Implications for damage recognition during Dpo4-mediated mutagenic bypass of m1G and m3C lesions Journal Article


Authors: Rechkoblit, O.; Delaney, J. C.; Essigmann, J. M.; Patel, D. J.
Article Title: Implications for damage recognition during Dpo4-mediated mutagenic bypass of m1G and m3C lesions
Abstract: DNA is susceptible to alkylation damage by a number of environmental agents that modify the Watson-Crick edge of the bases. Such lesions, if not repaired, may be bypassed by Y-family DNA polymerases. The bypass polymerase Dpo4 is strongly inhibited by 1-methylguanine (m1G) and 3-methylcytosine (m3C), with nucleotide incorporation opposite these lesions being predominantly mutagenic. Further, extension after insertion of both correct and incorrect bases, introduces additional base substitution and deletion errors. Crystal structures of the Dpo4 ternary extension complexes with correct and mismatched 3′-terminal primer bases opposite the lesions reveal that both m1G and m3C remain positioned within the DNA template/primer helix. However, both correct and incorrect pairing partners exhibit pronounced primer terminal nucleotide distortion, being primarily evicted from the DNA helix when opposite m1G or misaligned when pairing with m3C. Our studies provide insights into mechanisms related to hindered and mutagenic bypass of methylated lesions and models associated with damage recognition by repair demethylases. © 2011 Elsevier Ltd.
Journal Title: Structure
Volume: 19
Issue: 6
ISSN: 0969-2126
Publisher: Cell Press  
Date Published: 2011-06-08
Start Page: 821
End Page: 832
Language: English
DOI: 10.1016/j.str.2011.03.020
PROVIDER: scopus
PUBMED: 21645853
PMCID: PMC3744880
DOI/URL:
Notes: --- - "Export Date: 23 June 2011" - "CODEN: STRUE" - "Source: Scopus"
Altmetric
Citation Impact
BMJ Impact Analytics
MSK Authors
  1. Dinshaw J Patel
    477 Patel