image, to determine the codons used to code for each amino acid indicated by a number. For each amino acid, choose the best response below. a. An example of an amino acid that is coded by only one specific sequence b. An example of an amino acid that is coded by more than just a set of codons with a third nucleotide "wobble
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Use the codon table , shown in image, to determine the codons used to code for each amino acid indicated by a number.
For each amino acid, choose the best response below.
a. An example of an amino acid that is coded by only one specific sequence
b. An example of an amino acid that is coded by more than just a set of codons with a third
c. An example of an amino acid that demonstrates "wobble" in its codons
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- cggcaggagc cccccgacct cccaggcgga ccgccctccc tccccgcgcg cgggttccgg gcccggcgag agggcgcgag cacagccgag gccatggagg tgacggcgga ccagccgcgctgggtgagcc accaccaccc cgccgtgctc aacgggcagc acccggacac gggcctcagcc actcctacat ggacgcggcg cagtacccgc tgccggagga ggtggatgtg ctttttaaca tcgacggtca aggcaaccac gtcccgccct actacggaaa ctcggtcagg Provide the primers for the nucleotide sequence above (GATA3)gene51 please arrange the statements in rpoper orderSequence 1 : TACGCTACGGTAATC Sequence 2: TACGCTACTATCGTA
- AGTGCAGCTC CAGCCGACCC CCGGGACGTA GACAAGGGCA GGCGCGCGGT 50 GAAGACTGCG GCCGGCCGCG TAGCCGCGCT GTGGTCCCGC TGGCCTTCTC 100 TTGGGCCGCG CACCCTCCGG ACCTGCGTCG GGATCCTCCC GGAGTCTCCC 150 GCTCTCTCCT CCCGGCTTGC GAACATGCGG CCCCTTAAGC CCGGCGCCCC 200 TTTGCCCGCA CTCTTCCTGC TGGCGCTGGC TTTGTCCCCG CACGGAGCCC 250 ACGGGAGGCC CCGGGGGCGC AGGGGAGCGC GCGTCACGGA TAAGGAGCCC 300 AAGCCGTTGC TTTTCCTCCC CGCGGCCGGG GCCGGCCGGA CTCCCAGCGG 350 CTCCCGGAGC GCAGAAATAT TCCCAAGAGA CTCTAACTTA AAAGACAAAT 400 TCATAAAGCA TTTCACAGGG CCGGTCACAT TTTCACCAGA ATGCAGCAAA 450 CATTTCCACC GACTCTATTA CAATACCAGG GAGTGCTCAA CGCCAGCTTA 500 TTACAAAAGA TGTGCTAGAT TGTTAACAAG ATTAGCAGTG AGTCCACTGT 550 GCTCCCAGAC CTAGCAAAAC TACCCTACAT TTCCTAAGAA TGTACATCTA 600 ATTTGAAGAA AAAGTGCCTC AAATCATGCA AAATGTAAAA AAAGATGAAA 650 TTTATATTTT TATGGATATT AAGATGAGTA AAATAAGAGA CTTCCCAGAA 700 ATAACTGGTT AGCTGTTTCC TGTCATAGAA TGGAGTCTTT CTTGCTTTAT 750 CTTTTTGTGT ATACAGTAAT TTATAATTTT GTAAAACAGA GTTTGAATCG 800 CATATTGAAA ATTAGATATT AAAAATTGTG…Translate the mRNA into a protein using the genetic code. (Amino acid chain.) Sequence ATCTTCCCTCCTAAACGTTCAACCGGTTCTTAATCCGCCGCCAGGGCCCCGCCCCTCAGAAGTTGGTSequence BTCAGACGTTTTTGCCCCGTAACAACTTGTTACAACATGGTCATAAACGTCAGAGATGGTC AATCTCTTAATGACTSequence CTACAAACATGTAAACACACCCTCAGTGGACCAACTCCGCAACATAAACCAAACACCGCTC GCGCCGAAAAAGATATGGGive the amino acid sequence with some little explanation please. 5′ –GUACUAAGGAGGUUGUAUGGGUUAGGGG ACAUCAUUUUGA–3′
