8.12
Mismatched base pairs, such as adenine with cytosine, can sometimes escape proofreading during replication and are later fixed through the process of mismatch repair.
In E. coli, the mismatch recognition protein, MutS, identifies mismatched bases due to their abnormal structure.
It then recruits MutL and forms the MutS-MutL complex. This activated complex stimulates MutH, an endonuclease, to nick the newly synthesized strand.
Genomic DNA in E. coli usually has methyl groups attached at specific sites. However, there is a certain time delay before a newly synthesized strand is methylated.
This allows the repair complex to identify the new strand based on its methylation status, and MutH nicks it at the nearest unmethylated site, while the template strand remains unchanged.
A helicase unwinds the cleaved DNA segment from the template strand. An exonuclease hydrolyses the erroneous region, thus, leaving a gap in the new strand.
Finally, DNA polymerase fills the gap with the correct nucleotides, and DNA ligase seals the nick, repairing the error.
Organisms are capable of detecting and fixing nucleotide mismatches that occur during DNA replication. This sophisticated process requires identifying…
Copyright © 2026 MyJoVE Corporation. All rights reserved.