Journal article icon

Journal article

DNA mismatch repair preferentially protects genes from mutation

Abstract:
Mutation is the source of genetic variation and fuels biological evolution. Many mutations first arise as DNA replication errors. These errors subsequently evade correction by cellular DNA repair, for example, by the well-known DNA mismatch repair (MMR) mechanism. Here, we determine the genome-wide effects of MMR on mutation. We first identify almost 9000 mutations accumulated over five generations in eight MMR-deficient mutation accumulation (MA) lines of the model plant species, Arabidopsis thaliana. We then show that MMR deficiency greatly increases the frequency of both smaller-scale insertions and deletions (indels) and of single-nucleotide variant (SNV) mutations. Most indels involve A or T nucleotides and occur preferentially in homopolymeric (poly A or poly T) genomic stretches. In addition, we find that the likelihood of occurrence of indels in homopolymeric stretches is strongly related to stretch length, and that this relationship causes ultrahigh localized mutation rates in specific homopolymeric stretch regions. For SNVs, we show that MMR deficiency both increases their frequency and changes their molecular mutational spectrum, causing further enhancement of the GC to AT bias characteristic of organisms with normal MMR function. Our final genome-wide analyses show that MMR deficiency disproportionately increases the numbers of SNVs in genes, rather than in nongenic regions of the genome. This latter observation indicates that MMR preferentially protects genes from mutation and has important consequences for understanding the evolution of genomes during both natural selection and human tumor growth.
Publication status:
Published
Peer review status:
Peer reviewed

Actions

Access Document

Files:
Publisher copy:
10.1101/gr.219303.116

Authors

More by this author
Institution:
University of Oxford
Department:
Plant Sciences
Role:
Author
More by this author
Institution:
University of Oxford
Department:
Plant Sciences
Role:
Author


Publisher:
Cold Spring Harbor Laboratory Press
Journal:
Genome Research More from this journal
Volume:
28
Issue:
1
Pages:
66-74
Publication date:
2017-12-12
Acceptance date:
2017-11-20
DOI:
EISSN:
1549-5469
ISSN:
1088-9051


Language:
English
Keywords:
Pubs id:
pubs:810330
UUID:
uuid:8042b780-f04f-4bc9-b907-d49cb84fc132
Local pid:
pubs:810330
Source identifiers:
810330
Deposit date:
2017-12-11
ARK identifier:

Terms of use


Views and Downloads






If you are the owner of this record, you can report an update to it here: Report update to this record

TO TOP