For the following sequence:
5’–G-C-A-U-G-G-A-C-C-C-C-G-U-U-A-U-U-A-A-A-C-A-C-A-3’
a. What is the sequence of amino acids in the peptide encoded for
by the above mRNA?
b. Give the sequence of bases in the strand of DNA that resulted in
this sequence of mRNA.
A) 5' alanine- tryptophan- threonine- proline- leucine-leucine-asparagine- threonine 3'
Each three letter codon codes for a particular amino acid.
B) 5'-C-G-T-A-C-C-T-G-G-G-G-C-A-A-T-T-T-G-T-G-T-3'
mRNA is formed complementary of the DNA sequence with the helo of DNA dependent RNA polymerase.
For the following sequence: 5’–G-C-A-U-G-G-A-C-C-C-C-G-U-U-A-U-U-A-A-A-C-A-C-A-3’ a. What is the sequence of amino acids in the peptide...
What is the nucleotide order of the conplimentary mRNA? What
sequence of amino acids is coded by the DNA?
Question 1. For the following questions, use the genetic code in table 18.1. A DNA strand consists of 3'-TCAATACCCGCG-5'. What is the nucleotide order of the complimentary mRNA? What sequence of amino acids is coded by the DNA?
Below are several DNA sequences that are mutated compared with the wild-type sequence: 3-TAC TGACTGACGAT C-5. Envision that each is a section of a DNA molecule that has separated in preparation for transcription, so you are only seeing the template strand. Construct the complementary DNA sequences (indicating 5' and 3' ends) for each mutated DNA sequence, then transcribe (indicating 5' and 3' ends) the template strands, and translate the mRNA molecules using the genetic code, recording the resulting amino acid...
15. Determine the amino acids following mRNA molecules. ne the amino acid sequence a ribosome would translate from the *GCACCAUGCAAAGCGGGGAUUAGACCUUU-3 Caution: from which end of the RNA strand does the ribosome begin translating? 3-AGAGUCCAUGCAAAGCGGGGAUUGUACCUUU - 5' 16. Determine the amino acid sequence a ribosome would translate from the following non template DNA strand. (Hint: you must first convert the non template DNA strand to a template DNA strand and then to mRNAJ 3'-ACCTTGATCCTTGACGTATGTAGTATGTATC-5'
3. Below are several DNA sequences that are mutated compared with the wild-type sequence: 3’ - T A C T G A C T G A C G A T C - 5’. Each is a section of a DNA molecule that has separated in preparation for transcription, so you are only seeing the template strand. a. Construct the complementary DNA sequences (indicating 5’ and 3’ ends) for each mutated DNA sequence. b. Transcribe (indicating 5’ and 3’ ends) the...
The following sequence is part of the DNA TEMPLATE for a 4 amino acid peptide that starts with Methionine. 5- TTATTCTTTAAT CAT-3 What would be the consequences of the highlighted A to be mutated to a G? Select one: a. The resulting peptide will likely be larger than the non-mutant peptide b. the primary sequence of the peptide will be different on one amino acid O C. The peptide sequence would be the same d. all the amino acids after...
The following sequence is part of the DNA TEMPLATE for a 4 amino acid peptide that starts with Methionine. 5'- TTATTCTTTAAT CAT-3' What would be the consequences of the highlighted A to be mutated to a G? Select one: a. the primary sequence of the peptide will be different on one amino acid b. all the amino acids after the mutation will be different than the non-mutant peptide c. The peptide sequence would be the same d. The resulting peptide...
.Select the probe sequence that will hybridize to the following nucleic acid sequence: C G A T A T T G T C A. T A G T A C A A G A B. C G A T A T T G T C C. G T C A A G A C C T D G C T A T A A C A G Select the strand of RNA that is complementary to this single strand of...
In the diagram below, you are provided with a known sequence of
DNA (DNA Strand 1). Write ALL your answers as a sequence of CAPITAL
LETTERS (e.g., GGCGGT), and work your way from the top to the
bottom.
A) Fill in the complementary DNA bases for DNA Strand 2 to form a
complete double-stranded DNA molecule.
B) Create an mRNA strand that is complementary to DNA Strand
1.
C) Using the mRNA sequence that you just created, determine the
complementary...
15. Transcribe into mRNA and then translate into amino acids (protein) the following DNA sequence TAC ATG TCT AGG ATC. Write out the tRNA anticodons for each of the 5 codons as well. What is the complementary DNA sequence for the above DNA (the complementary sequence would be produced in DNA replication)? Suggested Format: DNA: TAC ATG TCT AGG ATC. Complementary: mRNA based on DNA: TRNAs that would pair with mRNA (the anticodon): Amino Acid Sequence: To transcribe the sequence...
C) a (energy required) minus, the C-terminus, and box all the peptide 33) (8 pts) Draw the te bonds 34) (7 pts) The following sequence of triplets is in the template DNA strand: 3 GGGI TCAI CCAI AGT 5. Write the corresponding mRNA section and label the 3 and 5' ends. What sequence of amino acids would be placed in a peptide chain? Module 9 Worksheet Page 1