Organic And Biological Chemistry
Organic And Biological Chemistry
7th Edition
ISBN: 9781305081079
Author: STOKER, H. Stephen (howard Stephen)
Publisher: Cengage Learning,
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Question
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Chapter 12, Problem 12.45EP

(a)

Interpretation Introduction

Interpretation: To identify the substances ATP, CoA–SH, FAD, and NAD+ that contains two ribose subunits within their structure

Concept introduction: The sum of various chemical reactions occurring in the human body is called metabolism and the reactions individually are known as metabolic reactions. During these metabolic reactions, the various metabolic intermediates are formed for the short time to complete the reactions.ATP,FAD,NAD+ and CoA–SH are examples of a metabolic intermediate.

ATP is a nucleotide which provides energy for the completion of various metabolic reactions occurring in our human body. The structure of ATP consists of adenine base, ribose sugar unit and the three phosphate group connected to each other by phosphoanhydride bonds. The structure of ATP is:

Organic And Biological Chemistry, Chapter 12, Problem 12.45EP , additional homework tip  1

Coenzyme A (CoA) is a coenzyme which is utilized in various metabolic reactions. The functions of coenzyme A include oxidation of pyruvate in the citric cycle and fatty acid oxidation. The structure of Coenzyme A (CoA) is:

Organic And Biological Chemistry, Chapter 12, Problem 12.45EP , additional homework tip  2

Flavin adenine dinucleotide exists in two forms: oxidized form (FAD) and reduced form (FADH2). The main function of flavin adenine dinucleotide is to act as an oxidizing agent and used by the cell in oxidation reactions like oxidation of fatty acid. The structure of FAD is:

Organic And Biological Chemistry, Chapter 12, Problem 12.45EP , additional homework tip  3

Nicotinamide adenine dinucleotide (NAD+) is employed as an oxidizing agent in various reactions like oxidation of secondary alcohol into a ketone. Its structure consists of three subunits: nicotinamide, ribose, and ADP. The structure of NAD+ is:

Organic And Biological Chemistry, Chapter 12, Problem 12.45EP , additional homework tip  4

Here,R=Ribose-ADP.

(a)

Expert Solution
Check Mark

Answer to Problem 12.45EP

NAD+ consists of two ribose unit in its structure.

Explanation of Solution

The structure of NAD+ consists of three subunits: nicotinamide, ribose, and ADP. ADP is a nucleotide which further consists of adenine base, ribose sugar unit and the two phosphate group connected to each other by phosphoanhydride bonds.

The structure of NAD+ is:

Organic And Biological Chemistry, Chapter 12, Problem 12.45EP , additional homework tip  5

Here,R=Ribose-ADP.

The structure of ATP is:

Organic And Biological Chemistry, Chapter 12, Problem 12.45EP , additional homework tip  6

The structure of coenzyme A (CoA) is:

Organic And Biological Chemistry, Chapter 12, Problem 12.45EP , additional homework tip  7

The structure of FAD is:

Organic And Biological Chemistry, Chapter 12, Problem 12.45EP , additional homework tip  8

The ribose subunit in each of the metabolic intermediate is highlighted. Here, the structure of NAD+ consists of two ribose units Hence the correct answer is NAD+ ATP and FAD consists of only one ribose unit and coenzyme A (CoA) consists of phosphorylated ribose.

(b)

Interpretation Introduction

Interpretation: To identify the substances ATP, CoA–SH, FAD, and NAD+ that contains two phosphate subunits within their structure

Concept introduction: The sum of various chemical reactions occurring in the human body is called metabolism and the reactions individually are known as metabolic reactions. During these metabolic reactions, the various metabolic intermediates are formed for the short time to complete the reactions. ATP, FAD,NAD+ and CoA–SH are examples of a metabolic intermediate.

