Locate and annotate all the genes. Translate all the open reading frames into amino acid sequences.
For each gene state i) the number of introns, ii) the first three amino acid residues, and iii) the last three amino acid residues (note- the stop codon isn’t counted as an amino acid).
Direction is from 5 prime to 3 prime.
Thank you for all the help.
ACGCATACTCTACCGATAGATCAGAGGAGGCCTAAGTCTCTGCGGAAGTCGATTCCAGGGGATGACCTTACTATGGTCGGGAGGTTCTCTACGCGTCCCCGCCAGACAGCTAGATTTTGTTTTCTAAAGGAAAGTACAGGAGTCCATTATGCGCGTCCTGTCTTTATTTTACTCAATATTCGACAACGTGTTGACGTTGGAAGTGACCGAAATTAGAGCGTATGTAAGACGGGATACAAACAGGACGGTACCTCTTGTCACGATAGTGATTCAAGAGGTTCCAGGGGATGACCTTACTATGGTCGGGAGGTCACGTCGCCGTTCAGAACACGCATCAGCAGCATACAAGTCTAGCAGCCGTGATGTCTGTGTCCCTGAACCTCCCCAAAGCGGGAGTTGACAACAGTAGAGGCCTTCAACGATAGCCACACAGCCATTCCTTTTGCCTCCAAAATAGGCTCTTGATTTGGAAGTTTAAAGATGAACTGTTCAAAGTAAATGCGCGTCATAGATGTCCCCCATATCCTCGTTTTCACCACAAACTTGCATCCACTACGTAAAGGTGCAAGAAACTTTGTTGTCAATTCAGAAACTGCCAATGCTTCACCAGAACGGGACACTTCATCACAGTTGCGATAGTCGGTTCAAGAGGTTCCAGGGGATGACCTTACTATGGTCGGGAGGTCACGTCGCCGTTCAGAACACGCATCAGCAGCACAACAGTAGAGGCCTTCAACGATTTACCTTTAGTCTCCATAAACTCGTGTTGACCGTGTTGGCAGTAGTTTGCATAAACAGCGTTGTTCACAACACCAAATTGGTCTAATTCATAATCACGAACTTTAAGTTCAATCTCATGGACTCCATTCATTCCTTTGCCTCCTTGCTGTTTGAAACATGAGAGAGGTTTGAAGGTCTCGATTACAAGTCTAGCAGCCGTGATGTCTGTGTCCCTGAACCTCCCCAAAGCGGGAGTTGCGATTTGTGCTCCGGAGAGGTAGGATAAGCGGTCGACTCGAAAAACAGGGAAACACCACGTGCATAGCCGGAGCCACTGTGCCGGTAGCTTTAAGCATTGCCCGCGGTATTTATAGGTTCTATTGTGATATACGGTGTAATACTTACGCGCGCGAGCGTAGTCATAGCGTACCGGCATCTCAGAGTAGTGACAAGGTTGACCAGCCAGCACTCTACGCAGAGGGCAATATATCGGAGCTCATGCCTATAAAGCTGGCGTAAATGGTTGCTTTTTTATCAGCTTGGCCTTGGGAAAACTTTGGCAATCTCAAGTATCTTCTCTACGCTCCATTAGCTGCACAAGTAGTGTACTCGTGGGTCTATGAAGAAGATATCTCAAAGGTTCTTTGGTGTATTCATATTCTCATAATCTGCGGTCTCAAAGCACATCGGTGAGCCCTCTCAGAACAGCATCGTTGTTCATGAACTATGGAGCGTTTTCAACAACATGCTTTTCGTGACTCGTACTCTAAGGATTAACCCTAAAGGGATGCACTTTAAACAGATATCGTCAGAACAGCGCGCCTCTTGGGCAGAAGACGTAACTGGTGAGCCCTCTCAGAACAGCGCAGCCCATCAATAGAGCCAAAGCGGGAGTTGACAACAGTAGAGGCCTTCAACCTCCGCTCGGCTCGGGTACCTCGGTTATCGTGATCACGAATGGCACTGGGACAATTACATAATCCTACAAGCAATAATAGTGAGCCTGATCTGTTACATGTCACCACCATTGATGATGATGATAAACAGTCTTCCTCTGTGGAACACGAAAGGACTCTACGCATTAATTGTGCTACATGTGACTTTCTCAGAGCCTGGATACTACTTTCTGCACAGATCTTTCCACTGTAACAACTACTTCTTCACACATTACTAGGTCAGAATAAATTTACTTGTTGATTTCGAGCTCGATTAGAATAGGCCCCCTGTAGGTATGATTGTAGCGAGATGGGAGGTTCCGCGCCAGCTAAGAGATTGGTTTTCACCGACCGGGCTTGGATAGTGCTAGCTTACCCCCACGTCTTTCCACCTAAGTGCATGAGTCTGCAGTGGAACGCCGGCCGCTAACCTCCGCACTCACACGCATACTCTACCGATAGATCAGAGGAGGCCTAAGTCTCTGCGGAAGTTCCAGGGGATGACCTTACTATGGTCGGGAGGTCACGTCGCCGTTCAGATCGAACACGCATCAGCAGCATACAAGTCTAGCAGCCGTGATGTCTGTGTCCCTGAACCTCCCCAAAGCGGGAGTTGACAACAGTAGAGGCCTTCAACCTCCGCTCGGCTCGGGTACCTCGGTTTCATCCCGGACTATCCCGCGACGTAATCTCTACGCGTCCCCGCCAGACAGCTAGATATAGTTTTCTAAAGGTATAAAACAGTCTAGAATGTCGACAGAAATGGAGGTCGTTAGTGTTCTTAAGTACCTTGACAACAAATCCATATTGGTCGTTGGAGCTGCTGGGTTCTTAGCAAATATCTTTGTGGAGAAGATATTAAGGGTGGCACCAAACGTGAAGAAACTCTATCTCCTTCTAAGAGCATCAAAAGGAAAATCTGCTACCCAGAGGTTTAACGACGAGATTTTGAAGAAAGATTTGTTCAAGGATCGCTAAAGGAAAGTACAGGAGTCCATTATGCGCGTCCTGTCTGAGCCGAGAGCAACTTGGGCAGAAGACGTAACTATCGTGCTGAAGGAGAAGTATGGTCCCAATCTAAATCAACTTACATCAGAGAAAATCACTATTGTCGACGGAGACATTTGCCTTCTAAATGACTCTCATCTTAGAGAACGTATGCAAAAAGAAATAGATATTGTTGTCAATGTTGCAGCCACAACAAACTTTGACGAAAGATATGATGTTGGGCTTGGGATCAATACATTTGGAGCTCTCAACGTCCTTAACTTTGCCAAAAAATGTGTTAAAGTTCAATTGCTTCTCCATGTCTCAACTGCTTATGTTTGTGGAGAAAAGCCAGGTCTCATACCTGAAAAACCATTCATCATGGAAGAGATTCGTAACGAGAATGGTCTTCAATTGGATATTAACCTTGAAAGGGAGCTTATGAAATTGGTTCAGGAGAAACTTGACCAGCTCCGAGTAAACGGAGCCGCTCCTGAAACCATCACGGAAACCATGAAGGATCTCGGACTCAGACGGGCAAAGATGTACGGATGGCCAAACACATATGTGTTATCGGTGAGCCCTCTCAGAACAGCATCGCACCAAAGCAATGGGGGAGATGATGGTAGGGACAAAAAGAGAAAAATCGCGCGCCTCTTGGGCAGAAGACGTAACTGGTGAGCCCTCTCAGAACAGCGCAGCCCATCAATAGAGCCAAAGCGGGAGTTGACAACAGTAGAGGCCTTCAACCTCATCGTCTGTCACTTGTGTTGCTTCGTCCTTCAATTATTACCAGCACATTCAAAGAACCATTTCCTGGTTGGACTGAGGGCATCAGGACTATTGATAGTTTAGCTGTTGGATATGGCAAAGGCAAACTCACGGTCGATGTTAACTCGGTCTGCGATATGATACCAGTGGATATGGTGGCAAACGCAATGATCACGGCTGCAGCCAAACACGCTGGAGGTTCAGGGGTTCACATGGTGTACCATGTCGGCTCATCTCACCAGAACCCAGTCACATTTGGAGAGATTCATGAGATTGCGGTTCGTTACTTTACGAAAAACCCTTTGCGAAGTCGCAATGGCTCACTCATAACCGTCTCAAAAGTGAGGTTCATACCAACCATGGCTTTGTTCAGCCTCTACATGACCCTACGTTACAAACTACCTCTCCAGTTATTAAAACTAGTTGACATAACATATCCTTGGAGAAACGGAGATAAATATGGAGACAAGAACCGCAAACTCGAGTTGGTGATGAGATTGGTAGAGCTTTATGATCGTTGGGCAGAAGACGTAACTGGTGAGCCCTCTCAGAACAGCGCAGCCCATATCGAGCCTTATGTACTCTTCAAGGGAATATTCGACGATAGAAATACAAAGAGTTTATGCGCAAACCAGAAGGAAGAGGAGATCAAAAATACAGAAAAATTGATGTTTGATTTCGACCCAAAAGGAATTAATTGGGGAGATTATCTCACTAAAATACACATTTCTGGACTCGTCACACACGTGCTTAAGAAGTGATGTTGAAATAAAGTTCCAGGGGATGACCTTACTATGGTCGGGAGGTCACGTCGCCGTTCAGAACACGCATCAGCAGCATACAAGTCTAGCAGCCGTGATGTCTGTGTCCCTGAACCTCCCCAAAGCGGGAGTTGACAACAGTAGAGGCCTTCAACCTCCGCTCGGCTCGGGTACCTCGGTTTCATCCCGGACTATCCCGCGACGTAATCTCTACGCGTCCCCGCCAGACAGCTAGATTTTGTTTTCTTATAAAAAGTACAGGAGTCCATTATGCGCGTCCTGTCTGAGCCGAGAGCAACTTGGGCAGAAGACGTAACTGGTGAGCCCTCTCAGAACAGCGCGCCTACGTAGCAATCCGATAGCCCATCAATAGAGCATGGGCCGGAACTTCGATGCTCTCCCAGATGAGGGGACCAGCAGTCCGATGATTCAAGAGGTTCCAGGGGATGACCTTACTATGGTCGGGAGGTCACGTCGCCGTTCAGAACACGCATCAGCAGCATACAAGTCTAGCAGCCGTGATGTCTGTGTCCCTGAACCTCCCCAAAGCGGGAGTTGACAACAGTAGAGGCCTTATCGCAACCTCCGCTCGGCTCGGGTACCTCGGTTTCATCCCGGACTATCCCGCGACGTAATCTCTACGCGTCCCCGCCAGACAGCTAGATTTTGTTTTCTAAAGGAAAGTACAGGAGTCCATTATGCGCGTCCTGTCTGAGCCGAGAGCAACGCGTCCTGTCTGAGCCGAGAGCAACTTGGGCAGAAGACGTAACTGGTGAGCCCTCTCAGAACAGCGCGCCTACGTAGCAATCCGATAGCCCATCAATAGAGCATGGGCCGGAACTTCGATGCTCTCCCAGATGAGGGGACCAGCAGTCGATTCAAGAGCCGACGCTGGCGTGCAGgccCCCGCTATATCTCTAAGTTTGGTTATAAACGGCGGCCCGAATGTTTTGTCTATTTATGCCTCTCTTTGATGTTTTGGGCGATACACAAAACCCAAACTCATGGGAACTCCAAAAGAAGATTCGTTTGAGTGCAGGGATCGAAAGTACAGGAGTCCATTATGCGCGTCCTGTCTGAGCCGAGAGCAACTTGGGCAGAAGACGTAACTGGTGAGCCCTCTCAGAACAGCGCGCCTCTTGGGCAGAAGACGTAACTGGTGAGCCCTCTCAGAACAGCGCGCCTACGTAGCAATCCGATAGCCCATCATCGGAACGGAAGAGAGTGCCGGAGTTTGTGTTCTTAGCTCACGGAGTTGATGTAATGTCGGCGATGCATGCACCGTTCGTGTTCAGATCTTTTGCTTCAATGCCATCTACCACAAGGATATTCTTGCTACCGATGTGGCCATTCACGTTCTGTGTTATGTTGGGCATGTGGGCTTGGTCAAAGACTTTTCTTTTCAGCTTCTATTCCCTCAGGAACAATCTTTGTCAGACTTGGGGCGTTCCTAGATTCGGATTCCAATACTTCTTACCGATTGCTACAAAAGGAATTAATGATCAAATTGAGGCTGCGATTCTTAGAGCTGATAAGATTGGTGTTAAAGTTACAAGCTTGGCTGCTCTCAACAAGAACGAAGCTCTAAATGGTGGTGGAACACTGTTTGTCAACAAGCATCCTGACCTTAGAGTTCGTGTGGTTCATGGGAACACTTTAACTGCAGCAGTGATTCTCTATGAAATTCCAAAAGATGTGAATGAGGTTTTCTTGACTGGATAATGAAATAAAGCAGCATACAAGTCTAGCAGCCGTGATGTCTGTGTCCCTGAACCTCCCCAAAGCGGGAGTTGACAACAGTAGAGGCCTTCAACCTCCGCTCGGCTCGGGTACCTCGGTTTCATCCCGGACTATCCCGCGACGTAATCTCTACGCGTCCCCGCCAGACAGCTAGATTTTGTTTTCTAAAGGAAAGTACAGGAGTCCATTATGCGCGTCCTGTCTGAGCCGAGAGCAACTTGGGCAGAAGACGTAACTGGTGAGCCCTCTCAGAACAGCGCGCCTCTTTTATAGAAGACGTAACTGGTGAGCCCTCTCAGAACAGCGCGCCTACGTAGCAATCCGATAGCCCATCAATAGAGCCAAAGCTTGACAACAGTAGAGGCCTTCAACCTCCGCTCGGCTCGGGTACCTCGGTTTCATCCCGGACTATCCCGCGACGTAATCTCTACGCGTCCCCGCTATAAAGCTAGATTTTGTTTTCTAAAGGAAAGTACAGGAGTCCATTATGACGTAGCAATCCGATAGCCCATCAATAGAGCATGGGCCGGAACTTCGATGCTCTCCCAGATGAGGGGACCAGCAGTCGATTCAAGAGCCGACGCTGGCGTGCAGCCCGCCGCGTCTCTAAGTTTGGTAAAGTACAGGAGTCCATTATGCGCGTCCATGGGCCGGAACTTCGATGCTCTCCCAGATGAGGGGACCAGCAGTCGATTCAAGAGTTTATTGTCTGTTCAGTTGGTCCCCATTTCTTGATGATGCAGACTATGGTACGTTGGAGTACGGGTGAGATATCGTAAGACTGGAAGAATCTCGAACAGCTTGTGAGAGAATATCTCAACGTTACAATGTCCTAAACACCTCATGAAATCAAACATAACAGCGTACGATACACGCTGGAGGTTCAGGGGTTCACATGGTGTACCATGTCGGCTCATCTCACCAGAACCCAGTCACATTTGGCGATACCGTAGATCGCACTTAATGATCCAACACCAAACAAGCAACATCCAATCAATGGAACACCAGCTACGACACAGAGGATAATGTTTTCCAATAACGTTGCGTTTCCAGCAGTCATGGGATGTGGAACAGGAGATGAGTGGTGGAAAGAGTGCATACTGGGCTACTTTTATAGCAGCATACAAGTCTATAAGCCGTGATGTCTGTGTCCCTGAACCTCCCTGTCTGAGCCGAGAGCAACTTGGGCAGAAGACGTAACTGGTGAGCCCTCTCAGATCCCGCGACGTAATCTCTACGCGTCCCCGCCAGACAGCTAGATTTTGTTTTCTAAAGGAAAGTACAGGAGTCCATTATGCGCGTCCTGTCTGAGCCGAGAGTATATTGGGCAGAAGACTATAAACCAGTCTTCGCCATGGCCACTTCTAAGCTGGGAAGAGCTATTGCTCTTTACCTTTGTCGCCGTGGAGTGAGAGTTCTCATGTTGACATTGTCTATGGAAAGGTTCCAAAAGATTCAGAAAGAGGCTCCTGTTGAGTTCCAGAACAACCTTGTACAAGTGACCAAATACAATGCTGCTCAACACTGCAAGACTTGGAAGGTTGGAAAATGGTTAACACCAAGAGAGCAGAGCTGGATCGAACAGCTTTAATCGGCTCCTGCAGGGACGCATTTCCATCAGTTTGTGGTGCCACCAATCCTTAAGTTTAGAAGGAACTGCACTTACGGTGATCTAGCAGCTATGAAGCTCCCTAAAGATGTTGAAGGACTCGGAACTTGCGAGTACACGATGGAGAGAGGGGTGGTACATGCGTGCCATGCAGGAGGAGTGGTTCATAATATCGCTACGCGTCCCCGCCAGACAGCTAGATTTTGTTTTCTAAAGGAAAGTACAGGAGTCCATTATGCGCGTCCTGTCTGAGCCGAGAGCAACTTGGGCAGAAGACGTAACTGGTGAGCCCTCTCAGAACAGCGCGCCTCTTGGGCAGAAGACGTAACTATCGGCTATGGGGTTGGAAGCATCAATGGGTTGGAGCCATATGTGTATGCCGTGGCGATTTGGTGTGGGAAGCAGCCATGAAGTATGGTCTATGTGCTGTTTCTTCACTCACAAAATCTGAACACTAATAAAGCATCTCAGAGTAGTGACAAGGTTGACCAGCCAGCACTCTACGCAGAGGGCAATGATGTCGGAGCTCATGCCCGAGTCGCAATGGCAAACGTGCACCAACGGACCACAGACGGGAACAGCTTTACTTGTTGATTTCGAGCTCGATTAGAATAGGCCCCCTGTAGGTATGATTGTAGCGAGATGGGAGGTTCCGCGCCAGCTAAGAGATTGGTTTTCACCGACCGGGCTTGGATAGTGCTAGCTTACCCCCACGTCTTTCCACCTAAGTGCATGAGTCTGCAGTGGAACGCCGGCCGCTAACCTCCGCACTCACACGCATACTCTACCGATAATCGGATCAGAGGAGGCCTAAGTCTCTGCGGAAGTTCCAGGGGATGACCTTACTATGGTCGGGAGGTCACGTCGCCGTTCAGAACACGCATCAGCAGCATACAAGTCTAGCAGCCGTGATGTCTGTGTCCCTGAACCTCCCCAAAGCGGGAGTTGACAACAGTAGAGGCCTTCAACCTCCGCTCGGCTCGGGTACCTCGGTTTCATCCCGGACTATCCCGCGACGTAATCTCTACGCGTCCCCGCCAGACAGCTAGATTTTGTTTTCTAAAGGAAAGTACAGGAGTCCATTATGCGCGTCCTGTCTGAGCCGAGAGCAACTTGGGCAGAAGACGTAACTG
The above sequence contains genes for:
1. Arabidopsis thaliana cuticle protein (WAX2)
1st 3 amino acid: Methionine Valine Alanine Last 3 amino acid: Leucice Threonine Aspargine
2. Arabidopsis thaliana Fatty acid hydroxylase superfamily (CER3)
1st 3 amino acid: Methionine Valine Alanine Last 3 amino acid: Leucice Threonine Aspargine
3. Arabidopsis thaliana FLP1 mRNA for faceless pollen-1
1st 3 amino acid: Methionine Valine Alanine Last 3 amino acid: Leucice Threonine Aspargine
4. Arabidopsis thaliana YRE mRNA for YORE-YORE protein
1st 3 amino acid: Methionine Valine Alanine Last 3 amino acid: Leucice Threonine Aspargine
5. Arabidopsis thaliana fatty acid reductase 5 (FAR5)
1st 3 amino acid: Methionine Glutamine Lysine Last 3 amino acid: Leucine Lysine Lysine
These sequences are either coding sequences of cDNA sequences. Hence doesn't contain any intron.
Locate and annotate all the genes. Translate all the open reading frames into amino acid sequences....
