13.5
Prokaryotic DNA replication ensures that genetic material is accurately passed to daughter cells during cell division.
It begins when initiator proteins bind to the origin of replication, a specific DNA sequence, and form a complex.
This binding locally unwinds the DNA at the origin, creating a small opening in the double helix.
Then, the enzyme DNA helicase binds to the complex and unwinds the DNA further, forming a replication bubble.
The newly exposed strands are stabilized by single-stranded DNA-binding proteins.
The replication bubble now contains two replication forks that move in opposite directions.
Ahead of the forks, topoisomerase enzymes bind to the DNA and reduce torsional strain as the molecule unwinds.
Once the strands are separated, another enzyme, primase, synthesizes an RNA primer, which is a short stretch of RNA that is complementary to the DNA sequence.
The primer provides a starting point where DNA polymerase can add nucleotides that match the template strand and create a new DNA strand during elongation.
DNA polymerase III synthesizes DNA in the five-prime to three-prime direction, so synthesis of this strand, called the leading strand, proceeds continuously.
The other s
DNA replication has three main steps: initiation, elongation, and termination. Replication in prokaryotes begins when initiator proteins bind to the s…
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