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If the sequence in the coding strand of DNA for a particular amino acid is 5'AGT3', then the anticodon on the corresponding tRNA would be ? Explain how to do this
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- A tRNA has an anticodon sequence 3′– GGU–5′. Identify the amino acidit is carrying?A series of tRNAs have the following anticodons. Consider the wobble rules listed in Table and give all possible codons with which each tRNA can pair. Q. 5′ –AAG–3′Using the codon table, identify a 5’-3’ sequence of nucleotides in the dna template strand for mRna coding for the polypeptide sequence NH2-PHe-Pro-lys-COOH.
- If a tRNA molecule carries a glutamic acid, what are the two possible anticodon sequences that it could contain? Be specific about the 5′ and 3′ ends.The template strand of a segment of double-helical DNA contains the sequence – 5’-CTT-AAC-ACC-CCT-GAC-TTC-GCG-CCG-CAT-3’ a. What is the base sequence of the complementary strand of DNA? Indicate the 5’ and the 3’ ends. b. What is the base sequence of the mRNA that can be transcribed from this template DNA strand? Indicate the 5’ and the 3’ ends. c. What amino acid sequence can be coded by the mRNA in (b) starting from the 5’ end (or the N terminal amino acid)?A tRNA has an anticodon sequence 3′–GGU–5′. What amino acid does it carry?
- An enzyme isolated from rat liver has 193 amino acids and is encoded by a 1440 base pair long gene. Explain the connection between the amino acid number of the enzyme and the number of nucleotide pairs in its gene.Consider the following DNA sequence, which codes for a short polypeptide: 5'-ATGGGCTTAGCGTAGGTTAGT-3' Determine the mRNA transcript of this sequence. You have to write these sequences from the 5' end to the 3' end and indicate those ends as shown in the original sequence in order to get the full mark. How many amino acids will make up this polypeptide? Determine the first four anticodons that will be used in order to translate this sequence.Consider the following wild-type double-stranded DNA sequence: 5' TATGAA AGT3 non-transcribed strand (sense strand) 5' 3' ATACTTTCA transcribed strand In the space below, write ONE of the possible DNA sequences of the transcribed strand shown above that results from BOTH a single substitution mutation of the first codon following the start codon that would also cause a nonsense mutation. Use the mRNA codon chart in the Appendix of your manual to help you. Answer: Check
- The enzyme thiouridylase converts certain tRNA uridine residues to 2-thiouridine. Draw the structure of this modified nucleotide.Determine the sequence of amino acids specified by the codons in the following information strand. AGG TCT TCA GGG AAT GCC TGG CGA GAG GGG AGC AGC TGG TAT CGC TGG GCC САА Then determine the sequence of amino acids if an insertion occurred to the left of the first adenosine and changed the reading frame as shown below. Notice that (1) the insertion is shown on the left by the lower-case “i", and (2) the bases are still in the same sequence; they are just shifted so that they are read differently. IAG GTC TTC AGG GAA TGC СTG GCG AGA GGG GAG CAG СTG GTA TCG CTG GGC CCA Suppose a single-nucleotide polymorphism occurred in the original strand to make the change shown below. Would this affect the resulting protein? Explain. This is the original strand AGG TCT TCA GGG AAT GCC TGG CGA GAG GGG AGC AGC TGG TAT CGC TGG GCC CAA This is the strand with the SNP. (The change is shown in red.) AGG TCT TCA GGG AAT GCC TGG CGA GAG GGG AGC AGC TAG TAT CGC TGG GCC САА Suppose a different single-nucleotide…Determine the sequence of amino acids specified by the codons in the following information strand. AGG TCT TCA GGG AAT GCC TGG CGA GAG GGG AGC AGC TGG TAT CGC TGG GCC САА Then determine the sequence of amino acids if an insertion occurred to the left of the first adenosine and changed the reading frame as shown below. Notice that (1) the insertion is shown on the left by the lower-case "i", and (2) the bases are still in the same sequence; they are just shifted so that they are read differently. IAG GTC TTC AĞG GAA TGC CTG GCG AGA GGG GAG CAG СTG GTA TCG CTG GGC ССА