DNA helicase
DNA polymerase is the enzyme responsible for replicating DNA by adding complementary nucleotides in the correct sequence during DNA synthesis.
DNA Helicase. - an enzyme, is responsible for unwinding and unzipping the double helix.
DNA topoisomerase I is the enzyme responsible for converting negatively supercoiled DNA into relaxed circular DNA by making a transient single-strand break in the DNA backbone.
The enzyme responsible for decoding the DNA strand into an mRNA is called RNA polymerase. It catalyzes the synthesis of mRNA during transcription by matching complementary RNA nucleotides with the DNA template strand.
The enzyme responsible for cutting DNA molecules is called a restriction enzyme.
The enzyme responsible for adding complementary DNA bases to an exposed DNA strand is DNA polymerase.
The enzyme responsible for reading DNA during transcription is called RNA polymerase.
The enzyme responsible for breaking hydrogen bonds during DNA replication is called DNA helicase.
DNA helicase
In DNA replication, DNA polymerase III is the enzyme which joins the DNA nucleotides together via phospodiester bonds.DNA Ligase is the enzyme that seals gaps in DNA during DNA Replication.DNA Ligase is the enzyme that seals gaps in DNA during DNA Replication.
Helicase is the enzyme responsible for unwinding and unzipping the double helix structure of DNA during processes such as replication and transcription.
DNA polymerase is the enzyme responsible for replicating DNA by adding complementary nucleotides in the correct sequence during DNA synthesis.
The enzyme responsible for adding nucleotides to the 3' end of a growing DNA strand is called DNA polymerase.
The enzyme responsible for incorporating new complementary DNA nucleotides into the growing strand is called DNA polymerase.
DNA Helicase. - an enzyme, is responsible for unwinding and unzipping the double helix.
DNA topoisomerase I is the enzyme responsible for converting negatively supercoiled DNA into relaxed circular DNA by making a transient single-strand break in the DNA backbone.