heteroduplexes
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thumb|300px|A current model of meiotic recombination, initiated by a double-strand break or gap, followed by pairing with a homologous chromosome and strand invasion to initiate the recombinational repair process. Repair of the gap can lead to crossover (CO) or non-crossover (NCO) of the flanking regions. CO recombination is thought to occur by the Double Holliday Junction (DHJ) model, illustrated on the right, above. NCO recombinants are thought to occur primarily by the Synthesis Dependent Strand Annealing (SDSA) model, illustrated on the left, above. Most recombination events appear to be t
Research
6,750 papers- DNA electron microscopy.CRC critical reviews in biochemistry · 1981
- Repair tracts in mismatched DNA heteroduplexes.Proceedings of the National Academy of Sciences of the United States of America · 1976
- Mismatch repair and homeologous recombination.DNA repair · 2016
- Detection of mutations by cleavage of DNA heteroduplexes with bacteriophage resolvases.Nature genetics · 1995
- Assembling long heteroduplexes by asymmetric polymerase chain reaction and annealing the resulting single-stranded DNAs.Analytical biochemistry · 2015
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Encyclopedic overview
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thumb|300px|A current model of meiotic recombination, initiated by a double-strand break or gap, followed by pairing with a homologous chromosome and strand invasion to initiate the recombinational repair process. Repair of the gap can lead to crossover (CO) or non-crossover (NCO) of the flanking regions. CO recombination is thought to occur by the Double Holliday Junction (DHJ) model, illustrated on the right, above. NCO recombinants are thought to occur primarily by the Synthesis Dependent Strand Annealing (SDSA) model, illustrated on the left, above. Most recombination events appear to be the SDSA type. At various steps of the recombination process, heteroduplex DNA (double-stranded DNA consisting of single strands from each of the two homologous chromosomes) is formed. A heteroduplex is a double-stranded (duplex) molecule of nucleic acid originated through the genetic recombination of single complementary strands derived from different sources, such as from different homologous chromosomes or even from different organisms.
One such example is the heteroduplex DNA strand formed in hybridization processes, usually for biochemistry-based phylogenetic analyses. Another is the heteroduplexes formed when non-natural analogs of nucleic acids are used to bind with nucleic acids; these heteroduplexes result from performing antisense techniques using single-stranded peptide nucleic acid, 2'-O-methyl phosphorothioate or Morpholino oligos to bind with RNA.
Excerpted from Wikipedia’s “heteroduplexes” article, available under the CC BY-SA 4.0 licence.