Changes in the transcriptional profile of transporters in the intestine along the anterior-posterior and crypt-villus axes

被引:40
作者
Anderle, P
Sengstag, T
Mutch, DM
Rumbo, M
Praz, V
Mansourian, R
Delorenzi, M
Williamson, G
Roberts, MA
机构
[1] Nestec Ltd, Nestle Res Ctr, CH-1000 Lausanne, Switzerland
[2] Swiss Inst Bioinformat, NCCR Mol Oncol, CH-1066 Epalinges, Switzerland
[3] Nestle Purina Pet Care, St Louis, MO 63164 USA
[4] Swiss Inst Expt Canc Res, CH-1066 Epalinges, Switzerland
关键词
D O I
10.1186/1471-2164-6-69
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 [微生物学]; 0836 [生物工程]; 090102 [作物遗传育种]; 100705 [微生物与生化药学];
摘要
Background: The purpose of this work was to characterize the expression of drug and nutrient carriers along the anterior-posterior and crypt-villus axes of the intestinal epithelium and to study the validity of utilizing whole gut tissue rather than purified epithelial cells to examine regional variations in gene expression. Results: We have characterized the mRNA expression profiles of 76% of all currently known transporters along the anterior-posterior axis of the gut. This is the first study to describe the expression profiles of the majority of all known transporters in the intestine. The expression profiles of transporters, as defined according to the Gene Ontology consortium, were measured in whole tissue of the murine duodenum, jejunum, ileum and colon using high-density microarrays. For nine transporters (Abca1, Abcc1, Abcc3, Abcg8, Slc10a2, Slc28a2, Slc2a1, Slc34a2 and Slc5a8), the mRNA profiles were further measured by RT-PCR in laser micro-dissected crypt and villus epithelial cells corresponding to the aforementioned intestinal regions. With respect to differentially regulated transporters, the colon had a distinct expression profile from small intestinal segments. The majority (59% for p cutoff <= 0.05) of transporter mRNA levels were constant across the intestinal sections studied. For the transporter subclass "carrier activity", which contains the majority of known carriers for biologically active compounds, a significant change ( p = 0.05) along the anterior-posterior axis was observed. Conclusion: All nine transporters examined in laser-dissected material demonstrated good replication of the region-specific profiles revealed by microarray. Furthermore, we suggest that the distribution characteristics of Slc5a8 along the intestinal tract render it a suitable candidate carrier for monocarboxylate drugs in the posterior portion of the intestine. Our findings also predict that there is a significant difference in the absorption of carrier-mediated compounds in the different intestinal segments. The most pronounced differences can be expected between the adjoining segments ileum and colon, but the differences between the other adjoining segments are not negligible. Finally, for the examined genes, profiles measured in whole intestinal tissue extracts are representative of epithelial cell-only gene expression.
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页数:17
相关论文
共 100 条
[1]
Messenger RNA expression of transporter and ion channel genes in undifferentiated and differentiated Caco-2 cells compared to human intestines [J].
Anderle, P ;
Rakhmanova, V ;
Woodford, K ;
Zerangue, N ;
Sadée, W .
PHARMACEUTICAL RESEARCH, 2003, 20 (01) :3-15
[2]
P-glycoprotein (P-gp) mediated efflux in Caco-2 cell monolayers: The influence of culturing conditions and drug exposure on P-gp expression levels [J].
Anderle, P ;
Niederer, E ;
Rubas, W ;
Hilgendorf, C ;
Spahn-Langguth, H ;
Wunderli-Allenspach, H ;
Merkle, HP ;
Langguth, P .
JOURNAL OF PHARMACEUTICAL SCIENCES, 1998, 87 (06) :757-762
[3]
Intestinal membrane transport of drugs and nutrients:: genomics of membrane transporters using expression microarrays [J].
Anderle, P ;
Huang, Y ;
Sadée, W .
EUROPEAN JOURNAL OF PHARMACEUTICAL SCIENCES, 2004, 21 (01) :17-24
[4]
ANDERLE P, 2003, BIOMEDICAL TRANSPORT, P3
[5]
BARRETT KE, 2001, GASTROINTESTINAL TRA
[6]
Novel genes and functional relationships in the adult mouse gastrointestinal tract, identified by microarray analysis [J].
Bates, MD ;
Erwin, CR ;
Sanford, LP ;
Wiginton, D ;
Bezerra, JA ;
Schatzman, LC ;
Jegga, AG ;
Ley-Ebert, C ;
Williams, SS ;
Steinbrecher, KA ;
Warner, BW ;
Cohen, MB ;
Aronow, BJ .
GASTROENTEROLOGY, 2002, 122 (05) :1467-1482
[7]
The mouse Na+-sulfate cotransporter gene Nas1 -: Cloning, tissue distribution, gene structure, chromosomal assignment, and transcriptional regulation by vitamin D [J].
Beck, L ;
Markovich, D .
JOURNAL OF BIOLOGICAL CHEMISTRY, 2000, 275 (16) :11880-11890
[8]
Streptozotocin diabetes and the expression of GLUT1 at the brush border and basolateral membranes of intestinal enterocytes [J].
Boyer, S ;
Sharp, PA ;
Debnam, ES ;
Baldwin, SA ;
Srai, SKS .
FEBS LETTERS, 1996, 396 (2-3) :218-222
[9]
CAPURSO A, 1988, J LIPID RES, V29, P703
[10]
Recent advances in the molecular biology of nucleoside transporters of mammalian cells [J].
Cass, CE ;
Young, JD ;
Baldwin, SA .
BIOCHEMISTRY AND CELL BIOLOGY-BIOCHIMIE ET BIOLOGIE CELLULAIRE, 1998, 76 (05) :761-770