- What is the first amino acid encoded in your protein? A. Methionine B. Asparagine C. Proline D. Cysteine Gene Sequence (5'-to-3'): atggaccacctcggggcgtccctctggccccaggtcggctccctttgtctcctgctcgctggggccgcctgggcgcccccgcctaacctcc cggaccccaagttcgagagcaaagcggccttgctggcggcccgggggcccgaagagcttctgtgcttcaccgagcggttggaggactt ggtgtgtttctgggaggaagcggcgagcgctggggtgggcccgggcaactacagcttctcctaccagctcgaggatgagccatggaag ctgtgtcgcctgcaccaggctcccacggctcgtggtgcggtgcgcttctggtgttcgctgcctacagccgacacgtcgagcttcgtgcccct agagttgcgcgtcacagcagcctccggcgctccgcgatatcaccgtgtcatccacatcaatgaagtagtgctcctagacgcccccgtgg ggctggtggcgcggttggctgacgagagcggccacgtagtgttgcgctggctcccgccgcctgagacacccatgacgtctcacatccgc tacgaggtggacgtctcggccggcaacggcgcagggagcgtacagagggtggagatcctggagggccgcaccgagtgtgtgctgag caacctgcggggccggacgcgctacaccttcgccgtccgcgcgcgtatggctgagccgagcttcggcggcttctggagcgcctggtcg gagcctgtgtcgctgctgacgcctagcgacctggaccccctcatcctgacgctctccctcatcctcgtggtcatcctggtgctgctgaccgtg…Sequence A uuucccucuuagaauuaauucguaauauuuaucau uuaaauuuagcucccuccccccauuaauaaauaauu cuaucccaaaaucuacacaauguucuguguacacuu cuuauguuuuuuacuucugauaaacguuuuugaaaa aaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaa Sequence B uuucccucuuagaaugaaucucguaaugaaaaguc gaaaaaaauugugcucccuccccccauuaauaaau aauucuaucccaaaaucuacaca augu ucuguguacacuucuuauguuuuuuacuucugauaa acguuuuugaaaaaaaaaaaaaaaaaaaaaaaaaaa aaaaaaaaaa Q1a) Underline the Poly A signal in both sequences. Q1b) What is the sequence of the translational stop codon? Q1c) Which of these two mRNA isoforms is likely to be more stable? Q1d) Justify your answer to part Q1c).Convert the following DNA sequences to RNA sequences.Sequence # 1: CCGGTTCAGGCTTCACCACAGTGTGGAACGCGGTCGTCTCCGGCGACCSequence # 2:CTAAGGTTGCTAATCTCAGCGCTCCGCTGACCCCTCAGCAAAGGGCTTGSequence # 3:GCTCAATCTCGTCCAGCCATTGACCATCGTCGAGGGGTTTGCTCTGTTACSequence # 4:CAAAACGAAATCGAGCGCCATCTGCGGGCCCCGATTACGGACATCAGASequence # 5: TCCAACTCGGGGTCCGCATCGCTCCGCCGGCGACCGACGAAGTTCCGA
- Don't copy**ALL GROUPS HAVE A MUTATION MAKE SURE TO IDENTIFY THEM** Group B 5’-GGCAATGGGTTTGTGAAATTCTAAAAGTTTTTAATTC-3’ 3’-CCGTTACCCAAACACTTTAAGATTTTCAAAAATTAAG-5’ Group C 5’-GGCAATGGGTTTGTGCAATTCTAAGAGTTTTTAATTC-3’ 3’-CCGTTACCCAAACACGTTAAGATTCTCAAAAATTAAG-5’ Group D 5’-GGCAATGGGTTTGTGCAATTCTAACAGTTTTTAATTC-3’ 3’-CCGTTACCCAAACACGTTAAGATTGTCAAAAATTAAG-5’ Group E 5’-GGCAATGGGTTTTGCAATTCTAAAAGTTTTTAATTC-3’ 3’-CCGTTACCCAAAACGTTAAGATTTTCAAAAATTAAGBased on sequences A,B,C. Provide an anticodon sequence that would build this protein. Sequence ATCTTCCCTCCTAAACGTTCAACCGGTTCTTAATCCGCCGCCAGGGCCCCGCCCCTCAGAAGTTGGTSequence BTCAGACGTTTTTGCCCCGTAACAACTTGTTACAACATGGTCATAAACGTCAGAGATGGTCAATCTCTTAATGACTSequence CTACAAACATGTAAACACACCCTCAGTGGACCAACTCCGCAACATAAACCAAACACCGCTCGCGCCGAAAAAGATATGG