Literature DB >> 21829229

Evidence of linkage to chromosomes 10p15.3-p15.1, 14q24.3-q31.1 and 9q33.3-q34.3 in non-syndromic colorectal cancer families.

Ian W Saunders1, Jason Ross, Finlay Macrae, Graeme P Young, Ignacio Blanco, Jesper Brohede, Glenn Brown, Diana Brookes, Trevor Lockett, Peter L Molloy, Victor Moreno, Gabriel Capella, Garry N Hannan.   

Abstract

Up to 25% of colorectal cancer (CRC) may be caused by inherited genetic variants that have yet to be identified. Previous genome-wide linkage studies (GWLSs) have identified a new loci postulated to contain novel CRC risk genes amongst affected families carrying no identifiable mutations in any of the known susceptibility genes for familial CRC syndromes. To undertake a new GWLS, we recruited members from 54 non-syndromic families from Australia and Spain where at least two first-degree relatives were affected by CRC. We used single-nucleotide polymorphism arrays to genotype 98 concordant affected relative pairs that were informative for linkage analyses. We tested for genome-wide significance (GWS) for linkage to CRC using a quantile statistic method, and we found that GWS was achieved at the 5% level. Independently, using the PSEUDO gene-dropping algorithm, we also found that GWS for linkage to CRC was achieved (P=0.02). Merlin non-parametric linkage analysis revealed significant linkage to CRC for chromosomal region 10p15.3-p15.1 and suggestive linkage to CRC for regions on 14q and 9q. The 10p15.3-p15.1 has not been reported to be linked to hereditary CRC in previous linkage studies, but this region does harbour the Kruppel-like factor 6 (KLF6) gene that is known to be altered in common CRC. Further studies aimed at localising the responsible genes, and characterising their function will give insight into the factors responsible for susceptibility in such families, and perhaps shed further light on the mechanisms of CRC development.

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Year:  2011        PMID: 21829229      PMCID: PMC3234517          DOI: 10.1038/ejhg.2011.149

Source DB:  PubMed          Journal:  Eur J Hum Genet        ISSN: 1018-4813            Impact factor:   4.246


  49 in total

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Authors:  T Djureinovic; J Skoglund; J Vandrovcova; X-L Zhou; A Kalushkova; L Iselius; A Lindblom
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2.  Refining the Amsterdam Criteria and Bethesda Guidelines: testing algorithms for the prediction of mismatch repair mutation status in the familial cancer clinic.

Authors:  L R Lipton; V Johnson; C Cummings; S Fisher; P Risby; A T Eftekhar Sadat; T Cranston; L Izatt; P Sasieni; S V Hodgson; H J W Thomas; I P M Tomlinson
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3.  The common colorectal cancer predisposition SNP rs6983267 at chromosome 8q24 confers potential to enhanced Wnt signaling.

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5.  Confirmation of linkage to and localization of familial colon cancer risk haplotype on chromosome 9q22.

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6.  Lower cancer incidence in Amsterdam-I criteria families without mismatch repair deficiency: familial colorectal cancer type X.

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Review 7.  Genetic testing in hereditary colorectal cancer: indications and procedures.

Authors:  J P Terdiman; P G Conrad; M H Sleisenger
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8.  Hereditary mixed polyposis syndrome due to a BMPR1A mutation.

Authors:  J M O'Riordan; D O'Donoghue; A Green; D Keegan; L A Hawkes; S J Payne; K Sheahan; D C Winter
Journal:  Colorectal Dis       Date:  2009-04-29       Impact factor: 3.788

9.  Microsomal prostaglandin E synthase protein levels correlate with prognosis in colorectal cancer patients.

Authors:  Tsuguhiko Seo; Atsushi Tatsuguchi; Seiichi Shinji; Masaoki Yonezawa; Keigo Mitsui; Shu Tanaka; Shunji Fujimori; Katya Gudis; Yuh Fukuda; Choitsu Sakamoto
Journal:  Virchows Arch       Date:  2009-05-02       Impact factor: 4.064

Review 10.  Identification of HNPCC by molecular analysis of colorectal and endometrial tumors.

Authors:  H F A Vasen; Y Hendriks; A E de Jong; M van Puijenbroek; C Tops; A H J T Bröcker-Vriends; J Th Wijnen; H Morreau
Journal:  Dis Markers       Date:  2004       Impact factor: 3.434

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Review 2.  Genetic predisposition to colorectal cancer: where we stand and future perspectives.

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Journal:  World J Gastroenterol       Date:  2014-08-07       Impact factor: 5.742

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4.  Little evidence for association between the TGFBR1*6A variant and colorectal cancer: a family-based association study on non-syndromic family members from Australia and Spain.

Authors:  Jason P Ross; Linda J Lockett; Bruce Tabor; Ian W Saunders; Graeme P Young; Finlay Macrae; Ignacio Blanco; Gabriel Capella; Glenn S Brown; Trevor J Lockett; Garry N Hannan
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5.  Exome sequencing in one family with gastric- and rectal cancer.

Authors:  Jessada Thutkawkorapin; Simone Picelli; Vinaykumar Kontham; Tao Liu; Daniel Nilsson; Annika Lindblom
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6.  Linkage analysis revealed risk loci on 6p21 and 18p11.2-q11.2 in familial colon and rectal cancer, respectively.

Authors:  Susanna von Holst; Xiang Jiao; Wen Liu; Vinaykumar Kontham; Jessada Thutkawkorapin; Jenny Ringdahl; Patrick Bryant; Annika Lindblom
Journal:  Eur J Hum Genet       Date:  2019-04-05       Impact factor: 4.246

7.  Whole-exome sequencing identifies rare pathogenic variants in new predisposition genes for familial colorectal cancer.

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Journal:  Genet Med       Date:  2014-07-24       Impact factor: 8.822

8.  Linkage analysis in familial non-Lynch syndrome colorectal cancer families from Sweden.

Authors:  Vinaykumar Kontham; Susanna von Holst; Annika Lindblom
Journal:  PLoS One       Date:  2013-12-11       Impact factor: 3.240

  8 in total

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