Part I. First, you want to characterize the basic structure…
Part I. First, you want to characterize the basic structure of the Super_Toxic1 gene. Identify the following elements in the provided DNA sequence, use the numerical position of the bases (numbers on top) in the main DNA sequence as reference points and fill in the blanks. (8.5 pts) DNA Sequence 1 11 21 31 41 ATGCATACTA ATGAGGAGCT TCTGACATCG CAGATTGACA CACAAGAGGA 51 61 71 81 91 GGTAGCAGTA TGGGTATAAT CTAATGCGTA ATTGAGGAGG TAGTTGACGT 101 111 121 131 141 ATGAGATGTT TCAATAGTTA CATGCCCAAG GAGCTCGTGA TTTTGAGTAT 151 161 171 181 191 GCCGTCGAAG CAGTAGCCGTA CGGGGGGGAA ACCCCCCCCTT TTTTTTTTTC 201 211 GAGCAATAAA GCATATGATC The stop codon (TAG) has been identified in the corresponding mRNA (positions 164 to 166), and is bolded in the DNA sequence above.Useful sequences: -35 consensus sequence: TTGACA, Pribnow box: TATAAT, Shine-Dalgarno: AGGAGGU, Transcription termination sequence: inverted repeat and high A-T -35 consensus sequence. Position______ to ________ (1 pt) Pribnow sequence. Position______ to ________ (1 pt) Region that will be transcribed into mRNA (select one) ___________(1 pt) 1-200 11-154 80-199 68-176 41-154 5′ UTR sequence (select one) ________________ (1 pt) 1-200 80-100 80-199 1-79 167-199 Start (initiation) codon in corresponding mRNA. Position _______ to ________ (1 pt) How many amino acids does Super_Toxic1 protein have? _________ (1 pt) The sequence of the last 3 amino acids of the Super_Toxic1 protein is: __________________________ (1.5 pts) 3′ UTR sequence (select one) ________________ (1 pt) 1-200 80-100 101-66 167-199 1-166 Screen-reader accessible codon chart