نتایج جستجو برای: mismatch repair system

تعداد نتایج: 2365354  

Journal: :Journal of Biological Chemistry 2005

Journal: :Annual Review of Biochemistry 2005

Journal: :Cold Spring Harbor Perspectives in Biology 2013

Journal: :Journal of bacteriology 1998
R S Harris K J Ross M J Lombardo S M Rosenberg

In vitro, the methyl-directed mismatch repair system of Escherichia coli requires the single-strand exonuclease activity of either ExoI, ExoVII, or RecJ and possibly a fourth, unknown single-strand exonuclease. We have created the first precise null mutations in genes encoding ExoI and ExoVII and find that cells lacking these nucleases and RecJ perform mismatch repair in vivo normally such that...

2013
S. A. Perevoztchikova E. A. Romanova T. S. Oretskaya P. Friedhoff E. A. Kubareva

This review is focused on the general aspects of the DNA mismatch repair (MMR) process. The key proteins of the DNA mismatch repair system are MutS and MutL. To date, their main structural and functional characteristics have been thoroughly studied. However, different opinions exist about the initial stages of the mismatch repair process with the participation of these proteins. This review aim...

Journal: :Molecular and cellular biology 2002
Nianxiang Zhang Xiaoyan Lu Xiaoshan Zhang Carolyn A Peterson Randy J Legerski

The removal of interstrand cross-links (ICLs) from DNA in higher eucaryotes is not well understood. Here, we show that processing of psoralen ICLs in mammalian cell extracts is dependent upon the mismatch repair complex hMutSbeta but is not dependent upon the hMutSalpha complex or hMlh1. The processing of psoralen ICLs is also dependent upon the nucleotide excision repair proteins Ercc1 and Xpf...

2002
A-Lien Lu Dau-Yin Chang

Six different base-pair transversion mismatches are repaired with different efficiencies in an in vitro mismatch repair system. In particular, the TIT and C/C mismatches appear to be less efficiently repaired than the A/A and G/G mismatches. Four A/G and four C/T mismatches at different positions are repaired to different extents. One of the A/G mismatches is repaired equally efficiently when D...

Journal: :Genetics 1991
M A Petit J Dimpfl M Radman H Echols

Excessive recombination between repeated, interspersed, and diverged DNA sequences is a potential source of genomic instability. We have investigated the possibility that a mechanism exists to suppress genetic exchange between these quasi-homologous (homeologous) sequences. We examined the role of the general mismatch repair system of Escherichia coli because previous work has shown that the mi...

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