General, Organic, & Biological Chemistry
General, Organic, & Biological Chemistry
3rd Edition
ISBN: 9780073511245
Author: Janice Gorzynski Smith Dr.
Publisher: McGraw-Hill Education
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Chapter 22, Problem 22.75P

Consider the following mRNA sequence: 5 -CUU CAG CAC-3 .

  1. What amino acid sequence is coded for by this mRNA?
  2. What is the amino acid sequence if a mutation converts CAG to AAC?
  3. What is the amino acid sequence if a mutation converts CUU to CUC?
  4. What occurs when a mutation converts CAG to UAG?
  5. What occurs if CU is deleted from the beginning of the chain?

Expert Solution
Check Mark
Interpretation Introduction

(a)

Interpretation:

Peptide synthesized by the 5' CUU CAG CAC 3' mRNA should be identified.

Concept Introduction:

DNA and RNA transform genetic information of the living cells through triplet code, which is a sequence of three nucleotides on DNA or RNA molecules codes for a specific amino acid in protein synthesis.

Answer to Problem 22.75P

Peptide − Leu-Gln-His

Explanation of Solution

Codons are written from 5 prime end (5) to 3 prime end (3) of mRNA. There is a unique triplet representation for a particular amino acid. Below mentioned table represent the relationship between nucleotides and amino acids.

The Genetic Code- Triplets in Messenger RNA

General, Organic, & Biological Chemistry, Chapter 22, Problem 22.75P , additional homework tip  1

According to the above table; one amino acid has several triplets, but triplet code is unique for amino acid. CUU triplet is unique for Leucine. CAG triplet is unique for Glutamine. CAC is unique for Histidine.

Therefore, Leu-Gln-His is the amino acid sequence for 5' CUU CAG CAC 3'.

Expert Solution
Check Mark
Interpretation Introduction

(b)

Interpretation:

Peptide formed from mutated mRNA5' CUU CAG AAC3' should be identified.

Concept Introduction:

DNA and RNA transform genetic information of the living cells through triplet code, which is a sequence of three nucleotides on DNA or RNA molecules codes for a specific amino acid in protein synthesis.

Mutation is an alteration of a sequence of nucleotides in DNA. Mutations can be classified based on the change that results in a DNA molecule.

Answer to Problem 22.75P

Peptide − Leu-Gln-Asn

Explanation of Solution

Mutation is an alteration of a sequence of nucleotides in DNA. When mutation happens at a particular position of a DNA molecule, that mutation goes through mRNA and translate a wrong peptide.

Mutations can be classified based on the change that results in a DNA molecule. There are three types of mutations which can be classified as follows;

  1. Point mutations − A substitution of one nucleotide for another nucleotide.
  2. Deletion mutations − One or more nucleotides is lost from a particular DNA molecule.
  3. Insertion mutations − One or more nucleotides is added to a DNA molecule.

Codons are written from 5 prime end (5') to 3 prime end (3') of mRNA. There is a specific sequence of nucleotides for each amino acid. Below mentioned table represent the relationship between nucleotides and amino acids.

The Genetic Code- Triplets in Messenger RNA

General, Organic, & Biological Chemistry, Chapter 22, Problem 22.75P , additional homework tip  2

According to the above table; one amino acid has several triplets, but triplet code is unique for amino acid. CUU triplet is unique for Leucine. CAG triplet is unique for Glutamine. AAC is unique for Asparagine. There is a point mutation in the mRNA strand, which CAC in the normal strand converts to AAC in the mutated strand. The resulting protein is different from the un-mutated one.

Therefore, Leu-Gln-Asn is the amino acid sequence for 5' CUU CAG AAC 3'.

Expert Solution
Check Mark
Interpretation Introduction

(c)

Interpretation:

Peptide formed from mutated mRNA 5' CUC CAG CAC 3' should be identified.

Concept Introduction:

DNA and RNA transform genetic information of the living cells through triplet code, which is a sequence of three nucleotides on DNA or RNA molecules codes for a specific amino acid in protein synthesis.

Mutation is an alteration of a sequence of nucleotides in DNA. Mutations can be classified based on the change that results in a DNA molecule.

Answer to Problem 22.75P

Peptide − Leu-Gln-His.

Explanation of Solution

Mutation is an alteration of a sequence of nucleotides in DNA. When mutation happens at a particular position of a DNA molecule, that mutation goes through mRNA and translate a wrong peptide.

Mutations can be classified based on the change that results in a DNA molecule. There are three types of mutations which can be classified as follows;

  1. Point mutations − A substitution of one nucleotide for another nucleotide.
  2. Deletion mutations − One or more nucleotides is lost from a particular DNA molecule.
  3. Insertion mutations − One or more nucleotides is added to a DNA molecule.

