MUTATION-BASE SUBSTITUTION Change the 14th base of the DNA to guanine "G". Construct a new, mutated mRNA and protein Normal Unzipped DNA strand T A C A C C C T A A G A A T A A A A T A A A T T mRNA strand anti-codon on tRNA amino acid What effect does this have one the mRNA compared to the first strand? On your protein structure?
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- Mutated DNA Sequence #2: T A C G A C C T T G G C G A C G A C TWhat’s the mRNA sequence?What will be the amino acid sequence?What kind of mutation is this?Will there likely be effects?codon: 1 2 3 4 5 6 7 sequence: TAC ATG GAC AAT GAT TAG GGG 1. What is the sequence of the peptide that would result following translation with a ribosome? Write your answer like this Met Ala Gly...... 2. What mutation(s) would change the peptide to Met Asp Asn Gly Leu Gly ? Use the codon numbers to help describe where the mutation is located . What mutation(s) would eliminate peptide translation? Use the codon numbers to help describe where the mutation is locatedName: Date: 2. The sequence of a fragment of one strand of DNA is AATTGCATATACGGGAAATACGACCGG. Transcribe this s sequence into MRNA. er bns eldst eboo oi ebitqeqylog erlt to noihiog eri qu elsm bluow tsri abios onime Jlaw as ye s 1ot noitem atelomet AHG 3. The following MRNA ştrand is being used to asemble a polyp
- 10. A portion of 5'-AUGCCACGAGUUGAC-3'. What amino acid sequence does this code for? To answer the question please: I) explain what is the genetic code and list the properties of the genetic e 2) draw a diagram of protein synthesis; 3) determine which tRNA should be attached to the mRNA; 4) what is the anticodon for the very first tRNA that will attach to mRNA? mRNA molecule has the sequence anpen+ GEAR Normal DNA Normal RNA Amino Acids Mutant DNA Mutant RNA: Name: FRAMESHIFT MUTATIONS occur when a base is added (or removed) from 8. Determine the amino acid chain coded for by the following sequence. Supp another A is added after the first codon. Complete the chart showing the amir normal and mutant sequence. Amino Acids Investigation: DNA. Proteins. and Mutatic TGG AGT CGA GGT TGG AAG TCG AGG T Why are frameshift mutations likely to cause more problems than a p 9. Cystic fibrosis is a disease that causes mucus to build up in th misshapen protein in the cell membrane which interferes with the popociated with the disorderAnalyzing mRNA Sequences 1. Analyze the following amino acid sequence and write down a potential mRNA sequence from which this sequence might have been translated. Use the codon table in your book to determine a possible mRNA sequence. Amino Acid Sequence 1: H,N*-Methionine-Valine-Histidine-Leucine- Threonine-Proline-Glutamic Acid-Glutamic Acid- COO 2. (a) Consider Amino Acid Sequence 2. How is Amino Acid Sequence 2 different from Amino Acid Sequence 1? Amino Acid Sequence 2: H,N*-Methionine-Valine-Histidine-Leucine- Threonine-Proline-Valine-Glutamic Acid-CO (b) Write a potential mRNA sequence for Amino Acid sequence 2, using the same codons for any given amino acid if it is present in both sequences.
- TRANSCRIPTION ein The DNA provided for your animal is one side of the double helix. DNA - MRNA 1. Transcribe the DNA strand into mRNA. Don't forget the special base pair ham AU rules for RNA! VERSION 2 TA Fuentes- 2. Translate the mRNA into an amino acid chain. Notice that this is broken into 1 i nucleotide sequences called CODONS. Use the codon chart to find the i correct amino acids. Remember, translation for each chain always starts with the amino acid methionine (Met) and ends with one of the stop codons (UGA, UAG, UAA). C G G C ity you Co deter y Fuentes- code DNA TAC TGG GGT GT C стс TAG CTA ATC TAC IG G AC G cCc ACC GGT ATG ΑΤΤ thousar ytakes And se MRNA d or create AA Turn in 1l tables DNA TAC CAT TAC C GT CCC TC G GT T AT C TAC AAC AGG CCT TT G GC T CCG ACT MRNA thesis nments AA to Sean Che comme DNA TAC TTG GT T CT C CT G тст ACA ACT TAC CAT CGA TTG GGG T G T TAG ATC S comm MRNA AA Decide if you want to illustrate a horse, coyote, or a cat - get the phenotype information from…TRANSCRIPTION The DNA provided for your animal is one side of the double helix. DNA - MRNA otein 1. Transcribe the DNA strand into mRNA. Don't forget the special base pair → rules for RNA! AU TA VERSION 1 2. Translate the mRNA into an amino acid chain. Notice that this is broken into 1 nucleotide sequences called CODONS. Use the codon chart to find the correct amino acids. Remember, translation for each chain always starts with the amino acid methionine (Met) and ends with one of the stop codons (UGA, UAG, UAA). C G Cheatham G C oints Fuer DNA TAC ATA A CA GTC стт TAG CT A AT C TAC T GG ACA GGT ACC ATA ACT = activity you mber to deter = may code Fuer MRNA veral thousar ctivity takes on 2). And se AA o pp DNA TA C C G T CcC A GT GT C T G C A A A ACT TAC GACAGC TAC GT G G C T сс ATC Turn in lete all tables MRNA AA n Synthesis mment DNA TAC сТА CT T G T C T T G G C C ACG AT T TAC CAT C C G GA C GG G TAC T TA A T C Class comme to Sea aclass comm MRNA AAMutated DNA Sequence #4 ТАСАС СТTGG CGACT АСТ... What's the mRNA sequence? (Circle the change) amino acid sequence? Will there likely be effects? What type of mutation is this?
- TRANSCRIPTION The DNA provided for your animal is one side of the double helix. DNA - MRNA | 1. Transcribe the DNA strand into MRNA. Don't forget the special base pair rules for RNA! AU TA veRSIon 2 2. Translate the MRNA into an amino acid chain. Notice that this is broken into 1 i nucleotide sequences called CODONS. Use the codon chart to find the i correct amino acids. Remember, translation for each chain always starts with the amino acid methionine (Met) and ends with one of the stop codons (UGA, UAG, UAA). C G G C IGG GGI G IC CIC IAG CIA AIC Iac IGG ACG ccc Acc AI G DNA TAC GGT ATI MRNA AA DNA TAC CAT I AC CGI cCc IC G GTT A IC IA C A AC AGG CCI IIG GCT CCG ACI MRNA AA DNA I AC I T G GII CIC CIG ICI A C A ACI IAC CAI CGA IT G G GG TGI TAG A T C MRNA AA Decide if you want to illustrate a horse, coyote. or a cat - get the phenotype information from your teacher.Sources of Variability 1. If a point mutation occurred so that adenine was changed to thymine in the amino acid triplet code CTA, what would the resulting amino acid be? 3. What is the complementary DNA code for the following base sequence (from a section of DNA)? ATG C C C G G C CT TATTTTCTACA TGGT b. What is the complementary mRNA code? c. What is the tRNA code for this sequence? ACTTMutated DNA Sequence #1 T A C A T C T T G G C G A C G A C T … What’s the mRNA sequence? (Circle the change) What will be the amino acid sequence? Will there likely be effects? What type of mutation is this?