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- Mutated DNA Template Strand #1: 3’-T A C T G T C T G A C G A T C-5’ Amino acid sequence of peptide: Type of mutation:Mutated DNA Template Strand #2: 3’-T A C G G A C T G A C G A T C-5’ Complementary DNA sequence: mRNA sequence transcribed from template: Amino acid sequence of peptide: Type of mutation:ENE 2: Nose Style DNA Template Strand ATG- GGG- CTT- CTC- TTT MRNA tRNA Amino Acids APPEARANCE
- ANALYSIS ANALYSIS: A DNA strand undergoes all the process included in the central dogma. The DNA strand used as a template is given below: Parent strand DNA: DNA daughter strand: 5-AGA-ACT-AAA-CТА-ТСG-СTT-CGT-3' hnRNA: MRNA: original protein: mutated mRNA: mutated protein: second letter A G UUUPhe UCU) UCC UAU UGU Cys UUC U UUA UAC Tyr UGC Ser UAA stop UGA stop| A UAG stop UGG Trp UCA Leu UUG UCG G CUU CCU CAU CGU His CAC САА CUC CC CGC Leu Pro Arg A CUA ССА CG CGA Gln CAG SO AAU CUG CGG AUU ACU AGU AGC Ser A Asn AUC lle A AUA ACC AAC Thr AAA AAG Lys GAU АСА AUG Met ACG AGG Arg GUU GCU GGU U Asp GUC GGC GCC GCA GCG GAC Val GUA Ala Gly A GAG Glu GGG GAA GGA GUG G Translating the unmutated MRNA that was obtained after splicing, the original protein sequence will be? The original protein is [A] (For your answer, use the one-letter symbol (all caps) for the amino acid residues separated by dashes, e.g. C-A-S-H). first letter third letterDNA Replication: 1. Write in the new (complimentary) strands for each of the two halves of the DNA molecule below to show what the two semi-conserved strands would look like. A G T A C C G G G C A A A C T G C A T T G T G I I I I I I I I I I I I I I I I I I I I I I I I I I T C A T G G C C C G T T T G A C G T A A C A C old strand A G T A C C G G G C A A A C T G C A T T G T G new strand: new strand: old strand T C A T G G C C C G T T T G A C G T A A C A C Gene Expression: 2. Use your DNA strand to construct a part of a messenger RNA molecule. DNA A G T A C C G G G C A A A C T G C A T T G T G mRNA:Complete the complementary strand: DNA replication ATTCGAGGCTAA
- on 15: Given is a strand of DNA, fill in the corresponding RNA strand and find which amino acids that strand codes for. 1. DNA=-T-A-C-A-T-A-T-G-C-C-T-A-A-C-T- RNA= Amino acids= 2. DNA=-T-A-C-C-C-C-G-G-A-A-T-G-A-T-T- RNA= Amino acids= 3. DNA=-T-A-C-G-A-T-T-A-T-G-T-C-A-T-C- RNA= Amino acids= GENETIC CODE WORKSHEET 4. DNA= -T-A-C-G-C-T-A-T-T-T-G-A-A-C-T-M RNA= Amino acids= 5. DNA=-T-A-C-A-A-A-A-G-C-T-G-A-A-T-C- RNA= Amino acids= 300 AI 00DNA DNA Leading strand mRNA tRNA Amino Acid A T G A A A G T C A T T T A GStrand 1: C-G-T-A-T-C-T-C-A-T-A-G-C-TStrand 2 : A-A-A-G-A-T-A-T-C-A-C-C-C-AStrand 3 : T-A-G-C-C-C-T-G-G-T-C-T-T-TStrand 4 : A-C-C-G-G-C-T-C-G-A-C-T-T-C How to Fill Out This Chart: Write the number of the strand you are using in the first column, and then write out thenucleotides from the strand of DNA you picked in the boxes moving down the chart. Now, line up the first three nucleotides of the DNA strand with the first three spaces for mRNA.Write the matching nucleotide on the mRNA strand. (Remember to use Uracil).**Leave the short ones blank, that’s just to show you codons. Once you have your mRNA completed, fill out the mRNA column. You have now transcribed the strand of DNA to mRNA, which can now leave the nucleus. Remember acodon is a sequence of three nucleotides. Draw a box around all the codons (or three in a row). These areimportant for looking at how that information is translated into amino acids or Translation. Think of it asthe language of nucleotides is being…
- 10:39 E DNA/RNA/PROTEIN SYNTHESIS/M... 18 of 20 A DNA nucleotide is composed of what three parts and are held together by Phosphate, ribose, nitrogenous base and held together by hydrogen bonds Phosphate, deoxyribose and held together by hydrogen bonds Phosphate, ribose and held together by covalent bonds Phosphate, deoxyribose, nitrogenous base and held together by hydrogen bonds Next > IIPlease help me to answer the following: 1. Explain how the synthesis of a DNA daughter strand growing toward a replication fork differs from the synthesis of a daughter strand growing away from a replication fork. 2. The base sequence ACGTCT represents a portion of a single strand of DNA. Please draw the complete double stranded molecule for this portion of the strand and use the representation to illustrate the replication of the DNA strand.Please clearly identify the nucleotide bases involved, the new strands formed, and the daughter DNA molecules. 3. Please explain the origin of Okazaki fragments. Thank you very muxh for your help.DNA replication drawing