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Q.An α\alpha-helix is a structural feature of : (A) Sucrose (B) Starch (C) Polypeptides (D) Nucleotides

CBSECBSE Class XII Board 2023MCQ· 1mImportance★★★★★
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The α\alpha-helix is a secondary structure found in polypeptides (proteins), formed by hydrogen bonding between backbone amide groups. The correct answer is (C) Polypeptides.

The question asks which molecule can form an α\alpha-helix. This is a classic concept from biomolecule structure, specifically protein folding. The α\alpha-helix is not a random shape — it arises from a very specific pattern of hydrogen bonds within a single chain.

Let’s understand why each option is or isn’t correct.

  1. Sucrose (A) is a disaccharide (glucose + fructose). Its structure is a ring, held together by covalent glycosidic bonds. There is no long chain backbone with regularly spaced amide groups, so it cannot form an α\alpha-helix. Sucrose has no secondary structure at all.

  2. Starch (B) is a polysaccharide (polymer of glucose). It can form helical structures (like the amylose helix), but these are not α\alpha-helices. The starch helix is held together by hydrophobic interactions and hydrogen bonds between hydroxyl groups, not by the backbone amide hydrogen bonding pattern that defines the protein α\alpha-helix. The term “α\alpha-helix” is reserved for protein secondary structure.

  3. Polypeptides (C) are chains of amino acids linked by peptide bonds. The α\alpha-helix is a common secondary structure in proteins. Here’s the mechanism: the carbonyl oxygen of residue nn forms a hydrogen bond with the amide hydrogen of residue n+4n+4. This regular pattern (ii to i+4i+4) coils the backbone into a right-handed helix, with 3.6 amino acids per turn. The side chains point outward. This is the defining feature of an α\alpha-helix. …

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