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Exclusive KRAS mutation in microsatellite-unstable human colorectal carcinomas with sequence alterations in the DNA mismatch repair gene, MLH1
Authors:Zhao Yan  Miyashita Kaname  Ando Takayuki  Kakeji Yoshihiro  Yamanaka Takeharu  Taguchi Kenichi  Ushijima Toshikazu  Oda Shinya  Maehara Yoshihiko
Affiliation:Institute for Clinical Research, National Kyushu Cancer Center, 3-1-1, Notame, Fukuoka 811-1395, Japan; Department of Surgery and Science, Graduate School of Medical Sciences, Kyushu University, Fukuoka, Japan.
Abstract:
Microsatellite instability (MSI) is regarded as reflecting defective DNA mismatch repair (MMR). MMR defects lead to an increase in point mutations, as well as repeat instability, on the genome. However, despite the highly unstable microsatellites, base substitutions in representative oncogenes or tumor suppressors are extremely infrequent in MSI-positive tumors. Recently, the heterogeneity in MSI-positive colorectal tumors is pointed out, and the 'hereditary' and 'sporadic settings' are proposed. Particularly in the former, base substitution mutations in KRAS are regarded as relatively frequent. We sequenced the KRAS gene in a panel of 76 human colorectal carcinomas in which the MSI status has been determined. KRAS mutations were detected in 22 tumors (28.9%). Intriguingly, all of the KRAS-mutant MSI-H (high) tumors harbored sequence alterations in an essential MMR gene, MLH1, which implies that KRAS mutation more frequently and almost exclusively occurs in MMR gene-mutant MSI-H tumors. Furthermore, in contrast with the prevailing viewpoint, some of these tumors are derived from sporadic colorectal cancer patients. The tight connection between MMR gene mutation and KRAS mutation may suggest previously unrecognized complexities in the relationship between MSI and the mutator phenotype derived from defective MMR.
Keywords:A, Adenine   bp, base pairs   C, Cytidine   CIN, chromosomal instability   DNA, deoxyribose nucleic acid   G, Guanosine   FAP, familial adenomatous polyposis   HNPCC, Hereditary Non-Polyposis Colorectal Cancer   MMR, DNA mismatch repair   LOH, loss of heterozygosity   MIN, microsatellite instability   MSI, microsatellite instability   MSI-L, low frequency microsatellite instability   MSI-H, high frequency microsatellite instability   PCR, polymerase chain reaction   T, Thymidine   TDT, terminal deoxynucleotidyl transferase   TS, transition mutation   TV, transversion mutation
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