Codons are written from 5 prime end (5') to 3 prime end (3') of mRNA. There is a specific sequence of nucleotides for each amino acid. Below mentioned table represent the relationship between nucleotides and amino acids.

The Genetic Code- Triplets in Messenger RNA

General, Organic, & Biological Chemistry, Chapter 22, Problem 22.75P , additional homework tip  3

According to the above table; one amino acid has several triplets, but triplet code is unique for amino acid. CUC triplet is unique for Leucine. CAG triplet is unique for Glutamine. CAC triplet is unique for Histidine. There is a point mutation in the mRNA strand, which CUU in the normal strand converts to CUC in the mutated strand. Though there is a point mutation in the strand, the resulting protein is not different from the un-mutated one.

Therefore, Leu-Gln-His is the amino acid sequence for 5' CUC CAG CAC 3'.

Expert Solution
Check Mark
Interpretation Introduction

(d)

Interpretation:

Peptide formed from mutated mRNA 5' CUU UAG CAC 3' should be identified.

Concept Introduction:

DNA and RNA transform genetic information of the living cells through triplet code, which is a sequence of three nucleotides on DNA or RNA molecules codes for a specific amino acid in protein synthesis.

Mutation is an alteration of a sequence of nucleotides in DNA. Mutations can be classified based on the change that results in a DNA molecule.

Answer to Problem 22.75P

Amino acid is Leucine and after that amino acid sequence generation is terminated.

Explanation of Solution

Mutation is an alteration of a sequence of nucleotides in DNA. When mutation happens at a particular position of a DNA molecule, that mutation goes through mRNA and translate a wrong peptide.

Mutations can be classified based on the change that results in a DNA molecule. There are three types of mutations which can be classified as follows;

  1. Point mutations − A substitution of one nucleotide for another nucleotide.
  2. Deletion mutations − One or more nucleotides is lost from a particular DNA molecule.
  3. Insertion mutations − One or more nucleotides is added to a DNA molecule.

Codons are written from 5 prime end (5') to 3 prime end (3') of mRNA. There is a specific sequence of nucleotides for each amino acid. Below mentioned table represent the relationship between nucleotides and amino acids.

The Genetic Code- Triplets in Messenger RNA

General, Organic, & Biological Chemistry, Chapter 22, Problem 22.75P , additional homework tip  4

According to the above table; one amino acid has several triplets, but triplet code is unique for amino acid. CUC triplet is unique for Leucine. UAG triplet is a unique for a stop codon. Hence, after this codon peptide synthesis is terminated. In this case required protein is not synthesized. Hence, the effect of this mutation may be catastrophic to the organism.

Therefore, Leu is the amino acid sequence for 5' CUU UAG CAC 3'

Expert Solution
Check Mark
Interpretation Introduction

(e)

Interpretation:

Peptide formed from mutated mRNA 5' UCAGCAC 3' should be identified.

Concept Introduction:

DNA and RNA transform genetic information of the living cells through triplet code, which is a sequence of three nucleotides on DNA or RNA molecules codes for a specific amino acid in protein synthesis.

Mutation is an alteration of a sequence of nucleotides in DNA. Mutations can be classified based on the change that results in a DNA molecule.

Answer to Problem 22.75P

Peptide − Ser-Ala

Explanation of Solution

Mutation is an alteration of a sequence of nucleotides in DNA. When mutation happens at a particular position of a DNA molecule, that mutation goes through mRNA and translate a wrong peptide.

Mutations can be classified based on the change that results in a DNA molecule. There are three types of mutations which can be classified as follows;

  1. Point mutations − A substitution of one nucleotide for another nucleotide.
  2. Deletion mutations − One or more nucleotides is lost from a particular DNA molecule.
  3. Insertion mutations − One or more nucleotides is added to a DNA molecule.

Codons are written from 5 prime end (5') to 3 prime end (3') of mRNA. There is a specific sequence of nucleotides for each amino acid. Below mentioned table represent the relationship between nucleotides and amino acids.

The Genetic Code- Triplets in Messenger RNA

General, Organic, & Biological Chemistry, Chapter 22, Problem 22.75P , additional homework tip  5

According to the above table; one amino acid has several triplets, but triplet code is unique for amino acid. Codons are written from 5 prime end (5') to 3 prime end (3') of mRNA and read as triplets, because of the deletion mutation which occurred here because of deletion of CU in the beginning of the mRNA, triplets are read as follows. UCA triplet is unique for Serine and GCA triplet is unique for Alanine. There is an additional A nucleotide, which is not involved into this peptide. Furthermore, this mutation generates totally different peptide and generated peptide is as follows; Ser-Ala is the amino acid sequence for 5' UCAGCAC 3'.

