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Published on: March 31, 2022
Microsatellite instability: an indirect assay to detect defects in the cellular mismatch repair machinery
Narendra K Bairwa1, Anjana Saha, Sailesh Gochhait
1National Centre of Applied Human Genetics, Jawaharlal Nehru University, Delhi, India.
Abstract:
The DNA mismatch repair (MMR) pathway plays a prominent role in the correction of errors made during DNA replication and genetic recombination and in the repair of small deletions and loops in DNA. Mismatched nucleotides can occur by replication errors, damage to nucleotide precursors, damage to DNA, or during heteroduplex formation between two homologous DNA molecules in the process of genetic recombination. Defects in MMR can precipitate instability in simple sequence repeats (SSRs), also referred to as microsatellite instability (MSI), which appears to be important in certain types of cancers, both spontaneous and hereditary. Variations in the highly polymorphic alleles of specific microsatellite repeats can be identified using PCR with primers derived from the unique flanking sequences. These PCR products are analyzed on denaturing polyacrylamide gels to resolve differences in allele sizes of >2 bp. Although (CA)n repeats are the most abundant class among dinucleotide SSRs, trinucleotide and tetranucleotide repeats are also frequent. These polymorphic repeats have the advantage of producing band patterns that are easy to analyze and can be used as an indication of a possible MMR defect in a cell. The presumed association between such allelic variation and an MMR defect should be confirmed by molecular analysis of the structure and/or expression of MMR genes.
Insights
DNA mismatch repair (MMR) corrects replication errors and prevents microsatellite instability (MSI). Analyzing polymorphic microsatellite repeats via PCR can indicate MMR defects, guiding further molecular investigation.
Area of Science:
- Molecular Biology
- Genetics
- Cancer Research
Background:
- The DNA mismatch repair (MMR) pathway is crucial for correcting DNA replication errors and genetic recombination.
- Defects in MMR lead to microsatellite instability (MSI), a hallmark of certain spontaneous and hereditary cancers.
Purpose of the Study:
- To investigate the utility of analyzing polymorphic microsatellite repeats as an indicator of DNA mismatch repair (MMR) defects.
- To highlight the association between microsatellite instability and potential MMR pathway deficiencies.
Main Methods:
- Utilizing Polymerase Chain Reaction (PCR) with specific primers to amplify highly polymorphic microsatellite repeat alleles.
- Analyzing PCR products on denaturing polyacrylamide gels to detect size variations (≥2 bp) in microsatellite repeats.
Main Results:
- Polymorphic microsatellite repeats, including dinucleotide (e.g., (CA)n), trinucleotide, and tetranucleotide repeats, exhibit variations indicative of potential MMR defects.
- The analysis of these allelic variations provides an accessible method for identifying cells with possible MMR deficiencies.
Conclusions:
- Allelic variation in microsatellite repeats serves as a valuable preliminary indicator of DNA mismatch repair (MMR) pathway defects.
- Confirmation of MMR defects requires subsequent molecular analysis of MMR gene structure and/or expression.
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