Role of cholesterol in eukaryotic membranes: Why is cholesterol essential for normal membrane function?
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AIt plugs up the cardiac arteries of older men
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BIt cannot be made by higher organisms
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CIt keeps membranes fluid
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DIt spans the full thickness of the bilayer as a transmembrane rod
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EIt serves as the primary ATP source for embedded proteins
Answer
Correct Answer: It keeps membranes fluid
Explanation
Introduction / Context: Cholesterol is a major sterol in animal cell membranes. It modulates membrane physical properties, which in turn affect protein function, permeability, and signaling domains.
Given Data / Assumptions:
- Eukaryotic membranes contain varying amounts of cholesterol (high in animal cells).
- Question asks for the correct functional role.
Concept / Approach: Cholesterol intercalates among phospholipid tails, reducing excessive fluidity at high temperatures and preventing tight packing and gel formation at low temperatures. Net effect: maintenance of appropriate membrane fluidity and decreased permeability to small solutes.
Step-by-Step Solution: Consider physical role → fluidity buffer and ordering agent. Reject answers unrelated to membrane physics (arterial plaques, ATP source). Note cholesterol does not span bilayer; it sits within one leaflet depth influencing order. Select option stating “keeps membranes fluid”.
Verification / Alternative check: Differential scanning calorimetry and diffusion studies show cholesterol broadens phase transitions and stabilizes liquid-ordered states.
Why Other Options Are Wrong: (a) Pathological statement unrelated to function; (b) higher organisms do synthesize cholesterol; (d) not a transmembrane protein; (e) cholesterol is not an energy currency.
Common Pitfalls: Assuming cholesterol only “stiffens” membranes; in fact, it buffers fluidity depending on temperature and composition.
Final Answer: It keeps membranes fluid.