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  2. DNA polymerase III holoenzyme - Wikipedia

    en.wikipedia.org/wiki/DNA_polymerase_III_holoenzyme

    1 γ unit (also dnaX) which acts as a clamp loader for the lagging strand Okazaki fragments, helping the two β subunits to form a unit and bind to DNA. The γ unit is made up of 5 γ subunits which include 3 γ subunits, 1 δ subunit , and 1 δ' subunit . The δ is involved in copying of the lagging strand.

  3. DNA replication - Wikipedia

    en.wikipedia.org/wiki/DNA_replication

    DNA is read by DNA polymerase in the 3′ to 5′ direction, meaning the new strand is synthesized in the 5' to 3' direction. Since the leading and lagging strand templates are oriented in opposite directions at the replication fork, a major issue is how to achieve synthesis of new lagging strand DNA, whose direction of synthesis is opposite to ...

  4. DNA polymerase III subunit gamma/tau - Wikipedia

    en.wikipedia.org/wiki/DNA_polymerase_III_subunit...

    The τ and γ subunits are part of the DNA polymerase III holoenzyme of prokaryotes. The protein family is characterized by the well-conserved first N-terminal domain, approx. 365 amino acids. The eukaryotic equivalent to the DNA clamp loader is replication factor C, with the subunits RFC1, RFC2, RFC3, RFC4, and RFC5.

  5. DNA polymerase - Wikipedia

    en.wikipedia.org/wiki/DNA_polymerase

    Since DNA polymerase requires a free 3' OH group for initiation of synthesis, it can synthesize in only one direction by extending the 3' end of the preexisting nucleotide chain. Hence, DNA polymerase moves along the template strand in a 3'–5' direction, and the daughter strand is formed in a 5'–3' direction.

  6. dnaQ - Wikipedia

    en.wikipedia.org/wiki/DnaQ

    dnaQ is the gene encoding the ε subunit of DNA polymerase III in Escherichia coli. [1] The ε subunit is one of three core proteins in the DNA polymerase complex. It functions as a 3’→5’ DNA directed proofreading exonuclease that removes incorrectly incorporated bases during replication. [2] dnaQ may also be referred to as mutD. [3]

  7. Site-specific recombination - Wikipedia

    en.wikipedia.org/wiki/Site-specific_recombination

    The mechanism occurs in the framework of a synaptic complex (1) including both DNA sites in parallel orientation. While branch-migration explains the specific homology requirements and the reversibility of the process in a straightforward manner, it cannot be reconciled with the motions recombinase subunits have to undergo in three dimensions.

  8. Nucleoside triphosphate - Wikipedia

    en.wikipedia.org/wiki/Nucleoside_triphosphate

    Nucleic acid synthesis is catalyzed by either DNA polymerase or RNA polymerase for DNA and RNA synthesis respectively. [16] These enzymes covalently link the free -OH group on the 3carbon of a growing chain of nucleotides to the α-phosphate on the 5’ carbon of the next (d)NTP, releasing the β- and γ-phosphate groups as pyrophosphate ...

  9. dNA polymerase III, delta subunit - Wikipedia

    en.wikipedia.org/wiki/DNA_polymerase_III,_delta...

    In molecular biology, the δ (delta) subunit of DNA polymerase III is encoded by the holA gene in E. coli and other bacteria. Along with the γ, δ', χ, and ψ subunits that make up the core polymerase, and the β accessory proteins, the δ subunit is responsible for the high speed and processivity of polIII. [1] [2]