This MCQ module is based on: Proteins Amino Acids
Proteins Amino Acids
This assessment will be based on: Proteins Amino Acids
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Proteins Amino Acids
9.5 Proteins — The Workhorses of Life
Proteins are polypeptides — linear polymers of amino acids that fold into specific 3-D shapes. They are the most diverse and functionally varied class of biomolecules. Note: the dietary advertising claim "Proteins for muscle building" is true but understates them — proteins also act as enzymes, hormones, receptors, transporters, antibodies, contractile fibres and structural matrices.
| Protein | Function |
|---|---|
| Collagen | Intercellular ground substance / connective tissue — most abundant protein in animal kingdom |
| Trypsin | Enzyme — digests dietary proteins in small intestine |
| Insulin | Hormone — regulates blood glucose |
| Antibody (immunoglobulin) | Fights infections — binds antigens |
| Receptor | Detects signals (hormones, light, taste, smell) |
| GLUT-4 | Membrane transporter — enables glucose entry into muscle/fat cells |
| Haemoglobin | Carries O₂ in blood (in RBCs) |
| RuBisCO | Most abundant protein on Earth — fixes CO₂ in photosynthesis |
9.5.1 Amino Acids — The Twenty Letters of the Protein Alphabet
All proteins are built from just 20 different amino acids. Each amino acid has the same backbone — an α-carbon bonded to (i) an amino group —NH₂, (ii) a carboxyl group —COOH, (iii) a hydrogen H, and (iv) a variable R-group (side chain). The R-group differs in each of the 20 amino acids and determines its chemical character.
Classifying Amino Acids by R-group
| Class | R-group character | Examples (with code) |
|---|---|---|
| Non-polar (hydrophobic) | Hydrocarbon chains; water-fearing | Glycine (G), Alanine (A), Valine (V), Leucine (L), Methionine (M), Phenylalanine (F), Tryptophan (W), Proline (P), Isoleucine (I) |
| Polar uncharged | OH, amide; H-bond with water | Serine (S), Threonine (T), Cysteine (C), Asparagine (N), Glutamine (Q), Tyrosine (Y) |
| Acidic (− charged) | —COO⁻ in side chain | Aspartate (D), Glutamate (E) |
| Basic (+ charged) | —NH₃⁺ / —NH⁺ in side chain | Lysine (K), Arginine (R), Histidine (H) |
Essential vs Non-essential Amino Acids
Of the 20 amino acids, the human body cannot synthesise 9 of them — these are essential amino acids and must come from diet. The remaining 11 are non-essential — synthesised in our cells.
Zwitterion — The Amino Acid in Solution
In aqueous solution at physiological pH (≈ 7.4), amino acids exist as zwitterions (German for "double ion"). The —COOH gives up its proton to become —COO⁻, while —NH₂ accepts a proton to become —NH₃⁺. Net charge is zero but the molecule carries both charges:
H₃N⁺ — CHR — COO⁻ (zwitterion form)
9.6 The Peptide Bond
Two amino acids join when the —COOH of one reacts with the —NH₂ of another, losing one water molecule. The resulting —C(=O)—NH— linkage is a peptide bond.
A dipeptide has 2 amino acids, a tripeptide has 3, a polypeptide has many. A protein is one or more polypeptide chains folded into a functional 3-D shape.
9.7 Protein Structure — Four Levels
Linus Pauling's insight: a protein has four orders of structure, each built on the previous one.
| Level | Description | Bonds Holding It | Example |
|---|---|---|---|
| Primary (1°) | Linear sequence of amino acids (N-terminus to C-terminus) | Peptide bonds | Insulin sequence |
| Secondary (2°) | Local folding — right-handed α-helix or β-pleated sheet | H-bonds between backbone C=O and N—H | Wool keratin (helix); silk fibroin (sheet) |
| Tertiary (3°) | Overall 3-D folding of the polypeptide — globular or fibrous | H-bonds, ionic bonds, disulphide (—S—S—), hydrophobic interactions | Myoglobin |
| Quaternary (4°) | Spatial arrangement of multiple polypeptide subunits | Non-covalent + sometimes —S—S— between chains | Haemoglobin (4 chains: 2α + 2β) |
🎯 Interactive: Amino Acid R-Group Classifier
Pick an amino acid and check its R-group nature:
R-group class: —
Pick an amino acid above to see its properties.
—
Setup: Crack a raw egg into a transparent bowl. Observe the egg-white — it is clear and runny.
- Heat the bowl (microwave 30 s, or fry gently).
- Observe colour and texture change.
- Try adding lemon juice (acid) to another raw egg-white — observe.
Egg-white is mostly water + the protein albumin. In the raw egg, albumin molecules are folded compact tertiary structures dissolved in water — transparent.
