RNA Write the mRNA and the polypeptide made from the RNA. Translation DNA Template strand Transcription TACGG TTAGACAAG GCGTGAGTACACA ATGCC CAATCTGTTCACGCACTCATGTGT
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- MRNA CODONS RESPONSIBLE FOR LINING UP EACH OF THE 20 AMINO ACIDS Amino Acid Code-End of the MRNA Codons* (anticodon) tRNA Alanine GCU Arginine Asparagine Aspartic Acid Cysteine Glutamic Acid AGA AAU GAU UGU GAA Glutamine CAA Glycine Histidine GGU CAU Isoleucine AUU Leucine CUU Lysine Methionine AAA AUG Phenylalanine Proline UUU CCU Serine UCU Threonine ACU Tryptophan Tyrosine Valine UGG UAU GUA * There are 64 codons. Some amino acids have several mRNA codons. There is, however, no overlap of codes. 1. You should be able to fill in the 3-letter "code-end" of the tRNA molecules in the table above. Remember, in RNA A pairs with U, and G pairs with C. There is no thymine. Fill in the table.MRNA CODONS RESPONSIBLE FOR LINING UP EACH OF THE 20 AMINO ACIDS Code-End of the Amino Acid MRNA Codons* (anticodon) tRNA Alanine GCU AGA Arginine Asparagine Aspartic Acid Cysteine Glutamic Acid Glutamine Glycine Histidine AAU GAU UGU GAA CAA GGU CAU AUU CUU AAA AUG Isoleucine Leucine Lysine Methionine UUU Phenylalanine Proline CCU UCU Serine ACU UGG Threonine Tryptophan Tyrosine Valine UAU GUA There are 64 codons. Some amino acids have several mRNA codor There is, however, no overlap of codes.mRNA sequence of A gene Write the amino acid sequence of the gene A. 5’ AAACUGUGACUGAACCUCAAACCCCAAACCAGCCCGAGGAGAACCACAUUCUCCCAGGGA CCCAGGGCGGGCCGUGACCCCUGCGGCGGAGAAGCCUUGGAUAUUUCCACUUCAGAAGCCUACUGGGGAAGGCUGAGGGGUCCCAGCUCCCCACGCUGGCUGCUGUGCAGAUGCUGGACGACAGAGCCAGGAGGGAGGCCGCCAAGAAGGAGAAGGUAGAGCAGAUCCUGGCAGAGUUCCAGCUGCAGGAGGAGGACCUGAAGAAGGUGAUGAGACGGAUGCAGAAGGAGAUGGACCGCGGCCUGAGGUAGAAGCCGCUGGGGCUUGGGGCU-3’
- mRNA sequence of A gene Find 5’ UTR and 3’UTR of mRNA 5’ AAACUGUGACUGAACCUCAAACCCCAAACCAGCCCGAGGAGAACCACAUUCUCCCAGGGA CCCAGGGCGGGCCGUGACCCCUGCGGCGGAGAAGCCUUGGAUAUUUCCACUUCAGAAGCCUACUGGGGAAGGCUGAGGGGUCCCAGCUCCCCACGCUGGCUGCUGUGCAGAUGCUGGACGACAGAGCCAGGAGGGAGGCCGCCAAGAAGGAGAAGGUAGAGCAGAUCCUGGCAGAGUUCCAGCUGCAGGAGGAGGACCUGAAGAAGGUGAUGAGACGGAUGCAGAAGGAGAUGGACCGCGGCCUGAGGUAGAAGCCGCUGGGGCUUGGGGCU-3’Template strand: 5' AATCATAACTCATTG 3' A. Write the CODING strand of this sequence, including the 5' and 3' end designations. B. Write the amino acid sequence coded by this mRNA. The start codon is the first codon in the sequence that codes for Met. First position (5'-end) U < G บบบ UUC phe UUA UUG CUU Couleu CUC Coc CUA CUG AUU AUG AUC ile GUU GUC GUA GUG Second position C UCU UCC UCA UCG val CCU co CCC CCA 000 CCG ACU ACC ACC AUA ACA thr AUA ACA AUG met ACG GCU GCC ser GCA GCG pro ala UAU ORD tyr UAC UAA Stop UAG Stop CAU CAC CAA CAG - AAU AAC www AAA 10 asn AAG 7 his GAU GAC GAA GAG gin }| lys asp glu UGU UGC cys UGA Stop UGG trp CGU C00 CGC CGA 000 CGG AGU AGC ACA AGA AGG GGU GGC GGA GGG Initiation Termination arg ser arg gly DUAL SUAU DUAU DUAG Third position (3-end)3’ – ACCTCTTACTTTTATATATAGGGAAGACTAATTGTC – 5’ Transcribe the template strand be sure to use the 5’ and 3’ directions appropriately on the mRNA, feel free to rewrite the DNA strand if needed to make it easier to interpret. Make sure to label the mRNA with a "5'cap" and place 10 A's to form the poly-A tail.
