unu meleDy aln ncease In BIUUU giucose concentration. In the absence of glucose, cells rely on fats as a source of energy. 1. Protein Structure and Chemistry The primary structure of human insulin is shown below. It is made up of two polypeptide chains that come together in a quaternary structure. The first amino acid of each chain islabeled with the number 1. A handout with all amino acids and their structure and properties is provided on page 5. Primary structure of proteins 1a. Circle and label the amino and carboxyl ends in the primary structure of each polypeptide. Draw the appropriate functional groups at each end. Ceu Ala 1b. Identify and label one amino acid each with side groups that are: i) polar ii) non polar iii) acidic iv) basic Glu Chain B 30 amino acids His Secondary structure 1c. Show one H-bond that determines the secondary structure of the protein. You should indicate the bond in the diagram using appropriate functional groups. Gin Cya Chain A 21 amino acids Thr Gin LeuSer Tertiary structure 1d. Show an ionic bond formed in any one polypetide. You should indicate the interaction in the diagram and then draw the two interacting amino acids below. Hint: focus on the acidic and basic amino acids for this bond.

Biochemistry
6th Edition
ISBN:9781305577206
Author:Reginald H. Garrett, Charles M. Grisham
Publisher:Reginald H. Garrett, Charles M. Grisham
Chapter23: Fatty Acid Catabolism
Section: Chapter Questions
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unu meleDy aln ncease In BIUUU giucose concentration. In the absence of glucose, cells rely on fats as a
source of energy.
1. Protein Structure and Chemistry
The primary structure of human insulin is shown below. It is made up of two polypeptide chains that come
together in a quaternary structure. The first amino acid of each chain islabeled with the number 1. A
handout with all amino acids and their structure and properties is provided on page 5.
Primary structure of proteins
1a. Circle and label the amino and carboxyl ends in
the primary structure of each polypeptide. Draw the
appropriate functional groups at each end.
Ceu Ala
1b. Identify and label one amino acid each with side
groups that are:
i) polar
ii) non polar
iii) acidic
iv) basic
Glu
Chain B
30 amino acids
His
Secondary structure
1c. Show one H-bond that determines the secondary
structure of the protein. You should indicate the bond
in the diagram using appropriate functional groups.
Gin Cya
Chain A
21 amino acids
Thr
Gin
LeuSer
Tertiary structure
1d. Show an ionic bond formed in any one polypetide.
You should indicate the interaction in the diagram and
then draw the two interacting amino acids below. Hint: focus on the acidic and basic amino acids for this bond.
Transcribed Image Text:unu meleDy aln ncease In BIUUU giucose concentration. In the absence of glucose, cells rely on fats as a source of energy. 1. Protein Structure and Chemistry The primary structure of human insulin is shown below. It is made up of two polypeptide chains that come together in a quaternary structure. The first amino acid of each chain islabeled with the number 1. A handout with all amino acids and their structure and properties is provided on page 5. Primary structure of proteins 1a. Circle and label the amino and carboxyl ends in the primary structure of each polypeptide. Draw the appropriate functional groups at each end. Ceu Ala 1b. Identify and label one amino acid each with side groups that are: i) polar ii) non polar iii) acidic iv) basic Glu Chain B 30 amino acids His Secondary structure 1c. Show one H-bond that determines the secondary structure of the protein. You should indicate the bond in the diagram using appropriate functional groups. Gin Cya Chain A 21 amino acids Thr Gin LeuSer Tertiary structure 1d. Show an ionic bond formed in any one polypetide. You should indicate the interaction in the diagram and then draw the two interacting amino acids below. Hint: focus on the acidic and basic amino acids for this bond.
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