mRNA is transcribed in a 5' to 3' direction from a DNA template.
When the template strand of DNA is read from 3' to 5', DNA synthesis occurs in the 5' to 3' direction.
The template strand is used as a guide to create mRNA during transcription. The mRNA is complementary to the template strand and carries the genetic information from the DNA to the ribosome for protein synthesis.
Messenger RNA (mRNA) is the form of RNA that serves as a template for protein synthesis. It is transcribed from DNA inside the nucleus and carries the genetic information to the ribosomes in the cytoplasm where translation occurs to produce proteins.
The strand of DNA that is not transcribed is called the coding strand. This strand serves as the template for mRNA synthesis during transcription. The opposite strand, which is transcribed into mRNA, is known as the template strand.
A. rRNA Type of RNA molecule transcribed from a DNA template B. codon Sequence of three nucleotides on a messenger RNA molecule C. tRNA RNA component of ribosomes D. anticodon Connects mRNA codon to an amino acid E.mRNA Sequence of three nucleotides on a transfer RNA molecule
The template strand is also referred to as the antisense strand because its sequence is complementary to the mRNA transcript that is eventually produced during transcription. While the mRNA transcript is in the sense orientation with codons that can be translated into proteins, the template strand is read in the antisense orientation to ensure accurate base pairing during transcription.
When the template strand of DNA is read from 3' to 5', DNA synthesis occurs in the 5' to 3' direction.
Through mRNA transcribed on DNA template and carried to the cytoplasm.
This process is Highly Controlled, and the Answer is 'from one to many many'.
The template strand is used as a guide to create mRNA during transcription. The mRNA is complementary to the template strand and carries the genetic information from the DNA to the ribosome for protein synthesis.
Messenger RNA (mRNA) is the form of RNA that serves as a template for protein synthesis. It is transcribed from DNA inside the nucleus and carries the genetic information to the ribosomes in the cytoplasm where translation occurs to produce proteins.
The strand of DNA that is not transcribed is called the coding strand. This strand serves as the template for mRNA synthesis during transcription. The opposite strand, which is transcribed into mRNA, is known as the template strand.
A. rRNA Type of RNA molecule transcribed from a DNA template B. codon Sequence of three nucleotides on a messenger RNA molecule C. tRNA RNA component of ribosomes D. anticodon Connects mRNA codon to an amino acid E.mRNA Sequence of three nucleotides on a transfer RNA molecule
The top strand, which is drawn 5' to 3' and which contains the promoter sequences in the conventionally written orientation (such as the TATA box) and which has the same sequence as the new RNA (except for U instead of T) is the plus strand or the sense strand or the non template strand or the coding strand. The bottom 3' to 5' strand is the minus, or template, or antisense strand. Your sequence therefore is the coding strand, but the RNA is transcribed off of the non-coding, template, or antisense strand.
The blueprint for the polypeptide chain of insulin is found in the DNA, specifically within the gene responsible for encoding insulin. This gene is located in the nucleus of the cell. The genetic information in the DNA is transcribed into messenger RNA, which then serves as the template for protein synthesis.
The difference between the coding strand and the template strand is the coding strand is the strand which contains the coding genes, i.e. the one in which the RNA polymerase reads and transcribes into mRNA. It must have the promoter sequence in the correct orientation for transcription, as follows:5`-TATAATGCGCGCGCGCGCGCGCGC-3`3`-ATATTACGCGCGCGCGCGCGCGCG-5`In this sequence, the top strand is the coding strand, because it contains the promoter (TATAAT) in the correct orientation.However, when transcribed, the mRNA will be as follows:5`-GCGCGCGCGCGCGCGCGCGC-3`This is because the polymerase transcribes from the template strand, on the opposide side to the coding strand, to make it in the same orientation as the coding strand.I hope I have explained it enough for people to understand, however if I haven't please read this article I found which explains it thoroughly:http://www.bio.net/bionet/mm/bioforum/1994-May/008821.html
DNA sequences are transcribed into messenger RNA (mRNA) during the process of protein synthesis. This mRNA serves as a template for ribosomes to synthesize proteins based on the genetic code encoded in the DNA.