On heating: The kinetic energy breaks weak H-bonds and ionic bonds holding the tertiary fold. Albumin unfolds (denatures), exposing previously buried hydrophobic R-groups. These tangle with neighbours → solid white network.
Acid effect: Lemon juice (citric acid) lowers pH, neutralises charged R-groups, disrupts ionic interactions → also denatures.
Reversibility: NO. Denaturation is essentially irreversible at the macroscopic level — you can't uncook an egg. (Primary sequence is preserved, but refolding is too difficult.)
Worked Examples
Worked Example 1: Counting Peptide Bonds
A polypeptide is made of 20 amino acids. How many peptide bonds does it contain? How many water molecules were released during its synthesis?
Peptide bonds = n − 1 = 20 − 1 = 19
Water molecules released = n − 1 = 19 (each peptide bond formation releases one H₂O).
Reasoning: The first amino acid contributes a free amine at N-terminus and the last contributes a free —COOH at C-terminus. Every "internal" amino acid contributes one peptide bond on each side, but bonds are shared between neighbours. So 20 residues link via 19 bonds.
Worked Example 2: Haemoglobin Subunits
Haemoglobin shows quaternary structure with 2 α-chains and 2 β-chains. (a) What level of structure connects 1 α-chain to 1 β-chain? (b) What is the consequence if a quaternary-disrupting drug is given?
(b) If quaternary structure is disrupted:
- The four chains dissociate into single α and β chains.
- Each chain retains its haem group but cannot exhibit cooperative oxygen binding — that needs subunit communication.
- Result: oxygen carrying capacity collapses; the patient develops severe hypoxia.
- This is essentially what happens in sickle cell anaemia — a Glu→Val mutation in β-chain alters the quaternary contact, making haemoglobin aggregate abnormally when deoxygenated.
🎯 Competency-Based Questions
Q1. The peptide bond is formed between which two functional groups? L1 Remember
Q2. The most abundant protein in the animal world is _____, and the most abundant protein in the whole biosphere is _____. L1 Remember
Whole biosphere: RuBisCO (Ribulose-1,5-bisphosphate carboxylase oxygenase) — the photosynthetic CO₂-fixing enzyme of green plants and cyanobacteria.
Q3. Compare and contrast α-helix and β-pleated sheet secondary structures. L4 Analyse
| Feature | α-helix | β-sheet |
| Shape | Right-handed coil | Pleated, side-by-side strands |
| H-bonds | Within same strand (intra) | Between adjacent strands (inter) |
| Residues per turn | 3.6 | 2 (strand) |
| R-groups point | Outward from helix | Alternately above and below sheet |
| Examples | α-keratin (wool, hair); myoglobin | β-keratin (feather, beak); silk fibroin |
Q4. Evaluate: A vegan claims they get all their protein needs without animal products. Is this scientifically valid? Justify. L5 Evaluate
- All 9 essential amino acids are available in plant sources, but no single plant food has all 9 in optimal proportions (unlike eggs/milk which are "complete proteins").
- Cereals (rice, wheat) lack lysine but have methionine.
- Pulses (dal, beans) lack methionine but have lysine.
- Combination strategy: Rice + dal (the staple Indian meal) provides a complete amino acid profile — this is why dal-chawal/khichdi is nutritionally excellent.
- Quinoa, soya bean, and amaranth are complete plant proteins on their own.
Q5. HOT (Create): Design a flowchart showing how a heritable mutation that changes ONE amino acid (e.g., Glu → Val) can cause a disease at the level of haemoglobin function. L6 Create
- DNA mutation: Single base change (A → T) at codon 6 of β-globin gene → CAG → CTG.
- RNA: Transcription produces mRNA with GAG → GUG.
- Translation: Codon GUG codes for Valine instead of Glutamate.
- Primary structure: 6th amino acid of β-chain is now Val (non-polar) instead of Glu (acidic, charged).
- Tertiary/Quaternary: Val is hydrophobic — creates a "sticky patch" on β-chain surface.
- Behaviour: When haemoglobin loses O₂, sticky patches link adjacent Hb molecules → long fibres → distort RBC into sickle shape.
- Symptom: Sickled RBCs block capillaries → pain, oxygen deprivation, organ damage → Sickle Cell Anaemia.
🧠 Assertion–Reason Questions
Choose: (A) Both true, R explains A. (B) Both true, R doesn't explain A. (C) A true, R false. (D) A false, R true.
A: Boiling an egg cannot be reversed by cooling.
R: Heat denatures egg albumin by breaking weak H-bonds and exposing hydrophobic R-groups that aggregate irreversibly.
A: Glycine is the simplest amino acid.
R: Its R-group is a hydrogen atom — the smallest possible side chain.
A: Haemoglobin shows quaternary structure but myoglobin does not.
R: Myoglobin is a single polypeptide chain whereas haemoglobin has four chains held together by inter-subunit bonds.