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  2. Helicase - Wikipedia

    en.wikipedia.org/wiki/Helicase

    The human genome codes for 95 non-redundant helicases: 64 RNA helicases and 31 DNA helicases. [2] Many cellular processes, such as DNA replication , transcription , translation , recombination , DNA repair , and ribosome biogenesis involve the separation of nucleic acid strands that necessitates the use of helicases.

  3. DNA-dependent ATPase - Wikipedia

    en.wikipedia.org/wiki/DNA-dependent_ATPase

    DNA-dependent ATPase, abbreviated Dda and also known as Dda helicase and Dda DNA helicase, is the 439-amino acid 49,897-atomic mass unit protein coded by the Dda gene of the bacteriophage T4 phage, a virus that infects enterobacteria.

  4. Werner syndrome helicase - Wikipedia

    en.wikipedia.org/wiki/Werner_syndrome_helicase

    Werner syndrome ATP-dependent helicase, also known as DNA helicase, RecQ-like type 3, is an enzyme that in humans is encoded by the WRN gene. WRN is a member of the RecQ Helicase family. [ 5 ] Helicase enzymes generally unwind and separate double-stranded DNA .

  5. Eukaryotic DNA replication - Wikipedia

    en.wikipedia.org/wiki/Eukaryotic_DNA_replication

    To synthesize DNA, the double-stranded DNA is unwound by DNA helicases ahead of polymerases, forming a replication fork containing two single-stranded templates. Replication processes permit copying a single DNA double helix into two DNA helices, which are divided into the daughter cells at mitosis .

  6. DnaA - Wikipedia

    en.wikipedia.org/wiki/DnaA

    DnaC helps the helicase to bind to and to properly accommodate the ssDNA at the 13 bp region; this is accomplished by ATP hydrolysis, after which DnaC is released. Single-strand binding proteins (SSBs) stabilize the single DNA strands in order to maintain the replication bubble. DnaB is a 5'→3' helicase, so it travels on the lagging strand.

  7. Helicase-dependent amplification - Wikipedia

    en.wikipedia.org/wiki/Helicase-dependent...

    The polymerase chain reaction is the most widely used method for in vitro DNA amplification for purposes of molecular biology and biomedical research. [1] This process involves the separation of the double-stranded DNA in high heat into single strands (the denaturation step, typically achieved at 95–97 °C), annealing of the primers to the single stranded DNA (the annealing step) and copying ...

  8. DNA mismatch repair - Wikipedia

    en.wikipedia.org/wiki/DNA_mismatch_repair

    Upon activation by the MutS-DNA complex, MutH nicks the daughter strand near the hemimethylated site. MutL recruits UvrD helicase (DNA Helicase II) to separate the two strands with a specific 3' to 5' polarity. The entire MutSHL complex then slides along the DNA in the direction of the mismatch, liberating the strand to be excised as it goes.

  9. Origin recognition complex - Wikipedia

    en.wikipedia.org/wiki/Origin_Recognition_Complex

    When Mcm2-7 is first loaded it completely encircles the DNA and helicase activity is inhibited. In S phase, the Mcm2-7 complex interacts with helicase cofactors Cdc45 and GINS to isolate a single DNA strand, unwind the origin, and begin replication down the chromosome. In order to have bidirectional replication, this process happens twice at an ...