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August 16, 2012The Journal of Pathology71 citations

MLH1‐silenced and non‐silenced subgroups of hypermutated colorectal carcinomas have distinct mutational landscapes

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LDLawrence A. DonehowerCCChad J. CreightonNSNikolaus Schultz

Key Points

  • This research aims to explore the differences in mutational landscapes between MLH1-silenced and non-silenced hypermutated colorectal carcinomas.
  • Compared 35 hypermutated colorectal carcinomas to non-hypermutated counterparts using whole exome sequencing.
  • Assessed frequencies of MLH1 silencing, BRAF, APC, and KRAS mutations.
  • Validated findings with an independent set of 250 exome-sequenced colorectal cancers.
  • 63% of hypermutated tumors were MLH1-silenced, showing BRAF V600E mutations but infrequent APC and KRAS mutations.
  • 37% of hypermutated tumors retained MLH1 expression with high mutation rates, displaying more APC and KRAS mutations, yet few BRAF mutations.
  • Hypermutated CRCs with MLH1 silencing showed reduced WNT signaling and increased BRAF signaling compared to non-hypermutated CRCs.

Abstract

Approximately 15% of colorectal carcinomas (CRCs) exhibit a hypermutated genotype accompanied by high levels of microsatellite instability (MSI-H) and defects in DNA mismatch repair. These tumours, unlike the majority of colorectal carcinomas, are often diploid, exhibit frequent epigenetic silencing of the MLH1 DNA mismatch repair gene, and have a better clinical prognosis. As an adjunct study to The Cancer Genome Atlas consortium that recently analysed 224 colorectal cancers by whole exome sequencing, we compared the 35 CRCs (15.6%) with a hypermutated genotype to those with a non-hypermutated genotype. We found that 22 (63%) of the hypermutated CRCs exhibited transcriptional silencing of the MLH1 gene, a high frequency of BRAF V600E gene mutations, and infrequent APC and KRAS mutations, a mutational pattern significantly different from their non-hypermutated counterparts. However, the remaining 13 (37%) hypermutated CRCs lacked MLH1 silencing, contained tumours with the highest mutation rates ('ultramutated' CRCs), and exhibited higher incidences of APC and KRAS mutations, but infrequent BRAF mutations. These patterns were confirmed in an independent validation set of 250 exome-sequenced CRCs. Analysis of mRNA and microRNA expression signatures revealed that hypermutated CRCs with MLH1 silencing had greatly reduced levels of WNT signalling and increased BRAF signalling relative to non-hypermutated CRCs. Our findings suggest that hypermutated CRCs include one subgroup with fundamentally different pathways to malignancy than the majority of CRCs. Examination of MLH1 expression status and frequencies of APC, KRAS, and BRAF mutation in CRC may provide a useful diagnostic tool that could supplement the standard microsatellite instability assays and influence therapeutic decisions.

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Cite This Study

Donehower et al. (2012) studied this question.

synapsesocial.com/papers/6a1d13331e7099f69104d367https://doi.org/10.1002/path.4087
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