- Question 6 Review after transcription modification. Match the term and its description. Each term can only be used once. catalytic RNA molecules that function as enzymes | Choose ) Some genes can encode more than one kind of polypeptide, depending on which segments are treated as exons during splicing [ Choose ) Proteins often have a modular architecture consisting of discrete regions | Choose J >Given the following DNA sequence: 3'-TACTTNGTNCTNTCN-5' where N stands for any nucleotide, give the complementary mRNA sequence. Indicate direction of strand as 3'--> 5' or 5'--> 3' as in the given sequence above. Give the amino acid sequence of your mRNA sequencelin No. 1. Indicate direction of strand as above. Use all lowercase letters, 3-letter name of amino acid separated by a hyphen (-), no spaces in-between.mRNA Codon Chart: Second letter с บบบ UCU UAU Phe UUC UCC U Ser UAC Tyr UGU UGC Cys UUA UCA Leu UAA Stop UGA Stop A UUG UCG UAG Stop UGG Trp CUU CCU CAU CGU CUC CCC His CAC Leu Pro CUA CCA CAA CGA Arg Gin CUG CCG CAG CGG AUU ACU AAU AUC lle ACC AAC AGU ]Asn Ser AGC A Thr AUA ACA AAA Lys AGA Arg AUG Met ACG AGG GUU GCU GAU GUC GCC Val GAC Asp GGU GGC Ala GUA GCA GUG GCG GAG GGG GAA Glu GGA Gly Amino Acid 3-Letter Codes Name of Amino Name of Amino 3-Letter Code 3-Letter Code Acid Acid Alanine Ala Leucine Leu Arginine Arg Lysine Lys Asparagine sex Methionine Met (start) Aspartic Acid Asp Phenylalanine ebe Cysteine Cve Proline Pro Glutamic Acid Glu Serine Ser Glutamine Gln Threonine Glycine GLK Tryptophan JAR Histidine His Tyrosine Tyr Isoleucine lle Valine Val Exercise: Transcription & Translation 1. Choose 3 DNA Templates. 2. Write the mRNA sequence divided into 3 letter codons. 3. Write the sequence of amino acids. 4. Find the corresponding amino acid sequence and include the letter of…
- For the tRNA below, determine which amino acid it is charged with. attached amino acid G G GA 5' end c GOGGAUUU CUC G GAGC G C GCSAK & A 3' end ASSAGGCUUAA GACAC CCUGUG עכטט A GAAD anticodon C T U anticodon loop A GDNA MANNMANN B) mRNA Transcription Transport to cytoplasm for protein synthesis (translation) Mature mRNA b mRNA Cell membrane You are trying to explain to your classmate how DNA is used to make proteins. What should you include explanation? Select ALL that apply. During translation, the genetic code in mRNA is read and used to put amino acids in place to make a protein. During transcription, the genetic code in mRNA is read and used to put nucleotides in place to make a protein.Referring to the genetic code presented in Figure , give the aminoacids specified by the following bacterial mRNA sequences. Q. 5′ –AUGUUUAAAUUUAAAUUUUGA–3′