Back to Search Start Over

Combined hereditary and somatic mutations of replication error repair genes result in rapid onset of ultra-hypermutated cancers.

Authors :
Shlien, Adam
Meier, Bettina
Hong, Ye
Gartner, Anton
Remke, Marc
Thakkar, Neha P
Pearson, Christopher E
Hodel, Karl P
Henninger, Erin E
Göksenin, A Yasemin
Pursell, Zachary F
Bakry, Doua
Grant, Ronald
Nathan, Paul C
Alexander, Sarah
Charames, George S
Druker, Harriet
Lerner-Ellis, Jordan
Dvir, Rina
Elhasid, Ronit
Source :
Nature Genetics. Mar2015, Vol. 47 Issue 3, p257-262. 6p.
Publication Year :
2015

Abstract

DNA replication−associated mutations are repaired by two components: polymerase proofreading and mismatch repair. The mutation consequences of disruption to both repair components in humans are not well studied. We sequenced cancer genomes from children with inherited biallelic mismatch repair deficiency (bMMRD). High-grade bMMRD brain tumors exhibited massive numbers of substitution mutations (>250/Mb), which was greater than all childhood and most cancers (>7,000 analyzed). All ultra-hypermutated bMMRD cancers acquired early somatic driver mutations in DNA polymerase ɛ or δ. The ensuing mutation signatures and numbers are unique and diagnostic of childhood germ-line bMMRD (P < 10−13). Sequential tumor biopsy analysis revealed that bMMRD/polymerase-mutant cancers rapidly amass an excess of simultaneous mutations (∼600 mutations/cell division), reaching but not exceeding ∼20,000 exonic mutations in <6 months. This implies a threshold compatible with cancer-cell survival. We suggest a new mechanism of cancer progression in which mutations develop in a rapid burst after ablation of replication repair. [ABSTRACT FROM AUTHOR]

Details

Language :
English
ISSN :
10614036
Volume :
47
Issue :
3
Database :
Academic Search Index
Journal :
Nature Genetics
Publication Type :
Academic Journal
Accession number :
101125829
Full Text :
https://doi.org/10.1038/ng.3202