ATP is a nucleotide which provides energy for the completion of various metabolic reactions occurring in our human body. The structure of ATP consists of adenine base, ribose sugar unit and the three phosphate group connected to each other by phosphoanhydride bonds. The structure of ATP is:

Organic And Biological Chemistry, Chapter 12, Problem 12.45EP , additional homework tip  9

Coenzyme A (CoA) is a coenzyme which is utilized in various metabolic reactions. The functions of coenzyme A include oxidation of pyruvate in the citric cycle and fatty acid oxidation. The structure of Coenzyme A (CoA) is:

Organic And Biological Chemistry, Chapter 12, Problem 12.45EP , additional homework tip  10

Flavin adenine dinucleotide exists in two forms: oxidized form (FAD) and reduced form (FADH2). The main function of flavin adenine dinucleotide is to act as an oxidizing agent and used by the cell in oxidation reactions like oxidation of fatty acid. The structure of FAD is:

Organic And Biological Chemistry, Chapter 12, Problem 12.45EP , additional homework tip  11

Nicotinamide adenine dinucleotide (NAD+) is employed as an oxidizing agent in various reactions like oxidation of secondary alcohol into a ketone. Its structure consists of three subunits: nicotinamide, ribose, and ADP. The structure of NAD+ is:

Organic And Biological Chemistry, Chapter 12, Problem 12.45EP , additional homework tip  12

Here,R=Ribose-ADP.

(b)

Expert Solution
Check Mark

Answer to Problem 12.45EP

CoA-SH, FAD and NAD+ contain two phosphate subunits in its structure.

Explanation of Solution

The structure of CoA-SH is:

Organic And Biological Chemistry, Chapter 12, Problem 12.45EP , additional homework tip  13

The structure of FAD is:

Organic And Biological Chemistry, Chapter 12, Problem 12.45EP , additional homework tip  14

The structure of NAD+ is:

Organic And Biological Chemistry, Chapter 12, Problem 12.45EP , additional homework tip  15

Here,R=Ribose-ADP.

The structure of NAD+ consists of ADP subunit. ADP is a nucleotide which further consists of adenine base, ribose sugar unit and the two phosphate group connected to each other by phosphoanhydride bonds.

The structure of ATP is:

Organic And Biological Chemistry, Chapter 12, Problem 12.45EP , additional homework tip  16

The phosphate subunit in each of the metabolic intermediate is highlighted. Here, the structure of NAD+,FAD and CoA-SH consist of two phosphate subunits Hence the correct answer is NAD+,FAD and CoA-SH. ATP consists of three phosphate subunit in its structure.

(c)

Interpretation Introduction

Interpretation: To identify the substances ATP, CoA–SH,FAD, and NAD+ that contains one adenine subunit within their structure

Concept introduction: The sum of various chemical reactions occurring in the human body is called metabolism and the reactions individually are known as metabolic reactions. During these metabolic reactions, the various metabolic intermediates are formed for the short time to complete the reactions. ATP,FAD,NAD+ and CoA–SH are examples of a metabolic intermediate.

ATP is a nucleotide which provides energy for the completion of various metabolic reactions occurring in our human body. The structure of ATP consists of adenine base, ribose sugar unit and the three phosphate group connected to each other by phosphoanhydride bonds. The structure of ATP is:

Organic And Biological Chemistry, Chapter 12, Problem 12.45EP , additional homework tip  17

Coenzyme A (CoA) is a coenzyme which is utilized in various metabolic reactions. The functions of coenzyme A include oxidation of pyruvate in the citric cycle and fatty acid oxidation. The structure of Coenzyme A (CoA) is:

Organic And Biological Chemistry, Chapter 12, Problem 12.45EP , additional homework tip  18

Flavin adenine dinucleotide exists in two forms: oxidized form (FAD) and reduced form (FADH2). The main function of flavin adenine dinucleotide is to act as an oxidizing agent and used by the cell in oxidation reactions like oxidation of fatty acid. The structure of FAD is:

Organic And Biological Chemistry, Chapter 12, Problem 12.45EP , additional homework tip  19

Nicotinamide adenine dinucleotide (NAD+) is employed as an oxidizing agent in various reactions like oxidation of secondary alcohol into a ketone. Its structure consists of three subunits: nicotinamide, ribose, and ADP.

The structure of NAD+ is:

Organic And Biological Chemistry, Chapter 12, Problem 12.45EP , additional homework tip  20

Here,R=Ribose-ADP.

(c)

Expert Solution
Check Mark

Answer to Problem 12.45EP

CoA-SH,FAD,NAD+ and ATP consists of one adenine subunits in its structure.

Explanation of Solution

The structure of CoA-SH is:

Organic And Biological Chemistry, Chapter 12, Problem 12.45EP , additional homework tip  21

The structure of FAD is:

Organic And Biological Chemistry, Chapter 12, Problem 12.45EP , additional homework tip  22

The structure of NAD+ is:

Organic And Biological Chemistry, Chapter 12, Problem 12.45EP , additional homework tip  23

Here,R=Ribose-ADP.

ADP is a nucleotide which further consists of adenine base, ribose sugar unit and the two phosphate group.

The structure of ATP is:

Organic And Biological Chemistry, Chapter 12, Problem 12.45EP , additional homework tip  24

The adenine subunit in each of the metabolic intermediate is highlighted. Here, the structure of NAD+,FAD, ATP and coenzyme A (CoA) consists of one adenine unit. Hence the correct answer is NAD+, ATP, FAD and coenzyme A (CoA)

(d)

Interpretation Introduction

Interpretation: To identify the substances ATP, CoA–SH, FAD, and NAD+ that contains four different kinds of subunits within their structure

Concept introduction: The sum of various chemical reactions occurring in the human body is called metabolism and the reactions individually are known as metabolic reactions. During these metabolic reactions, the various metabolic intermediates are formed for the short time to complete the reactions. ATP,FAD,NAD+ and CoA–SH are examples of a metabolic intermediate.

ATP is a nucleotide which provides energy for the completion of various metabolic reactions occurring in our human body. The structure of ATP consists of adenine base, ribose sugar unit and the three phosphate group connected to each other by phosphoanhydride bonds. The structure of ATP is:

Organic And Biological Chemistry, Chapter 12, Problem 12.45EP , additional homework tip  25

Coenzyme A (CoA) is a coenzyme which is utilized in various metabolic reactions. The functions of coenzyme A include oxidation of pyruvate in the citric cycle and fatty acid oxidation. The structure of Coenzyme A (CoA) is:

Organic And Biological Chemistry, Chapter 12, Problem 12.45EP , additional homework tip  26

Flavin adenine dinucleotide exists in two forms: oxidized form (FAD) and reduced form (FADH2). The main function of flavin adenine dinucleotide is to act as an oxidizing agent and used by the cell in oxidation reactions like oxidation of fatty acid. The structure of FAD is:

Organic And Biological Chemistry, Chapter 12, Problem 12.45EP , additional homework tip  27

Nicotinamide adenine dinucleotide (NAD+) is employed as an oxidizing agent in various reactions like oxidation of secondary alcohol into a ketone. Its structure consists of three subunits: nicotinamide, ribose, and ADP. The structure of NAD+ is:

Organic And Biological Chemistry, Chapter 12, Problem 12.45EP , additional homework tip  28

Here,R=Ribose-ADP.

(d)

Expert Solution
Check Mark

Answer to Problem 12.45EP

CoA-SH,FAD, and NAD+ contain four different kinds of subunits in its structure.

Explanation of Solution

The structure of CoA-SH is:

Organic And Biological Chemistry, Chapter 12, Problem 12.45EP , additional homework tip  29

The structure of FAD is:

Organic And Biological Chemistry, Chapter 12, Problem 12.45EP , additional homework tip  30

The structure of NAD+ is:

Organic And Biological Chemistry, Chapter 12, Problem 12.45EP , additional homework tip  31

Here,R=Ribose-ADP.

