real-time PCR analysis. Treatment of human enterocytes with Pr and Bu affects a Wide variety of genes. These genes were classified according to the PANTHER classification system, and the results showed that different biological processes and metabolic pathways were modified by Pr and Bu treatment, including the intestinal cholesterol biosynthesis pathway. Differential array expression analysis showed that nine genes were downregulated in this, pathway, and these results were validated by real-time PCR. This in vitro study allowed us to identify a wide variety of biological processes and metabolic pathways affected by the SCFAs tested. Importantly, our results show that the global effect of Pr and Bu is to downregulate the expression of nine key genes involved in intestinal cholesterol biosynthesis, thus possibly inhibiting this pathway. (C) 2008 IUBMB
引用
收藏
页码:757 / 764
页数:8
相关论文
共 32 条
[1]
Short chain fatty acids and colon cancer [J].
Augenlicht, LH ;
Mariadason, JM ;
Wilson, A ;
Arango, D ;
Yang, WC ;
Heerdt, BG ;
Velcich, A .
JOURNAL OF NUTRITION, 2002, 132 (12) :3804S-3808S
[2]
Brown L, 1999, AM J CLIN NUTR, V69, P30
[3]
Executive summary of the Third Report of the National Cholesterol Education Program (NCEP) expert panel on detection, evaluation, and treatment of high blood cholesterol in adults (Adult Treatment Panel III) [J].
Cleeman, JI ;
Grundy, SM ;
Becker, D ;
Clark, LT ;
Cooper, RS ;
Denke, MA ;
Howard, WJ ;
Hunninghake, DB ;
Illingworth, DR ;
Luepker, RV ;
McBride, P ;
McKenney, JM ;
Pasternak, RC ;
Stone, NJ ;
Van Horn, L ;
Brewer, HB ;
Ernst, ND ;
Gordon, D ;
Levy, D ;
Rifkind, B ;
Rossouw, JE ;
Savage, P ;
Haffner, SM ;
Orloff, DG ;
Proschan, MA ;
Schwartz, JS ;
Sempos, CT ;
Shero, ST ;
Murray, EZ .
JAMA-JOURNAL OF THE AMERICAN MEDICAL ASSOCIATION, 2001, 285 (19) :2486-2497
[4]
SHORT CHAIN FATTY-ACIDS IN HUMAN LARGE-INTESTINE, PORTAL, HEPATIC AND VENOUS-BLOOD [J].
CUMMINGS, JH ;
POMARE, EW ;
BRANCH, WJ ;
NAYLOR, CPE ;
MACFARLANE, GT .
GUT, 1987, 28 (10) :1221-1227
[5]
REGULATION OF CHOLESTEROL METABOLISM .1. [J].
DIETSCHY, JM ;
WILSON, JD .
NEW ENGLAND JOURNAL OF MEDICINE, 1970, 282 (20) :1128-+
[6]
DIETSCHY JM, 1967, J LIPID RES, V8, P97
[7]
Short-chain fatty acids inhibit invasive human colon cancer by modulating uPA, TIMP-1, TIMP-2, mutant p53, Bcl-2, Bax, p21 and PCNA protein expression in an in vitro cell culture model [J].
Emenaker, NJ ;
Calaf, GM ;
Cox, D ;
Basson, MD ;
Qureshi, N .
JOURNAL OF NUTRITION, 2001, 131 (11) :3041S-3046S
[8]
Alvarez EE, 2006, NUTR HOSP, V21, P60
[9]
Soluble fiber and nondigestible carbohydrate effects on plasma lipids and cardiovascular risk [J].
Fernandez, ML .
CURRENT OPINION IN LIPIDOLOGY, 2001, 12 (01) :35-40
[10]
Garcia Peris P, 2002, Nutr Hosp, V17 Suppl 2, P11