8.) For each gene state i) the number of introns, ii) the first three amino acid residues, and iii) the last three amino acid residues (note- the stop codon isn’t counted as an amino acid). No need for the long explanation, just the answer will do ACGCATACTCTACCGATAGATCAGAGGAGGCCTAAGTCTCTGCGGAAGTCGATTCCAGGGGATGACCTTACTATGGTCGGGAGGTTCTCTACGCGTCCCCGCCAGACAGCTAGATTTTGTTTTCTAAAGGAAAGTACAGGAGTCCATTATGCGCGTCCTGTCTTTATTTTACTCAATATTCGACAACGTGTTGACGTTGGAAGTGACCGAAATTAGAGCGTATGTAAGACGGGATACAAACAGGACGGTACCTCTTGTCACGATAGTGATTCAAGAGGTTCCAGGGGATGACCTTACTATGGTCGGGAGGTCACGTCGCCGTTCAGAACACGCATCAGCAGCATACAAGTCTAGCAGCCGTGATGTCTGTGTCCCTGAACCTCCCCAAAGCGGGAGTTGACAACAGTAGAGGCCTTCAACGATAGCCACACAGCCATTCCTTTTGCCTCCAAAATAGGCTCTTGATTTGGAAGTTTAAAGATGAACTGTTCAAAGTAAATGCGCGTCATAGATGTCCCCCATATCCTCGTTTTCACCACAAACTTGCATCCACTACGTAAAGGTGCAAGAAACTTTGTTGTCAATTCAGAAACTGCCAATGCTTCACCAGAACGGGACACTTCATCACAGTTGCGATAGTCGGTTCAAGAGGTTCCAGGGGATGACCTTACTATGGTCGGGAGGTCACGTCGCCGTTCAGAACACGCATCAGCAGCACAACAGTAGAGGCCTTCAACGATTTACCTTTAGTCTCCATAAACTCGTGTTGACCGTGTTGGCAGTAGTTTGCATAAACAGCGTTGTTCACAACACCAAATTGGTCTAATTCATAATCACGAACTTTAAGTTCAATCTCATGGACTCCATTCATTCCTTTGCCTCCTTGCTGTTTGAAACATGAGAGAGGTTTGAAGGTCTCGATTACAAGTCTAGCAGCCGTGATGTCTGTGTCCCTGAACCTCCCCAAAGCGGGAGTTGCGATTTGTGCTCCGGAGAGGTAGGATAAGCGGTCGACTCGAAAAACAGGGAAACACCACGTGCATAGCCGGAGCCACTGTGCCGGTAGCTTTAAGCATTGCCCGCGGTATTTATAGGTTCTATTGTGATATACGGTGTAATACTTACGCGCGCGAGCGTAGTCATAGCGTACCGGCATCTCAGAGTAGTGACAAGGTTGACCAGCCAGCACTCTACGCAGAGGGCAATATATCGGAGCTCATGCCTATAAAGCTGGCGTAAATGGTTGCTTTTTTATCAGCTTGGCCTTGGGAAAACTTTGGCAATCTCAAGTATCTTCTCTACGCTCCATTAGCTGCACAAGTAGTGTACTCGTGGGTCTATGAAGAAGATATCTCAAAGGTTCTTTGGTGTATTCATATTCTCATAATCTGCGGTCTCAAAGCACATCGGTGAGCCCTCTCAGAACAGCATCGTTGTTCATGAACTATGGAGCGTTTTCAACAACATGCTTTTCGTGACTCGTACTCTAAGGATTAACCCTAAAGGGATGCACTTTAAACAGATATCGTCAGAACAGCGCGCCTCTTGGGCAGAAGACGTAACTGGTGAGCCCTCTCAGAACAGCGCAGCCCATCAATAGAGCCAAAGCGGGAGTTGACAACAGTAGAGGCCTTCAACCTCCGCTCGGCTCGGGTACCTCGGTTATCGTGATCACGAATGGCACTGGGACAATTACATAATCCTACAAGCAATAATAGTGAGCCTGATCTGTTACATGTCACCACCATTGATGATGATGATAAACAGTCTTCCTCTGTGGAACACGAAAGGACTCTACGCATTAATTGTGCTACATGTGACTTTCTCAGAGCCTGGATACTACTTTCTGCACAGATCTTTCCACTGTAACAACTACTTCTTCACACATTACTAGGTCAGAATAAATTTACTTGTTGATTTCGAGCTCGATTAGAATAGGCCCCCTGTAGGTATGATTGTAGCGAGATGGGAGGTTCCGCGCCAGCTAAGAGATTGGTTTTCACCGACCGGGCTTGGATAGTGCTAGCTTACCCCCACGTCTTTCCACCTAAGTGCATGAGTCTGCAGTGGAACGCCGGCCGCTAACCTCCGCACTCACACGCATACTCTACCGATAGATCAGAGGAGGCCTAAGTCTCTGCGGAAGTTCCAGGGGATGACCTTACTATGGTCGGGAGGTCACGTCGCCGTTCAGATCGAACACGCATCAGCAGCATACAAGTCTAGCAGCCGTGATGTCTGTGTCCCTGAACCTCCCCAAAGCGGGAGTTGACAACAGTAGAGGCCTTCAACCTCCGCTCGGCTCGGGTACCTCGGTTTCATCCCGGACTATCCCGCGACGTAATCTCTACGCGTCCCCGCCAGACAGCTAGATATAGTTTTCTAAAGGTATAAAACAGTCTAGAATGTCGACAGAAATGGAGGTCGTTAGTGTTCTTAAGTACCTTGACAACAAATCCATATTGGTCGTTGGAGCTGCTGGGTTCTTAGCAAATATCTTTGTGGAGAAGATATTAAGGGTGGCACCAAACGTGAAGAAACTCTATCTCCTTCTAAGAGCATCAAAAGGAAAATCTGCTACCCAGAGGTTTAACGACGAGATTTTGAAGAAAGATTTGTTCAAGGATCGCTAAAGGAAAGTACAGGAGTCCATTATGCGCGTCCTGTCTGAGCCGAGAGCAACTTGGGCAGAAGACGTAACTATCGTGCTGAAGGAGAAGTATGGTCCCAATCTAAATCAACTTACATCAGAGAAAATCACTATTGTCGACGGAGACATTTGCCTTCTAAATGACTCTCATCTTAGAGAACGTATGCAAAAAGAAATAGATATTGTTGTCAATGTTGCAGCCACAACAAACTTTGACGAAAGATATGATGTTGGGCTTGGGATCAATACATTTGGAGCTCTCAACGTCCTTAACTTTGCCAAAAAATGTGTTAAAGTTCAATTGCTTCTCCATGTCTCAACTGCTTATGTTTGTGGAGAAAAGCCAGGTCTCATACCTGAAAAACCATTCATCATGGAAGAGATTCGTAACGAGAATGGTCTTCAATTGGATATTAACCTTGAAAGGGAGCTTATGAAATTGGTTCAGGAGAAACTTGACCAGCTCCGAGTAAACGGAGCCGCTCCTGAAACCATCACGGAAACCATGAAGGATCTCGGACTCAGACGGGCAAAGATGTACGGATGGCCAAACACATATGTGTTATCGGTGAGCCCTCTCAGAACAGCATCGCACCAAAGCAATGGGGGAGATGATGGTAGGGACAAAAAGAGAAAAATCGCGCGCCTCTTGGGCAGAAGACGTAACTGGTGAGCCCTCTCAGAACAGCGCAGCCCATCAATAGAGCCAAAGCGGGAGTTGACAACAGTAGAGGCCTTCAACCTCATCGTCTGTCACTTGTGTTGCTTCGTCCTTCAATTATTACCAGCACATTCAAAGAACCATTTCCTGGTTGGACTGAGGGCATCAGGACTATTGATAGTTTAGCTGTTGGATATGGCAAAGGCAAACTCACGGTCGATGTTAACTCGGTCTGCGATATGATACCAGTGGATATGGTGGCAAACGCAATGATCACGGCTGCAGCCAAACACGCTGGAGGTTCAGGGGTTCACATGGTGTACCATGTCGGCTCATCTCACCAGAACCCAGTCACATTTGGAGAGATTCATGAGATTGCGGTTCGTTACTTTACGAAAAACCCTTTGCGAAGTCGCAATGGCTCACTCATAACCGTCTCAAAAGTGAGGTTCATACCAACCATGGCTTTGTTCAGCCTCTACATGACCCTACGTTACAAACTACCTCTCCAGTTATTAAAACTAGTTGACATAACATATCCTTGGAGAAACGGAGATAAATATGGAGACAAGAACCGCAAACTCGAGTTGGTGATGAGATTGGTAGAGCTTTATGATCGTTGGGCAGAAGACGTAACTGGTGAGCCCTCTCAGAACAGCGCAGCCCATATCGAGCCTTATGTACTCTTCAAGGGAATATTCGACGATAGAAATACAAAGAGTTTATGCGCAAACCAGAAGGAAGAGGAGATCAAAAATACAGAAAAATTGATGTTTGATTTCGACCCAAAAGGAATTAATTGGGGAGATTATCTCACTAAAATACACATTTCTGGACTCGTCACACACGTGCTTAAGAAGTGATGTTGAAATAAAGTTCCAGGGGATGACCTTACTATGGTCGGGAGGTCACGTCGCCGTTCAGAACACGCATCAGCAGCATACAAGTCTAGCAGCCGTGATGTCTGTGTCCCTGAACCTCCCCAAAGCGGGAGTTGACAACAGTAGAGGCCTTCAACCTCCGCTCGGCTCGGGTACCTCGGTTTCATCCCGGACTATCCCGCGACGTAATCTCTACGCGTCCCCGCCAGACAGCTAGATTTTGTTTTCTTATAAAAAGTACAGGAGTCCATTATGCGCGTCCTGTCTGAGCCGAGAGCAACTTGGGCAGAAGACGTAACTGGTGAGCCCTCTCAGAACAGCGCGCCTACGTAGCAATCCGATAGCCCATCAATAGAGCATGGGCCGGAACTTCGATGCTCTCCCAGATGAGGGGACCAGCAGTCCGATGATTCAAGAGGTTCCAGGGGATGACCTTACTATGGTCGGGAGGTCACGTCGCCGTTCAGAACACGCATCAGCAGCATACAAGTCTAGCAGCCGTGATGTCTGTGTCCCTGAACCTCCCCAAAGCGGGAGTTGACAACAGTAGAGGCCTTATCGCAACCTCCGCTCGGCTCGGGTACCTCGGTTTCATCCCGGACTATCCCGCGACGTAATCTCTACGCGTCCCCGCCAGACAGCTAGATTTTGTTTTCTAAAGGAAAGTACAGGAGTCCATTATGCGCGTCCTGTCTGAGCCGAGAGCAACGCGTCCTGTCTGAGCCGAGAGCAACTTGGGCAGAAGACGTAACTGGTGAGCCCTCTCAGAACAGCGCGCCTACGTAGCAATCCGATAGCCCATCAATAGAGCATGGGCCGGAACTTCGATGCTCTCCCAGATGAGGGGACCAGCAGTCGATTCAAGAGCCGACGCTGGCGTGCAGgccCCCGCTATATCTCTAAGTTTGGTTATAAACGGCGGCCCGAATGTTTTGTCTATTTATGCCTCTCTTTGATGTTTTGGGCGATACACAAAACCCAAACTCATGGGAACTCCAAAAGAAGATTCGTTTGAGTGCAGGGATCGAAAGTACAGGAGTCCATTATGCGCGTCCTGTCTGAGCCGAGAGCAACTTGGGCAGAAGACGTAACTGGTGAGCCCTCTCAGAACAGCGCGCCTCTTGGGCAGAAGACGTAACTGGTGAGCCCTCTCAGAACAGCGCGCCTACGTAGCAATCCGATAGCCCATCATCGGAACGGAAGAGAGTGCCGGAGTTTGTGTTCTTAGCTCACGGAGTTGATGTAATGTCGGCGATGCATGCACCGTTCGTGTTCAGATCTTTTGCTTCAATGCCATCTACCACAAGGATATTCTTGCTACCGATGTGGCCATTCACGTTCTGTGTTATGTTGGGCATGTGGGCTTGGTCAAAGACTTTTCTTTTCAGCTTCTATTCCCTCAGGAACAATCTTTGTCAGACTTGGGGCGTTCCTAGATTCGGATTCCAATACTTCTTACCGATTGCTACAAAAGGAATTAATGATCAAATTGAGGCTGCGATTCTTAGAGCTGATAAGATTGGTGTTAAAGTTACAAGCTTGGCTGCTCTCAACAAGAACGAAGCTCTAAATGGTGGTGGAACACTGTTTGTCAACAAGCATCCTGACCTTAGAGTTCGTGTGGTTCATGGGAACACTTTAACTGCAGCAGTGATTCTCTATGAAATTCCAAAAGATGTGAATGAGGTTTTCTTGACTGGATAATGAAATAAAGCAGCATACAAGTCTAGCAGCCGTGATGTCTGTGTCCCTGAACCTCCCCAAAGCGGGAGTTGACAACAGTAGAGGCCTTCAACCTCCGCTCGGCTCGGGTACCTCGGTTTCATCCCGGACTATCCCGCGACGTAATCTCTACGCGTCCCCGCCAGACAGCTAGATTTTGTTTTCTAAAGGAAAGTACAGGAGTCCATTATGCGCGTCCTGTCTGAGCCGAGAGCAACTTGGGCAGAAGACGTAACTGGTGAGCCCTCTCAGAACAGCGCGCCTCTTTTATAGAAGACGTAACTGGTGAGCCCTCTCAGAACAGCGCGCCTACGTAGCAATCCGATAGCCCATCAATAGAGCCAAAGCTTGACAACAGTAGAGGCCTTCAACCTCCGCTCGGCTCGGGTACCTCGGTTTCATCCCGGACTATCCCGCGACGTAATCTCTACGCGTCCCCGCTATAAAGCTAGATTTTGTTTTCTAAAGGAAAGTACAGGAGTCCATTATGACGTAGCAATCCGATAGCCCATCAATAGAGCATGGGCCGGAACTTCGATGCTCTCCCAGATGAGGGGACCAGCAGTCGATTCAAGAGCCGACGCTGGCGTGCAGCCCGCCGCGTCTCTAAGTTTGGTAAAGTACAGGAGTCCATTATGCGCGTCCATGGGCCGGAACTTCGATGCTCTCCCAGATGAGGGGACCAGCAGTCGATTCAAGAGTTTATTGTCTGTTCAGTTGGTCCCCATTTCTTGATGATGCAGACTATGGTACGTTGGAGTACGGGTGAGATATCGTAAGACTGGAAGAATCTCGAACAGCTTGTGAGAGAATATCTCAACGTTACAATGTCCTAAACACCTCATGAAATCAAACATAACAGCGTACGATACACGCTGGAGGTTCAGGGGTTCACATGGTGTACCATGTCGGCTCATCTCACCAGAACCCAGTCACATTTGGCGATACCGTAGATCGCACTTAATGATCCAACACCAAACAAGCAACATCCAATCAATGGAACACCAGCTACGACACAGAGGATAATGTTTTCCAATAACGTTGCGTTTCCAGCAGTCATGGGATGTGGAACAGGAGATGAGTGGTGGAAAGAGTGCATACTGGGCTACTTTTATAGCAGCATACAAGTCTATAAGCCGTGATGTCTGTGTCCCTGAACCTCCCTGTCTGAGCCGAGAGCAACTTGGGCAGAAGACGTAACTGGTGAGCCCTCTCAGATCCCGCGACGTAATCTCTACGCGTCCCCGCCAGACAGCTAGATTTTGTTTTCTAAAGGAAAGTACAGGAGTCCATTATGCGCGTCCTGTCTGAGCCGAGAGTATATTGGGCAGAAGACTATAAACCAGTCTTCGCCATGGCCACTTCTAAGCTGGGAAGAGCTATTGCTCTTTACCTTTGTCGCCGTGGAGTGAGAGTTCTCATGTTGACATTGTCTATGGAAAGGTTCCAAAAGATTCAGAAAGAGGCTCCTGTTGAGTTCCAGAACAACCTTGTACAAGTGACCAAATACAATGCTGCTCAACACTGCAAGACTTGGAAGGTTGGAAAATGGTTAACACCAAGAGAGCAGAGCTGGATCGAACAGCTTTAATCGGCTCCTGCAGGGACGCATTTCCATCAGTTTGTGGTGCCACCAATCCTTAAGTTTAGAAGGAACTGCACTTACGGTGATCTAGCAGCTATGAAGCTCCCTAAAGATGTTGAAGGACTCGGAACTTGCGAGTACACGATGGAGAGAGGGGTGGTACATGCGTGCCATGCAGGAGGAGTGGTTCATAATATCGCTACGCGTCCCCGCCAGACAGCTAGATTTTGTTTTCTAAAGGAAAGTACAGGAGTCCATTATGCGCGTCCTGTCTGAGCCGAGAGCAACTTGGGCAGAAGACGTAACTGGTGAGCCCTCTCAGAACAGCGCGCCTCTTGGGCAGAAGACGTAACTATCGGCTATGGGGTTGGAAGCATCAATGGGTTGGAGCCATATGTGTATGCCGTGGCGATTTGGTGTGGGAAGCAGCCATGAAGTATGGTCTATGTGCTGTTTCTTCACTCACAAAATCTGAACACTAATAAAGCATCTCAGAGTAGTGACAAGGTTGACCAGCCAGCACTCTACGCAGAGGGCAATGATGTCGGAGCTCATGCCCGAGTCGCAATGGCAAACGTGCACCAACGGACCACAGACGGGAACAGCTTTACTTGTTGATTTCGAGCTCGATTAGAATAGGCCCCCTGTAGGTATGATTGTAGCGAGATGGGAGGTTCCGCGCCAGCTAAGAGATTGGTTTTCACCGACCGGGCTTGGATAGTGCTAGCTTACCCCCACGTCTTTCCACCTAAGTGCATGAGTCTGCAGTGGAACGCCGGCCGCTAACCTCCGCACTCACACGCATACTCTACCGATAATCGGATCAGAGGAGGCCTAAGTCTCTGCGGAAGTTCCAGGGGATGACCTTACTATGGTCGGGAGGTCACGTCGCCGTTCAGAACACGCATCAGCAGCATACAAGTCTAGCAGCCGTGATGTCTGTGTCCCTGAACCTCCCCAAAGCGGGAGTTGACAACAGTAGAGGCCTTCAACCTCCGCTCGGCTCGGGTACCTCGGTTTCATCCCGGACTATCCCGCGACGTAATCTCTACGCGTCCCCGCCAGACAGCTAGATTTTGTTTTCTAAAGGAAAGTACAGGAGTCCATTATGCGCGTCCTGTCTGAGCCGAGAGCAACTTGGGCAGAAGACGTAACTG
7. Open reading frames A protein coding gene includes the following sequence on one of its two DNA strands. Note that this segment (within an exon) does NOT include either the start codon or the stop codon for this gene. However, because five of the six potential reading frames (3 on each DNA strand) in this region include stops, only the true reading frame remains "open" through this segment. Therefore, it is possible to unambiguously decode (translate) this segment of...
3. Translation. According to the rules of the genetic code, there are six different reading frames in a double- stranded DNA molecule. One DNA strand serves as a template for transcription, which is complementary and antiparallel to the RNA product. The other DNA strand is the coding strand, which is identical in sequence to the RNA except for the substitution of uracil for thymine bases. A) There is a single open-reading frame (ORF) in the DNA molecule shown below. [Recall...
Did I answer the mRNA sequences
and Amino acid sequences correctly? What types of mutations are
