Association between the C3435T MDR1 gene polymorphism and susceptibility for ulcerative colitis

The human multidrug resistance 1 (MDR1) gene product P-glycoprotein is highly expressed in intestinal epithelial cells, where it constitutes a barrier against xenobiotics. The finding that mdr1a knockout mice develop a form of colitis that is similar to ulcerative colitis, which can be prevented by...

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Published inGastroenterology (New York, N.Y. 1943) Vol. 124; no. 1; p. 26
Main Authors Schwab, Matthias, Schaeffeler, Elke, Marx, Claudia, Fromm, Martin F, Kaskas, Bernd, Metzler, Joerg, Stange, Eduard, Herfarth, Hans, Schoelmerich, Juergen, Gregor, Michael, Walker, Siegfried, Cascorbi, Ingolf, Roots, Ivar, Brinkmann, Ulrich, Zanger, Ulrich M, Eichelbaum, Michel
Format Journal Article
LanguageEnglish
Published United States 01.01.2003
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Abstract The human multidrug resistance 1 (MDR1) gene product P-glycoprotein is highly expressed in intestinal epithelial cells, where it constitutes a barrier against xenobiotics. The finding that mdr1a knockout mice develop a form of colitis that is similar to ulcerative colitis, which can be prevented by antibiotics, indicates a barrier function for P-glycoprotein against the invasion of bacteria or toxins. Because the MDR1 single nucleotide polymorphism C3435T is associated with lower intestinal P-glycoprotein expression, we tested whether this polymorphism predisposes to development of ulcerative colitis. Allele frequencies and genotype distributions of the C3435T single nucleotide polymorphism were investigated in 149 patients with ulcerative colitis, 126 patients with Crohn's disease, and sex-matched healthy controls. Significantly increased frequencies of the 3435T allele and the 3435TT genotype were observed in patients with ulcerative colitis compared with controls (3435T: P = 0.049; odds ratio, 1.4; 95% confidence interval, 1.02-1.94; 3435TT: P = 0.045; odds ratio, 2.03; 95% confidence interval, 1.04-3.95). In contrast, frequencies of the T allele and the TT genotype were the same in patients with Crohn's disease as in controls (P = 0.66 and P = 0.59, respectively). In comparison to 998 non-sex-matched controls, the effect for the TT genotype in ulcerative colitis patients was more pronounced (P = 0.0055; odds ratio, 2.1). The higher frequency of the 3435TT genotype in patients with ulcerative colitis corroborates the findings from the mdr1a knockout mice. The results support the notion that P-glycoprotein plays a major role in the defense against intestinal bacteria or toxins. Impairment of barrier function in 3435TT subjects could render this genotype more susceptible to the development of ulcerative colitis.
AbstractList The human multidrug resistance 1 (MDR1) gene product P-glycoprotein is highly expressed in intestinal epithelial cells, where it constitutes a barrier against xenobiotics. The finding that mdr1a knockout mice develop a form of colitis that is similar to ulcerative colitis, which can be prevented by antibiotics, indicates a barrier function for P-glycoprotein against the invasion of bacteria or toxins. Because the MDR1 single nucleotide polymorphism C3435T is associated with lower intestinal P-glycoprotein expression, we tested whether this polymorphism predisposes to development of ulcerative colitis. Allele frequencies and genotype distributions of the C3435T single nucleotide polymorphism were investigated in 149 patients with ulcerative colitis, 126 patients with Crohn's disease, and sex-matched healthy controls. Significantly increased frequencies of the 3435T allele and the 3435TT genotype were observed in patients with ulcerative colitis compared with controls (3435T: P = 0.049; odds ratio, 1.4; 95% confidence interval, 1.02-1.94; 3435TT: P = 0.045; odds ratio, 2.03; 95% confidence interval, 1.04-3.95). In contrast, frequencies of the T allele and the TT genotype were the same in patients with Crohn's disease as in controls (P = 0.66 and P = 0.59, respectively). In comparison to 998 non-sex-matched controls, the effect for the TT genotype in ulcerative colitis patients was more pronounced (P = 0.0055; odds ratio, 2.1). The higher frequency of the 3435TT genotype in patients with ulcerative colitis corroborates the findings from the mdr1a knockout mice. The results support the notion that P-glycoprotein plays a major role in the defense against intestinal bacteria or toxins. Impairment of barrier function in 3435TT subjects could render this genotype more susceptible to the development of ulcerative colitis.
Author Gregor, Michael
Kaskas, Bernd
Stange, Eduard
Cascorbi, Ingolf
Eichelbaum, Michel
Schaeffeler, Elke
Herfarth, Hans
Schoelmerich, Juergen
Fromm, Martin F
Brinkmann, Ulrich
Zanger, Ulrich M
Marx, Claudia
Roots, Ivar
Schwab, Matthias
Metzler, Joerg
Walker, Siegfried
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  surname: Schwab
  fullname: Schwab, Matthias
  email: matthias.schwab@kp-stuttgart.de
  organization: Dr. Margarete Fischer-Bosch Institute of Clinical Pharmacology, Auerbachstrasse 112, 70376 Stuttgart, Germany. matthias.schwab@kp-stuttgart.de
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PublicationTitle Gastroenterology (New York, N.Y. 1943)
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References 14724799 - Gastroenterology. 2004 Jan;126(1):367
14727637 - Gastroenterology. 2003 Dec;125(6):1919-20; author reply 1920-1
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Snippet The human multidrug resistance 1 (MDR1) gene product P-glycoprotein is highly expressed in intestinal epithelial cells, where it constitutes a barrier against...
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StartPage 26
SubjectTerms Adolescent
Adult
Aged
Alleles
Case-Control Studies
Colitis, Ulcerative - genetics
Control Groups
Crohn Disease - genetics
Female
Gene Frequency
Genes, MDR - genetics
Genetic Predisposition to Disease - genetics
Genotype
Humans
Male
Middle Aged
Polymorphism, Genetic
Title Association between the C3435T MDR1 gene polymorphism and susceptibility for ulcerative colitis
URI https://www.ncbi.nlm.nih.gov/pubmed/12512026
Volume 124
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