Yes, in transcription, a segment of one strand of double-stranded DNA serves as a template for synthesizing a new RNA molecule. The enzyme RNA polymerase binds to the DNA template strand and synthesizes the RNA by adding complementary RNA nucleotides. This process results in the formation of a single-stranded RNA molecule that is complementary to the DNA template.
The template used in transcription is the DNA molecule. During transcription, a segment of DNA is copied into a complementary RNA sequence by RNA polymerase. This RNA molecule serves as a template for protein synthesis during translation.
Transcription is the process that involves RNA polymerase. During transcription, RNA polymerase binds to a DNA template and synthesizes a complementary RNA molecule. This RNA molecule serves as a template for protein synthesis.
Transcription. During transcription, an enzyme called RNA polymerase reads the DNA sequence and synthesizes a complementary RNA molecule. This RNA molecule serves as a template for protein synthesis.
The process is called transcription. In transcription, RNA polymerase synthesizes a complementary RNA molecule based on a DNA template.
During transcription, RNA polymerase binds to the DNA template strand and synthesizes a complementary RNA strand by adding nucleotides base-paired with the DNA template. The nucleotides are linked together, forming a single-stranded RNA molecule that is complementary to the DNA template. The process ends when RNA polymerase reaches a termination signal on the DNA template.
The template used in transcription is the DNA molecule. During transcription, a segment of DNA is copied into a complementary RNA sequence by RNA polymerase. This RNA molecule serves as a template for protein synthesis during translation.
Template Strand
The process in which a mRNA molecule forms (by base-pairing) along a part of a DNA molecule is called transcription.
Transcription is the process that involves RNA polymerase. During transcription, RNA polymerase binds to a DNA template and synthesizes a complementary RNA molecule. This RNA molecule serves as a template for protein synthesis.
Asymmetrical transcription means that only one strand of the DNA molecule is used as template for the enzymatic formation of RNA.
Transcription. During transcription, an enzyme called RNA polymerase reads the DNA sequence and synthesizes a complementary RNA molecule. This RNA molecule serves as a template for protein synthesis.
Reverse transcription is the process of synthesizing a DNA molecule from an RNA template. In this process, a reverse transcriptase enzyme catalyzes the formation of DNA nucleotides in the 5' to 3' direction, complementary to the RNA template. This results in the creation of a DNA molecule that is a copy of the original RNA molecule.
The process is called transcription. In transcription, RNA polymerase synthesizes a complementary RNA molecule based on a DNA template.
If a strand of DNA has the sequence aagctc, transcription will result in a mRNA molecule with the complementary sequence uucgag. Transcription is the process of creating a mRNA molecule using DNA as a template.
transcription
Transcription. In transcription, the DNA sequence is used as a template to synthesize an RNA molecule, which carries genetic information for protein synthesis.
Transcription produces MRNA.