Home LiteratureArticle Details
PMID: 23447401 Published · ppublish English Journal Article Research Support, Non-U.S. Gov't

Germline and somatic polymerase ε and δ mutations define a new class of hypermutated colorectal and endometrial cancers.

The Journal of pathology ·Vol. 230 ·No. 2 ·2013-06-00 ·Pages 148-53

Briggs S, Tomlinson I

Abstract

Polymerases ε and δ are the main enzymes that replicate eukaryotic DNA. Accurate replication occurs through Watson-Crick base pairing and also through the action of the polymerases' exonuclease (proofreading) domains. We have recently shown that germline exonuclease domain mutations (EDMs) of POLE and POLD1 confer a high risk of multiple colorectal adenomas and carcinoma (CRC). POLD1 mutations also predispose to endometrial cancer (EC). These mutations are associated with high penetrance and dominant inheritance, although the phenotype can be variable. We have named the condition polymerase proofreading-associated polyposis (PPAP). Somatic POLE EDMs have also been found in sporadic CRCs and ECs, although very few somatic POLD1 EDMs have been detected. Both the germline and the somatic DNA polymerase EDMs cause an 'ultramutated', apparently microsatellite-stable, type of cancer, sometimes leading to over a million base substitutions per tumour. Here, we present the evidence for POLE and POLD1 as important contributors to the pathogenesis of CRC and EC, and highlight some of the key questions in this emerging field.

MeSH Terms
Adenocarcinoma/genetics,pathology Adenoma/genetics,pathology Colorectal Neoplasms/genetics,pathology DNA Polymerase II/genetics DNA Polymerase III/genetics Endometrial Neoplasms/genetics,pathology Female Gene Expression Regulation, Enzymologic Gene Expression Regulation, Neoplastic Gene Silencing Genetic Predisposition to Disease Germ-Line Mutation/genetics Humans Male Microsatellite Instability Microsatellite Repeats Pedigree
Chemicals
DNA Polymerase II DNA Polymerase III
Authors & Affiliations
2 authors, click to expand affiliations / ORCID
Briggs Sarah
Molecular and Population Genetics Laboratory, Wellcome Trust Centre for Human Genetics, University of Oxford, Oxford, UK.
Tomlinson Ian
References (18)
18 references, click to expand
  1. Recurrent R-spondin fusions in colon cancer.
    Nature. 2012 Aug 30;488(7413):660-4 PMID: 22895193
  2. Amino acid changes coded by bacteriophage T4 DNA polymerase mutator mutants. Relating structure to function.
    J Mol Biol. 1988 Aug 20;202(4):711-24 PMID: 3172235
  3. Division of labor at the eukaryotic replication fork.
    Mol Cell. 2008 Apr 25;30(2):137-44 PMID: 18439893
  4. Mutator phenotypes caused by substitution at a conserved motif A residue in eukaryotic DNA polymerase delta.
    J Biol Chem. 2006 Feb 17;281(7):4486-94 PMID: 16344551
  5. A cancer-associated DNA polymerase delta variant modeled in yeast causes a catastrophic increase in genomic instability.
    Proc Natl Acad Sci U S A. 2010 Jan 5;107(1):157-62 PMID: 19966286
  6. DNA polymerase ε and δ exonuclease domain mutations in endometrial cancer.
    Hum Mol Genet. 2013 Jul 15;22(14):2820-8 PMID: 23528559
  7. The cBio cancer genomics portal: an open platform for exploring multidimensional cancer genomics data.
    Cancer Discov. 2012 May;2(5):401-4 PMID: 22588877
  8. Eukaryotic DNA polymerase amino acid sequence required for 3'----5' exonuclease activity.
    Proc Natl Acad Sci U S A. 1991 Nov 1;88(21):9473-7 PMID: 1658784
  9. Yeast DNA polymerase epsilon participates in leading-strand DNA replication.
    Science. 2007 Jul 6;317(5834):127-30 PMID: 17615360
  10. DNA polymerase epsilon and delta proofreading suppress discrete mutator and cancer phenotypes in mice.
    Proc Natl Acad Sci U S A. 2009 Oct 6;106(40):17101-4 PMID: 19805137
  11. The 3' to 5' exonuclease activity located in the DNA polymerase delta subunit of Saccharomyces cerevisiae is required for accurate replication.
    EMBO J. 1991 Aug;10(8):2165-70 PMID: 1648480
  12. Pathway correcting DNA replication errors in Saccharomyces cerevisiae.
    EMBO J. 1993 Apr;12(4):1467-73 PMID: 8385605
  13. Germline mutations affecting the proofreading domains of POLE and POLD1 predispose to colorectal adenomas and carcinomas.
    Nat Genet. 2013 Feb;45(2):136-44 PMID: 23263490
  14. Increased rates of genomic deletions generated by mutations in the yeast gene encoding DNA polymerase delta or by decreases in the cellular levels of DNA polymerase delta.
    Mol Cell Biol. 2000 Oct;20(20):7490-504 PMID: 11003646
  15. MLH1-silenced and non-silenced subgroups of hypermutated colorectal carcinomas have distinct mutational landscapes.
    J Pathol. 2013 Jan;229(1):99-110 PMID: 22899370
  16. In vivo consequences of putative active site mutations in yeast DNA polymerases alpha, epsilon, delta, and zeta.
    Genetics. 2001 Sep;159(1):47-64 PMID: 11560886
  17. Comprehensive molecular characterization of human colon and rectal cancer.
    Nature. 2012 Jul 18;487(7407):330-7 PMID: 22810696
  18. Common variation near CDKN1A, POLD3 and SHROOM2 influences colorectal cancer risk.
    Nat Genet. 2012 May 27;44(7):770-6 PMID: 22634755
Article Info
Journal
The Journal of pathology
Abbr.
J Pathol
ISSN
1096-9896
Published
2013-06-00
Pages
148-53
Language
English
Region
England
NLM ID
0204634
PMCID
PMC3709119
Subset
IM
Grants
Wellcome Trust · 090532 · United Kingdom
Wellcome Trust · 090532/Z/09/Z · United Kingdom
Cancer Research UK · United Kingdom
Analysis Services
Analysis Services

Contact

No. 2 Wenbo Road, Zhangqiu District, Jinan, Shandong

Qilu Normal University · Genelibs Bioinformatics Lab

750 Shunhua Rd, Jinan

2F, Bldg F, University Science Park

Tel: 0531-88819269

WeChat Official Account

Follow our WeChat subscription account for real-time updates and the latest in medical and biological research.


Business Email

E-mail: [email protected]