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  2. Primase - Wikipedia

    en.wikipedia.org/wiki/Primase

    There are two main types of primase: DnaG found in most bacteria, and the AEP (Archaeo-Eukaryote Primase) superfamily found in archaean and eukaryotic primases. While bacterial primases (DnaG-type) are composed of a single protein unit (a monomer) and synthesize RNA primers, AEP primases are usually composed of two different primase units (a heterodimer) and synthesize two-part primers with ...

  3. DnaG - Wikipedia

    en.wikipedia.org/wiki/DnaG

    The E. Coli DnaG primase is a 581 residue monomeric protein with three functional domains, according to proteolysis studies. There is an N-terminal Zinc-binding domain (residues 1–110) where a zinc ion is tetrahedrally coordinated between one histidine and three cysteine residues, which plays a role in recognizing sequence specific DNA binding sites.

  4. Primer (molecular biology) - Wikipedia

    en.wikipedia.org/wiki/Primer_(molecular_biology)

    The free NCBI tool Primer-BLAST integrates primer design and BLAST search into one application, [6] as do commercial software products such as ePrime and Beacon Designer. Computer simulations of theoretical PCR results ( Electronic PCR ) may be performed to assist in primer design by giving melting and annealing temperatures, etc. [ 7 ]

  5. PrimPol - Wikipedia

    en.wikipedia.org/wiki/Primpol

    PrimPol was identified in a bioinformatic study and initially presumed to only have primase activity. [8] Subsequent in vitro and in vivo studies have shown it to have both primase and polymerase activities that both localise to the catalytic domain of PrimPol. [6] [7] [9] For that reason, this protein was assigned the name PrimPol.

  6. DNA polymerase alpha catalytic subunit - Wikipedia

    en.wikipedia.org/wiki/DNA_polymerase_alpha...

    This gene encodes the p180 catalytic subunit of DNA polymerase α-primase. Pol α has limited processivity and lacks 3′ exonuclease activity for proofreading errors. Thus it is not well suited to efficiently and accurately copy long templates (unlike Pol Delta and Epsilon). Instead it plays a more limited role in replication.

  7. Replisome - Wikipedia

    en.wikipedia.org/wiki/Replisome

    Research has found that clamp loading and sliding clamp factors are absolutely essential to replication, which explains the high degree of structural conservation observed for clamp loading and sliding clamp factors. This architectural and structural conservation is seen in organisms as diverse as bacteria, phages, yeast, and humans.

  8. RNA-dependent RNA polymerase - Wikipedia

    en.wikipedia.org/wiki/RNA-dependent_RNA_polymerase

    RNA-dependent RNA polymerase (RdRp) or RNA replicase is an enzyme that catalyzes the replication of RNA from an RNA template. Specifically, it catalyzes synthesis of the RNA strand complementary to a given RNA template.

  9. Polymerase - Wikipedia

    en.wikipedia.org/wiki/Polymerase

    Structure of Taq DNA polymerase. In biochemistry, a polymerase is an enzyme (EC 2.7.7.6/7/19/48/49) that synthesizes long chains of polymers or nucleic acids. DNA polymerase and RNA polymerase are used to assemble DNA and RNA molecules, respectively, by copying a DNA template strand using base-pairing interactions or RNA by half ladder replication.