QUESTION IMAGE
Question
determine the following: (25 pts)
- the amino acid sequence using 3-letter code
- the amino acid sequence using 1-letter code
- the n-terminal amino acid
- the c-terminal amino acid
- the number of peptide bonds in the structure
1. Amino acid sequence (3 - letter code)
Step 1: Identify each amino acid by R - group
- First amino acid (N - terminal): Has \(H_3\stackrel{+}{N}-CH_2 - CO - \), R - group is \( - H\) (Glycine, Gly)
- Second amino acid: R - group is \( - CH_2 - OH\) (Serine, Ser)
- Third amino acid: R - group is \( - CH(CH_3)_2\) (Valine, Val)
- Fourth amino acid: R - group is \( - CH_3\) (Alanine, Ala)
- Fifth amino acid (C - terminal): R - group is \( - CH_2 - SH\) (Cysteine, Cys) (note the C - terminal has a \( - COO^-\) group)
So the 3 - letter sequence is Gly - Ser - Val - Ala - Cys
2. Amino acid sequence (1 - letter code)
Step 1: Recall 1 - letter codes
- Glycine (Gly) → G
- Serine (Ser) → S
- Valine (Val) → V
- Alanine (Ala) → A
- Cysteine (Cys) → C
So the 1 - letter sequence is G - S - V - A - C
3. N - Terminal amino acid
Step 1: Define N - Terminal
The N - terminal amino acid is the one with the free amino group (\(H_3\stackrel{+}{N}-\)) at the start of the peptide chain. From the structure, the first amino acid (with \(H_3\stackrel{+}{N}-\)) has R - group \( - H\), which is Glycine (Gly)
4. C - Terminal amino acid
Step 1: Define C - Terminal
The C - terminal amino acid is the one with the free carboxylate group (\( - COO^-\)) at the end of the peptide chain. From the structure, the last amino acid has R - group \( - CH_2 - SH\) and \( - COO^-\), which is Cysteine (Cys)
5. Number of peptide bonds
Step 1: Recall peptide bond formula
For a peptide with \(n\) amino acids, the number of peptide bonds is \(n - 1\). Here, we have 5 amino acids.
So number of peptide bonds \(=5 - 1 = 4\) (we can also count the \( - CO - NH -\) linkages: there are 4 such linkages between 5 amino acids)
1. Answer: Gly - Ser - Val - Ala - Cys
2. Answer: G - S - V - A - C
3. Answer: Glycine (Gly)
4. Answer: Cysteine (Cys)
5. Answer: 4
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1. Amino acid sequence (3 - letter code)
Step 1: Identify each amino acid by R - group
- First amino acid (N - terminal): Has \(H_3\stackrel{+}{N}-CH_2 - CO - \), R - group is \( - H\) (Glycine, Gly)
- Second amino acid: R - group is \( - CH_2 - OH\) (Serine, Ser)
- Third amino acid: R - group is \( - CH(CH_3)_2\) (Valine, Val)
- Fourth amino acid: R - group is \( - CH_3\) (Alanine, Ala)
- Fifth amino acid (C - terminal): R - group is \( - CH_2 - SH\) (Cysteine, Cys) (note the C - terminal has a \( - COO^-\) group)
So the 3 - letter sequence is Gly - Ser - Val - Ala - Cys
2. Amino acid sequence (1 - letter code)
Step 1: Recall 1 - letter codes
- Glycine (Gly) → G
- Serine (Ser) → S
- Valine (Val) → V
- Alanine (Ala) → A
- Cysteine (Cys) → C
So the 1 - letter sequence is G - S - V - A - C
3. N - Terminal amino acid
Step 1: Define N - Terminal
The N - terminal amino acid is the one with the free amino group (\(H_3\stackrel{+}{N}-\)) at the start of the peptide chain. From the structure, the first amino acid (with \(H_3\stackrel{+}{N}-\)) has R - group \( - H\), which is Glycine (Gly)
4. C - Terminal amino acid
Step 1: Define C - Terminal
The C - terminal amino acid is the one with the free carboxylate group (\( - COO^-\)) at the end of the peptide chain. From the structure, the last amino acid has R - group \( - CH_2 - SH\) and \( - COO^-\), which is Cysteine (Cys)
5. Number of peptide bonds
Step 1: Recall peptide bond formula
For a peptide with \(n\) amino acids, the number of peptide bonds is \(n - 1\). Here, we have 5 amino acids.
So number of peptide bonds \(=5 - 1 = 4\) (we can also count the \( - CO - NH -\) linkages: there are 4 such linkages between 5 amino acids)