NAD+ consists of three subunits: nicotinamide, ribose, and ADP. The ADP further consists of the adenine base, ribose sugar unit, and the two phosphate group. Hence there are four different groups in NAD+.

The structure of ATP is:

Organic And Biological Chemistry, Chapter 12, Problem 12.45EP , additional homework tip  32

The different kinds of the subunits in metabolic intermediate are highlighted. Here, the structure of NAD+,FAD and CoA-SH consists of four different kinds of subunits Hence the correct answer is NAD+,FAD and CoA-SH. ATP consists of three different kinds of the subunit in its structure.

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Chapter 12 Solutions

Organic And Biological Chemistry

Ch. 12.3 - Which of the following statements concerning...Ch. 12.4 - Prob. 1QQCh. 12.4 - Prob. 2QQCh. 12.5 - Prob. 1QQCh. 12.5 - Prob. 2QQCh. 12.5 - Prob. 3QQCh. 12.6 - Which of the following occurs in the second stage...Ch. 12.6 - Which of the following stages in the biochemical...Ch. 12.6 - Prob. 3QQCh. 12.7 - Prob. 1QQCh. 12.7 - Prob. 2QQCh. 12.7 - Prob. 3QQCh. 12.7 - How many NADH and FADH2 molecules are produced,...Ch. 12.7 - Which of the following citric acid cycle...Ch. 12.7 - In which of the following listings of citric acid...Ch. 12.8 - Which of the following is a fuel for the electron...Ch. 12.8 - Which of the following is a mobile electron...Ch. 12.8 - What is the substrate that initially interacts...Ch. 12.8 - The number of fixed enzyme sites in the electron...Ch. 12.8 - Prob. 5QQCh. 12.8 - In which step in the electron transport chain does...Ch. 12.9 - Prob. 1QQCh. 12.9 - Prob. 2QQCh. 12.9 - Prob. 3QQCh. 12.10 - Prob. 1QQCh. 12.10 - Prob. 2QQCh. 12.11 - Prob. 1QQCh. 12.11 - Prob. 2QQCh. 12.11 - Prob. 3QQCh. 12.12 - How many different B vitamins participate in the...Ch. 12.12 - Prob. 2QQCh. 12 - Classify anabolism and catabolism as synthetic or...Ch. 12 - Classify anabolism and catabolism as...Ch. 12 - What is a metabolic pathway?Ch. 12 - Prob. 12.4EPCh. 12 - Classify each of the following processes as...Ch. 12 - Prob. 12.6EPCh. 12 - Prob. 12.7EPCh. 12 - Prob. 12.8EPCh. 12 - Prob. 12.9EPCh. 12 - Indicate whether each of the following statements...Ch. 12 - Prob. 12.11EPCh. 12 - Prob. 12.12EPCh. 12 - Prob. 12.13EPCh. 12 - Prob. 12.14EPCh. 12 - Prob. 12.15EPCh. 12 - Prob. 12.16EPCh. 12 - Prob. 12.17EPCh. 12 - Prob. 12.18EPCh. 12 - Prob. 12.19EPCh. 12 - Prob. 12.20EPCh. 12 - Prob. 12.21EPCh. 12 - Prob. 12.22EPCh. 12 - Prob. 12.23EPCh. 12 - Write a generalized chemical equation, containing...Ch. 12 - Prob. 12.25EPCh. 12 - Prob. 12.26EPCh. 12 - Prob. 