Transcriptome variations in human CaCo-2 cells:: a model for enterocyte differentiation and its link to iron absorption

被引:20
作者
Bédrine-Ferran, H
Le Meur, N
Gicquel, I
Le Cunff, M
Soriano, N
Guisle, I
Mottier, S
Monnier, A
Teusan, R
Fergelot, P
Le Gall, JY
Léger, J
Mosser, J
机构
[1] Fac Med, CNRS, UMR 6061, F-35043 Rennes, France
[2] INSERM, U533, F-44035 Nantes, France
关键词
iron overload; enterocytes; microarray analysis of gene expression; CaCo-2; cells; cell differentiation; ontological annotations;
D O I
10.1016/j.ygeno.2003.11.014
中图分类号
Q81 [生物工程学(生物技术)]; Q93 [微生物学];
学科分类号
071005 ; 0836 ; 090102 ; 100705 ;
摘要
Complete clinical expression of the HFE1 hemochromatosis is very likely modulated by genes linked to duodenal iron absorption, whose level is conditioned by unknown processes taking place during enterocyte differentiation. We carried out a transcriptomic study on CaCo-2 cells used as a model of enterocyte differentiation in vitro. Of the 720 genes on the microarrays, 80, 50, and 56 were significantly down-regulated, up-regulated, and invariant during differentiation. With regard to iron metabolism, we showed that HEPH, SLC11A2, SLC11A3, and TF are significantly up-regulated, while ATP7B and SLC39A1 (and SFT) are down-regulated and ACO1, dCYTb, FECH, and FTH1 show constant expression. Ontological annotations highlight the decrease in the expression of cell cycle and DNA metabolism associated genes as well as transcription, protein metabolism, signal transduction, and nucleocytoplasmic transport associated genes, whereas there are increases in the expression of genes linked to cell adhesion, lipid and xenobiotic metabolism, iron transport and homeostasis, and immune response. (C) 2004 Elsevier Inc. All rights reserved.
引用
收藏
页码:772 / 789
页数:18
相关论文
共 50 条
  • [31] Cellular absorption of anthraquinones emodin and chrysophanol in human intestinal Caco-2 cells
    Teng, Zeng-hui
    Zhou, Si-yuan
    Ran, Yu-hua
    Liu, Xin-you
    Yang, Run-tao
    Yang, Xi
    Yuan, Cheng-jun
    Mei, Qi-bing
    BIOSCIENCE BIOTECHNOLOGY AND BIOCHEMISTRY, 2007, 71 (07) : 1636 - 1643
  • [32] Comparison of Absorption Characteristics of Iron Glycine Chelate and Ferrous Sulfate in Caco-2 Cells
    Ma, Wen-Qiang
    Wu, Jing
    Zhuo, Zhao
    Sun, Hong
    Yue, Min
    Feng, Jie
    INTERNATIONAL JOURNAL OF AGRICULTURE AND BIOLOGY, 2013, 15 (02) : 372 - 376
  • [33] Proposing a Caco-2/HepG2 cell model for in vitro iron absorption studies
    Scheers, Nathalie M.
    Almgren, Annette B.
    Sandberg, Ann-Sofie
    JOURNAL OF NUTRITIONAL BIOCHEMISTRY, 2014, 25 (07) : 710 - 715
  • [34] Caco-2 cells can be used to assess human iron bioavailability from a semipurified meal
    Au, AP
    Reddy, MB
    JOURNAL OF NUTRITION, 2000, 130 (05) : 1329 - 1334
  • [35] Transport of quercetin and its glucosides across human intestinal epithelial Caco-2 cells
    Walgren, RA
    Walle, UK
    Walle, T
    BIOCHEMICAL PHARMACOLOGY, 1998, 55 (10) : 1721 - 1727
  • [36] Human drug absorption kinetics and comparison to Caco-2 monolayer permeabilities
    Polli, JE
    Ginski, MJ
    PHARMACEUTICAL RESEARCH, 1998, 15 (01) : 47 - 52
  • [37] TRANSPORT OF BETA-LACTOGLOBULIN AND ALPHA-LACTALBUMIN IN ENTEROCYTE-LIKE CACO-2 CELLS
    CAILLARD, I
    TOME, D
    REPRODUCTION NUTRITION DEVELOPMENT, 1995, 35 (02): : 179 - 188
  • [38] Effect and Mechanism of Theaflavins on Fluoride Transport and Absorption in Caco-2 Cells
    Fan, Yueqin
    Lei, Zhendong
    Huang, Jiasheng
    Su, Dan
    Ni, Dejiang
    Chen, Yuqiong
    FOODS, 2023, 12 (07)
  • [39] Absorption of folate by Caco-2 cells is not affected by high glucose concentration
    Martel, Fatima
    Goncalves, Pedro
    Azevedo, Isabel
    EUROPEAN JOURNAL OF PHARMACOLOGY, 2006, 551 (1-3) : 19 - 26
  • [40] Polyamine metabolism of enterocyte-like Caco-2 cells after exposure to Phaseolus vulgaris lectin
    Koninkx, JFJG
    Brown, DS
    Kok, W
    Hendriks, HGCJM
    Pusztai, A
    Bardocz, S
    GUT, 1996, 38 (01) : 47 - 52