DNA sequence undergoes transcription, then translation process in order to determine and subsequently produce the amino acid sequence. The four bases specifically A,C,G, & T are the main coding sequence of a DNA. Because each coding sequence is unique, the resulting amino acid sequence is also unique as well.
A change in a nucleotide base sequence is known as a point mutation, this is when one of the bases(A,T,C,G) is swapped with another. This causes for the amino acid to change, which can change the function of the amino acid chain.
From nucleic acids to amino acids. Transcription copies the nucleotide sequence of DNA into RNA; in translation ribosomes recreate the messenger-RNA pattern into a copy of the sequence.
mRNA has the codon sequence that exactly correspond to the amino acid sequence. The DNA has two strands. Though one of the strands (coding strand) carries the same information as on the mRNA, it contains unspliced introns that will mess up the amino acid sequence.
one amino acid in the sequence would change
A nucleotide does not contain an organic acid.A nucleotide is similar to a nucleoside but does not contain a polymerase.
The genetic code refers to the nucleotide triplets of DNA and RNA molecules that carry genetic information. It specifies the correlation between an RNA-nucleotide sequence, as well as an amino-acid sequence.
The sequence of amino acids in a protein is determined by the sequence of nucleotides in the mRNA, and this is determined by the sequence of nucleotide bases in the DNA.
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A change in a nucleotide base sequence is known as a point mutation, this is when one of the bases(A,T,C,G) is swapped with another. This causes for the amino acid to change, which can change the function of the amino acid chain.
the three nucleotides on a mRNA that codes for a amino acid is called a codon
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Codon
The DNA sequence will determine the amino acid sequence known as the protein's primary structure. As the protein is folded into the secondary, tertiary and quatranary structures, the amino acid molecules will determine the shape
The DNA sequence will determine the amino acid sequence known as the protein's primary structure. As the protein is folded into the secondary, tertiary and quatranary structures, the amino acid molecules will determine the shape
Amino Acid and Polymerase
From nucleic acids to amino acids. Transcription copies the nucleotide sequence of DNA into RNA; in translation ribosomes recreate the messenger-RNA pattern into a copy of the sequence.