The nucleotide sequence of the mRNA strand is determined by the DNA template strand during transcription. If the DNA template sequence is, for example, 3'-ATCGTAGC-5', the corresponding mRNA sequence synthesized would be 5'-UAGCAUCG-3'. The mRNA sequence consists of complementary RNA nucleotides, where adenine (A) pairs with uracil (U) and cytosine (C) pairs with guanine (G).
Ribosomes move along the mRNA during protein synthesis. They help bring together amino acids to form a peptide strand based on the nucleotide sequence of the mRNA.
mRNA copies the nucleotide sequence of DNA through a process called transcription. During transcription, the enzyme RNA polymerase reads the DNA template and synthesizes a complementary strand of mRNA by adding nucleotides in a sequence that corresponds to the DNA template. This mRNA molecule serves as a messenger to carry the genetic information from the DNA to the ribosomes for protein synthesis.
The mRNA will have codons AUG-CCA-GUA-GGC-CAC
The strand running in the 3'-5' end will be the one that RNA copies, as this is the direction of transcription
The nucleotide sequence of the mRNA strand is determined by the DNA template strand during transcription. If the DNA template sequence is, for example, 3'-ATCGTAGC-5', the corresponding mRNA sequence synthesized would be 5'-UAGCAUCG-3'. The mRNA sequence consists of complementary RNA nucleotides, where adenine (A) pairs with uracil (U) and cytosine (C) pairs with guanine (G).
mRNA contains uracil in its nucleotide sequence, not thymine.
No, mRNA does not contain thymine in its nucleotide sequence. Instead, mRNA contains uracil in place of thymine.
Ribosomes move along the mRNA during protein synthesis. They help bring together amino acids to form a peptide strand based on the nucleotide sequence of the mRNA.
DNA Strand: AATTGC mRNA Strand: UUAACG I don't know what the circle a nucleotide part means
The sense strand of DNA is the strand that has the same sequence as the mRNA that is transcribed from DNA. The antisense strand is the complementary strand of the sense strand, which is used as a template for mRNA synthesis. The mRNA is transcribed from the antisense strand and contains the same sequence as the sense strand.
The complimentary strand of MRNA would be AAUUCCGG.
mRNA copies the nucleotide sequence of DNA through a process called transcription. During transcription, the enzyme RNA polymerase reads the DNA template and synthesizes a complementary strand of mRNA by adding nucleotides in a sequence that corresponds to the DNA template. This mRNA molecule serves as a messenger to carry the genetic information from the DNA to the ribosomes for protein synthesis.
Uracil pairs with adenine in mRNA and replaces thymine in the DNA strand during transcription.
The new mRNA strand produced by a mutated gene may contain errors in the sequence due to a change in the gene's DNA sequence. This can lead to changes in the resulting protein, affecting its structure or function. Mutations can range from single nucleotide changes to large deletions or insertions, altering the mRNA sequence accordingly.
A mutation in a DNA nucleotide sequence would be more harmful than a mutation in a mRNA nucleotide sequence because it could cause the synthesis of multiple nonfunctional proteins in comparison to a mutation in a mRNA nucleotide sequence that would be less harmful because it would result in a few nonfunctional proteins.
The mRNA sequence generated from the DNA strand tgacgca would be acugcgu. This is because mRNA is complementary to the DNA template strand, so DNA base T pairs with mRNA base A, DNA base G pairs with mRNA base C, DNA base A pairs with mRNA base U, and DNA base C pairs with mRNA base G.