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  2. DNA unwinding element - Wikipedia

    en.wikipedia.org/wiki/DNA_unwinding_element

    A DNA unwinding element (DUE or DNAUE) is the initiation site for the opening of the double helix structure of the DNA at the origin of replication for DNA synthesis. [1] It is A-T rich and denatures easily due to its low helical stability, [ 2 ] which allows the single-strand region to be recognized by origin recognition complex .

  3. DNA replication - Wikipedia

    en.wikipedia.org/wiki/DNA_replication

    As DNA synthesis continues, the original DNA strands continue to unwind on each side of the bubble, forming a replication fork with two prongs. In bacteria, which have a single origin of replication on their circular chromosome, this process creates a "theta structure" (resembling the Greek letter theta: θ). In contrast, eukaryotes have longer ...

  4. Molecular Structure of Nucleic Acids: A Structure for ...

    en.wikipedia.org/wiki/Molecular_Structure_of...

    The two base-pair complementary chains of the DNA molecule allow replication of the genetic instructions. The "specific pairing" is a key feature of the Watson and Crick model of DNA, the pairing of nucleotide subunits. [5] In DNA, the amount of guanine is equal to cytosine and the amount of adenine is equal to thymine. The A:T and C:G pairs ...

  5. Eukaryotic DNA replication - Wikipedia

    en.wikipedia.org/wiki/Eukaryotic_DNA_replication

    DNA replication on the lagging strand is discontinuous. In lagging strand synthesis, the movement of DNA polymerase in the opposite direction of the replication fork requires the use of multiple RNA primers. DNA polymerase will synthesize short fragments of DNA called Okazaki fragments which are added to the 3' end of the primer. These ...

  6. DNA synthesis - Wikipedia

    en.wikipedia.org/wiki/DNA_synthesis

    DNA replication also works by using a DNA template, the DNA double helix unwinds during replication, exposing unpaired bases for new nucleotides to hydrogen bond to. Gene synthesis, however, does not require a DNA template and genes are assembled de novo. DNA synthesis occurs in all eukaryotes and prokaryotes, as well as some viruses. The ...

  7. Helicase - Wikipedia

    en.wikipedia.org/wiki/Helicase

    Below is a history of helicase discovery: 1976 – Discovery and isolation of E. coli-based DNA helicase [13] 1978 – Discovery of the first eukaryotic DNA helicases, isolated from the lily plant [14] 1982 – "T4 gene 41 protein" is the first reported bacteriophage DNA helicase [15] 1985 – First mammalian DNA helicases isolated from calf ...

  8. DNA gyrase - Wikipedia

    en.wikipedia.org/wiki/DNA_gyrase

    DNA gyrase, or simply gyrase, is an enzyme within the class of topoisomerase and is a subclass of Type II topoisomerases [1] that reduces topological strain in an ATP dependent manner while double-stranded DNA is being unwound by elongating RNA-polymerase [2] or by helicase in front of the progressing replication fork.

  9. DNA glycosylase - Wikipedia

    en.wikipedia.org/wiki/DNA_glycosylase

    There are two main classes of glycosylases: monofunctional and bifunctional. Monofunctional glycosylases have only glycosylase activity, whereas bifunctional glycosylases also possess AP lyase activity that permits them to cut the phosphodiester bond of DNA, creating a single-strand break without the need for an AP endonuclease.