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Chapter 22 Solutions

General, Organic, & Biological Chemistry

Ch. 22.3 - Write the complementary strand for each of the...Ch. 22.4 - What is the sequence of a newly synthesized DNA...Ch. 22.6 - For each DNA segment: [1] What is the sequence of...Ch. 22.6 - Prob. 22.14PCh. 22.7 - What amino acid is coded for by each codon? GCC...Ch. 22.7 - What codons code for each amino acid? a. glycine...Ch. 22.7 - Drive the amino acid sequence that is coded for by...Ch. 22.7 - Write a possible mRNA sequence that codes for each...Ch. 22.7 - Considering the given sequence of nucleotides in...Ch. 22.8 - Prob. 22.20PCh. 22.8 - Prob. 22.21PCh. 22.8 - Prob. 22.22PCh. 22.9 - Prob. 22.23PCh. 22.9 - Prob. 22.24PCh. 22.10 - Prob. 22.25PCh. 22.11 - Prob. 22.26PCh. 22 - Label each statement as pertaining to DNA, RNA, or...Ch. 22 - Label each statement as pertaining to DNA, RNA, or...Ch. 22 - Prob. 22.29PCh. 22 - (a) Give the name of each compound shown as a...Ch. 22 - Prob. 22.31PCh. 22 - Prob. 22.32PCh. 22 - Prob. 22.33PCh. 22 - Prob. 22.34PCh. 22 - Prob. 22.35PCh. 22 - Draw the structure of each of the following: a...Ch. 22 - Prob. 22.37PCh. 22 - Prob. 22.38PCh. 22 - Prob. 22.39PCh. 22 - Prob. 22.40PCh. 22 - Prob. 22.41PCh. 22 - Draw the structures of the two possible...Ch. 22 - Prob. 22.43PCh. 22 - Draw the structure of each dinucleotide and...Ch. 22 - Draw the deoxyribonucleotide TGA. Label the 5 and...Ch. 22 - Draw the ribonucleotide CGU. Label the 5 and 3...Ch. 22 - Prob. 22.47PCh. 22 - Describe in detail the DNA double helix with...Ch. 22 - Write the sequence of the complementary strand of...Ch. 22 - Prob. 22.50PCh. 22 - Prob. 22.51PCh. 22 - Prob. 22.52PCh. 22 - Prob. 22.53PCh. 22 - Prob. 22.54PCh. 22 - Prob. 22.55PCh. 22 - Prob. 22.56PCh. 22 - Prob. 22.57PCh. 22 - Prob. 22.58PCh. 22 - Prob. 22.59PCh. 22 - Prob. 22.60PCh. 22 - Prob. 22.61PCh. 22 - What mRNA is transcribed from each DNA sequence in...Ch. 22 - Prob. 22.63PCh. 22 - Prob. 22.64PCh. 22 - For each codon, give its anticodon and the amino...Ch. 22 - Prob. 22.66PCh. 22 - Fill in the missing information in the schematic...Ch. 22 - Fill in the missing information in the schematic...Ch. 22 - Derive the amino acid sequence that is coded for...Ch. 22 - Prob. 22.70PCh. 22 - Prob. 22.71PCh. 22 - Prob. 22.72PCh. 22 - Prob. 22.73PCh. 22 - Prob. 22.74PCh. 22 - Consider the following mRNA sequence: . a. What...Ch. 22 - Consider the following mRNA sequence:...Ch. 22 - Consider the following sequence of DNA:...Ch. 22 - Consider the following sequence of DNA: . a. What...Ch. 22 - Prob. 22.79PCh. 22 - Prob. 22.80PCh. 22 - Prob. 22.81PCh. 22 - Prob. 22.82PCh. 22 - Prob. 22.83PCh. 22 - With reference to the gel in Problem 22.83: which...Ch. 22 - Prob. 22.85PCh. 22 - Prob. 22.86PCh. 22 - Prob. 22.87PCh. 22 - Prob. 22.88PCh. 22 - Prob. 22.89PCh. 22 - Prob. 22.90PCh. 22 - Prob. 22.91PCh. 22 - Fill in the base, codon, anticodon, or amino acid...Ch. 22 - Fill in the base, codon, anticodon, or amino acid...Ch. 22 - Fill in the base, codon, anticodon, or amino acid...Ch. 22 - Prob. 22.95PCh. 22 - If a single strand of a gene contains 678 bases,...Ch. 22 - Prob. 22.97PCh. 22 - Prob. 22.98PCh. 22 - Prob. 22.99CPCh. 22 - Prob. 22.100CP
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