these? How do you do the bottom?
Part 3. Cystic Fibrosis Directions: Cystic Fibrosis is a disorder where the individuals have long and kidney problems. The disorder is caused by a mutation in one of the individual's genes. Complete the boxes below by finding the mRNA and amino acid sequence Compare the moutant DNA strands to the original strand. Circle the mutation in the...
1.)Translate a piece of RNA in ALL three reading frames. (5pts) 3.)Deeply understand LActose and Tryptophan operons, Given media composition, will specific genes be turned "on" or "off". (18pts) 4.)Two different forms of the same protein. From the evidence provided, Is this being manufactured by ONE or TWO different forms of protein? (4pts)
6. In the drawings below note and label all important elements (incl.consensus sequences) discussed in lectures and tutorial manual and listed below. Prokaryotis operon promoter (-10 and -35 elements), operator, multiple structural renes (for example 3), start site of transcription, start sites of translations, transcription termination sequence Prokaryotic mRNA (polycistronie): transcription start site, multiple ribosome binding sites The Shine-Dalgamo sequence in Ecoli), multiple ORFs (including start and stop codons). transcription termination sequence Eukaryotic genes promoter (TATA box), consensus sequence CAAT,...
Lecture Homework Assignment (LHA) #3 BIO 2010 Microbiology Print Name: Section # Sequences of single strands of DNA are shown below for two different pieces of DNA. Assume that the DNA sequences are not at the beginning of a gene and that the spaces between each DNA triplet represent the correct reading frame, Label all sequences 5 and 3', where appropriate. Keep everything aligned properly. A Synthesize the complementary DNA sequence. B. Transcribe the mRNA sequence starting with the 5...
Lecture Homework Assignment BIO 2010 Microbiology Print Name: hanan Bonelt Section LOOS Sequences of single strands of DNA are shown below for two different pieces of ONA Assume that the DNA sequences are not at the beginning of a gene and that the spaces between each DNA triplet represent the correct reading frame. Label all sequences and 3', where appropriate. Keep everything aligned properly. A. Synthesize the complementary DNA sequence. B. Transcribe the mRNA sequence starting with the 5 end...
Up till now, we have assumed that all codons coding for the same amino acid are interchangeable. In fact, this not entirely true. In many species, it has been observed that certain codons are (slightly) favored. This is called codon bias. For example, AAA and AAG both code for lysine. If, in a particular species, the AAA codon is used preferentially, we would call that codon bias. One source of codon bias has to do with the efficiency of the...
QUESTION 13 What chemical group is at the end of an amino acid chain corresponding to the 3' end of the mRNA molecule? A. Peptide bond B.5 phosphate group C.3" hydroxyl group D. Amino (N-terminus) E. Carboxyl (C-terminus) QUESTION 14 Which of the following is true regarding pre-mRNA modifications/processing? O A. Alternative splicing allows for increased complexity and synthesis of protein isomers OB. The 5' cap is added after RNA polymerase dissociates from the gene OC. The poly A tail...