12.27EPCh. 12 - Prob. 12.28EPCh. 12 - Prob. 12.29EPCh. 12 - Prob. 12.30EPCh. 12 - Prob. 12.31EPCh. 12 - Prob. 12.32EPCh. 12 - Prob. 12.33EPCh. 12 - Prob. 12.34EPCh. 12 - What identical structural subunits do the...Ch. 12 - Prob. 12.36EPCh. 12 - Prob. 12.37EPCh. 12 - Prob. 12.38EPCh. 12 - Prob. 12.39EPCh. 12 - Prob. 12.40EPCh. 12 - Prob. 12.41EPCh. 12 - Prob. 12.42EPCh. 12 - Classify each of the following molecules as (1) an...Ch. 12 - Prob. 12.44EPCh. 12 - Prob. 12.45EPCh. 12 - Prob. 12.46EPCh. 12 - Prob. 12.47EPCh. 12 - Prob. 12.48EPCh. 12 - Prob. 12.49EPCh. 12 - Prob. 12.50EPCh. 12 - Prob. 12.51EPCh. 12 - Prob. 12.52EPCh. 12 - Prob. 12.53EPCh. 12 - Prob. 12.54EPCh. 12 - Prob. 12.55EPCh. 12 - Prob. 12.56EPCh. 12 - Prob. 12.57EPCh. 12 - Prob. 12.58EPCh. 12 - List, by name, the four general stages of the...Ch. 12 - Which, by name, of the four general stages of the...Ch. 12 - Prob. 12.61EPCh. 12 - Prob. 12.62EPCh. 12 - Prob. 12.63EPCh. 12 - Prob. 12.64EPCh. 12 - Prob. 12.65EPCh. 12 - Prob. 12.66EPCh. 12 - Prob. 12.67EPCh. 12 - Prob. 12.68EPCh. 12 - Prob. 12.69EPCh. 12 - Prob. 12.70EPCh. 12 - Prob. 12.71EPCh. 12 - Prob. 12.72EPCh. 12 - Prob. 12.73EPCh. 12 - Prob. 12.74EPCh. 12 - Prob. 12.75EPCh. 12 - Prob. 12.76EPCh. 12 - Prob. 12.77EPCh. 12 - Prob. 12.78EPCh. 12 - Prob. 12.79EPCh. 12 - Prob. 12.80EPCh. 12 - Prob. 12.81EPCh. 12 - Prob. 12.82EPCh. 12 - Prob. 12.83EPCh. 12 - Prob. 12.84EPCh. 12 - Prob. 12.85EPCh. 12 - Prob. 12.86EPCh. 12 - Prob. 12.87EPCh. 12 - Prob. 12.88EPCh. 12 - Prob. 12.89EPCh. 12 - Indicate whether each of the following changes...Ch. 12 - Prob. 12.91EPCh. 12 - Prob. 12.92EPCh. 12 - Prob. 12.93EPCh. 12 - Prob. 12.94EPCh. 12 - Prob. 12.95EPCh. 12 - Prob. 12.96EPCh. 12 - Prob. 12.97EPCh. 12 - Prob. 12.98EPCh. 12 - Prob. 12.99EPCh. 12 - Prob. 12.100EPCh. 12 - Prob. 12.101EPCh. 12 - Prob. 12.102EPCh. 12 - Prob. 12.103EPCh. 12 - Prob. 12.104EPCh. 12 - Prob. 12.105EPCh. 12 - Prob. 12.106EPCh. 12 - Prob. 12.107EPCh. 12 - Prob. 12.108EPCh. 12 - Prob. 12.109EPCh. 12 - Prob. 12.110EPCh. 12 - Prob. 12.111EPCh. 12 - Prob. 12.112EPCh. 12 - Prob. 12.113EPCh. 12 - Prob. 12.114EPCh. 12 - Prob. 12.115EPCh. 12 - Prob. 12.116EPCh. 12 - Prob. 12.117EPCh. 12 - Prob. 12.118EPCh. 12 - Prob. 12.119EPCh. 12 - Prob. 12.120EPCh. 12 - Prob. 12.121EPCh. 12 - Prob. 12.122EPCh. 12 - Prob. 12.123EPCh. 12 - Prob. 12.124EPCh. 12 - Prob. 12.125EPCh. 12 - Prob. 12.126EPCh. 12 - Prob. 12.127EPCh. 12 - Prob. 12.128EPCh. 12 - Indicate whether or not each of the following B...Ch. 12 - Prob. 12.130EPCh. 12 - Prob. 12.131EPCh. 12 - Prob. 12.132EP
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