Literature DB >> 20952593

Development of sporadic microsatellite instability in colorectal tumors involves hypermethylation at methylated-in-tumor loci in adenoma.

Michiel F G de Maat1, Norihiko Narita, Anne Benard, Tetsunori Yoshimura, Christine Kuo, Rob A E M Tollenaar, Noel F C C de Miranda, Roderick R Turner, Cornelis J H van de Velde, Hans Morreau, Dave S B Hoon.   

Abstract

Microsatellite instability (MSI) and genomic hypermethylation of methylated-in-tumor (MINT) loci are both strong prognostic indicators in a subgroup of patients with sporadic colorectal cancer (CRC). The present study was designed to determine whether the methylation of MINT loci during the progression of adenoma to CRC is related to MSI in CRC cases. Methylation index (MI) was measured by absolute quantitative assessment of methylated alleles at seven MINT loci in primary CRC with contiguous adenomatous and normal tissues of 79 patients. Results were then validated in primary CRC tissues from an independent group of 54 patients. Increased MI of both MINT loci 1 and 31 was significantly associated with MSI in CRC and was specific for adenoma. Total MI and the number of methylated loci were threefold (P=0.02) and fivefold (P=0.004) higher, respectively, in adenomas associated with microsatellite-stable CRC versus microsatellite-unstable CRC. MINT MI was found to be correlated with mismatch repair protein expression, MSI, BRAF (V600E) mutation status, mut-L homologue 1 methylation status, and disease-specific survival in the second independent validation group of patients. MI of specific MINT loci may be prognostic indicators of colorectal adenomas that will develop into sporadic microsatellite-unstable CRCs. Increased MINT locus methylation appears to precede MSI and may have utility in defining clinical pathology in the absence of features of malignant invasive tumors.

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Year:  2010        PMID: 20952593      PMCID: PMC2966793          DOI: 10.2353/ajpath.2010.091103

Source DB:  PubMed          Journal:  Am J Pathol        ISSN: 0002-9440            Impact factor:   4.307


  62 in total

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Review 2.  Emerging pathways in colorectal-cancer development.

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Journal:  Cancer Res       Date:  2002-11-01       Impact factor: 12.701

4.  CpG island methylation in aberrant crypt foci of the colorectum.

Authors:  Annie On-On Chan; Russell R Broaddus; Patrick S Houlihan; Jean-Pierre J Issa; Stanley R Hamilton; Asif Rashid
Journal:  Am J Pathol       Date:  2002-05       Impact factor: 4.307

5.  Ki-ras mutation type and the survival benefit from adjuvant chemotherapy in Dukes' C colorectal cancer.

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6.  CpG island methylation in sporadic colorectal cancers and its relationship to microsatellite instability.

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7.  Aberrant methylation in gastric cancer associated with the CpG island methylator phenotype.

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8.  Frequent CpG island methylation in serrated adenomas of the colorectum.

Authors:  Seun-Ja Park; Asif Rashid; Jae-Hyuk Lee; Sang Geol Kim; Stanley R Hamilton; Tsung-Teh Wu
Journal:  Am J Pathol       Date:  2003-03       Impact factor: 4.307

9.  Conventional and tissue microarray immunohistochemical expression analysis of mismatch repair in hereditary colorectal tumors.

Authors:  Yvonne Hendriks; Patrick Franken; Jan Willem Dierssen; Wiljo De Leeuw; Juul Wijnen; Enno Dreef; Carli Tops; Martijn Breuning; Annette Bröcker-Vriends; Hans Vasen; Riccardo Fodde; Hans Morreau
Journal:  Am J Pathol       Date:  2003-02       Impact factor: 4.307

10.  Kirsten ras mutations in patients with colorectal cancer: the 'RASCAL II' study.

Authors:  H J Andreyev; A R Norman; D Cunningham; J Oates; B R Dix; B J Iacopetta; J Young; T Walsh; R Ward; N Hawkins; M Beranek; P Jandik; R Benamouzig; E Jullian; P Laurent-Puig; S Olschwang; O Muller; I Hoffmann; H M Rabes; C Zietz; C Troungos; C Valavanis; S T Yuen; J W Ho; C T Croke; D P O'Donoghue; W Giaretti; A Rapallo; A Russo; V Bazan; M Tanaka; K Omura; T Azuma; T Ohkusa; T Fujimori; Y Ono; M Pauly; C Faber; R Glaesener; A F de Goeij; J W Arends; S N Andersen; T Lövig; J Breivik; G Gaudernack; O P Clausen; P D De Angelis; G I Meling; T O Rognum; R Smith; H S Goh; A Font; R Rosell; X F Sun; H Zhang; J Benhattar; L Losi; J Q Lee; S T Wang; P A Clarke; S Bell; P Quirke; V J Bubb; J Piris; N R Cruickshank; D Morton; J C Fox; F Al-Mulla; N Lees; C N Hall; D Snary; K Wilkinson; D Dillon; J Costa; V E Pricolo; S D Finkelstein; J S Thebo; A J Senagore; S A Halter; S Wadler; S Malik; K Krtolica; N Urosevic
Journal:  Br J Cancer       Date:  2001-09-01       Impact factor: 7.640

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  6 in total

Review 1.  Extent of field change in colorectal cancers with BRAF mutation.

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2.  Aberrant hypermethylation in primary tumours and sentinel lymph node metastases in paediatric patients with cutaneous melanoma.

Authors:  K T Huynh; Y Takei; C Kuo; R A Scolyer; R Murali; K Chong; L Takeshima; M-S Sim; D L Morton; R R Turner; J F Thompson; D S B Hoon
Journal:  Br J Dermatol       Date:  2012-05-18       Impact factor: 9.302

3.  Case-control study of candidate gene methylation and adenomatous polyp formation.

Authors:  M Alexander; J B Burch; S E Steck; C-F Chen; T G Hurley; P Cavicchia; N Shivappa; J Guess; H Zhang; S D Youngstedt; K E Creek; S Lloyd; K Jones; J R Hébert
Journal:  Int J Colorectal Dis       Date:  2016-10-22       Impact factor: 2.571

Review 4.  Emerging technologies for studying DNA methylation for the molecular diagnosis of cancer.

Authors:  Diego M Marzese; Dave Sb Hoon
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5.  TGFBR2 and BAX mononucleotide tract mutations, microsatellite instability, and prognosis in 1072 colorectal cancers.

Authors:  Kaori Shima; Teppei Morikawa; Mai Yamauchi; Aya Kuchiba; Yu Imamura; Xiaoyun Liao; Jeffrey A Meyerhardt; Charles S Fuchs; Shuji Ogino
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6.  AIM1 and LINE-1 epigenetic aberrations in tumor and serum relate to melanoma progression and disease outcome.

Authors:  Sojun Hoshimoto; Christine T Kuo; Kelly K Chong; Teh-Ling Takeshima; Yoshiki Takei; Michelle W Li; Sharon K Huang; Myung-Shin Sim; Donald L Morton; Dave S B Hoon
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  6 in total

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