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A Two-Locus System Controls Susceptibility to Colitis-Associated Colon Cancer in Mice

We have previously shown that the differential susceptibility of A/J (susceptible) and C57BL/6J (B6, resistant) mouse strains to azoxymethane (AOM)-induced colorectal cancer (CRC) is controlled by the chromosome 3 locus, Ccs3. We report that A/J and B6 mice also show differential susceptibility to c...

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Autores principales: Van Der Kraak, Lauren, Meunier, Charles, Turbide, Claire, Jothy, Serge, Gaboury, Louis, Marcus, Victoria, Chang, Sing Yun, Beauchemin, Nicole, Gros, Philippe
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Impact Journals LLC 2010
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3248117/
https://www.ncbi.nlm.nih.gov/pubmed/21311099
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author Van Der Kraak, Lauren
Meunier, Charles
Turbide, Claire
Jothy, Serge
Gaboury, Louis
Marcus, Victoria
Chang, Sing Yun
Beauchemin, Nicole
Gros, Philippe
author_facet Van Der Kraak, Lauren
Meunier, Charles
Turbide, Claire
Jothy, Serge
Gaboury, Louis
Marcus, Victoria
Chang, Sing Yun
Beauchemin, Nicole
Gros, Philippe
author_sort Van Der Kraak, Lauren
collection PubMed
description We have previously shown that the differential susceptibility of A/J (susceptible) and C57BL/6J (B6, resistant) mouse strains to azoxymethane (AOM)-induced colorectal cancer (CRC) is controlled by the chromosome 3 locus, Ccs3. We report that A/J and B6 mice also show differential susceptibility to colitis-associated colorectal cancer (CA-CRC) induced by combined administration of AOM and dextran sulfate. This differential susceptibility is not controlled by Ccs3, but is under distinct genetic control. Linkage analyses in (A/J × B6)F2 mice detected a major CA-CRC susceptibility locus on chromosome 9 (Ccs4) which controls tumor multiplicity and tumor surface area. Susceptibility alleles at Ccs4 are inherited in a recessive fashion, with A/J alleles being associated with susceptibility. We also detected a second locus on chromosome 14 that acts in an additive fashion with Ccs4. Strikingly, F2 mice homozygous for A/J alleles at both loci (Ccs4 and chromosome 14) are as susceptible to CA-CRC as the A/J controls while mice homozygous for B6 alleles are as resistant as the B6 controls, thus supporting the role of two interacting loci in this CA-CRC model. This indicates that susceptibility to chemically-induced CRC and susceptibility to CA-CRC are under distinct genetic control in mice, and probably involve distinct cellular pathways.
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spelling pubmed-32481172012-01-18 A Two-Locus System Controls Susceptibility to Colitis-Associated Colon Cancer in Mice Van Der Kraak, Lauren Meunier, Charles Turbide, Claire Jothy, Serge Gaboury, Louis Marcus, Victoria Chang, Sing Yun Beauchemin, Nicole Gros, Philippe Oncotarget Research Papers We have previously shown that the differential susceptibility of A/J (susceptible) and C57BL/6J (B6, resistant) mouse strains to azoxymethane (AOM)-induced colorectal cancer (CRC) is controlled by the chromosome 3 locus, Ccs3. We report that A/J and B6 mice also show differential susceptibility to colitis-associated colorectal cancer (CA-CRC) induced by combined administration of AOM and dextran sulfate. This differential susceptibility is not controlled by Ccs3, but is under distinct genetic control. Linkage analyses in (A/J × B6)F2 mice detected a major CA-CRC susceptibility locus on chromosome 9 (Ccs4) which controls tumor multiplicity and tumor surface area. Susceptibility alleles at Ccs4 are inherited in a recessive fashion, with A/J alleles being associated with susceptibility. We also detected a second locus on chromosome 14 that acts in an additive fashion with Ccs4. Strikingly, F2 mice homozygous for A/J alleles at both loci (Ccs4 and chromosome 14) are as susceptible to CA-CRC as the A/J controls while mice homozygous for B6 alleles are as resistant as the B6 controls, thus supporting the role of two interacting loci in this CA-CRC model. This indicates that susceptibility to chemically-induced CRC and susceptibility to CA-CRC are under distinct genetic control in mice, and probably involve distinct cellular pathways. Impact Journals LLC 2010-10-11 /pmc/articles/PMC3248117/ /pubmed/21311099 Text en Copyright: © 2010 Van Der Kraak et al. http://creativecommons.org/licenses/by/2.5/ This is an open-access article distributed under the terms of the Creative Commons Attribution License, which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are credited
spellingShingle Research Papers
Van Der Kraak, Lauren
Meunier, Charles
Turbide, Claire
Jothy, Serge
Gaboury, Louis
Marcus, Victoria
Chang, Sing Yun
Beauchemin, Nicole
Gros, Philippe
A Two-Locus System Controls Susceptibility to Colitis-Associated Colon Cancer in Mice
title A Two-Locus System Controls Susceptibility to Colitis-Associated Colon Cancer in Mice
title_full A Two-Locus System Controls Susceptibility to Colitis-Associated Colon Cancer in Mice
title_fullStr A Two-Locus System Controls Susceptibility to Colitis-Associated Colon Cancer in Mice
title_full_unstemmed A Two-Locus System Controls Susceptibility to Colitis-Associated Colon Cancer in Mice
title_short A Two-Locus System Controls Susceptibility to Colitis-Associated Colon Cancer in Mice
title_sort two-locus system controls susceptibility to colitis-associated colon cancer in mice
topic Research Papers
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3248117/
https://www.ncbi.nlm.nih.gov/pubmed/21311099
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