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Question 31 of 39

Q.Describe the important steps in muscle contraction.

Telangana TsbieTelangana Board of Intermediate Education 2022Subjective· 4mImportance★★★★★
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Muscle contraction follows the sliding filament theory: actin filaments slide over myosin filaments, powered by ATP and triggered by Ca2+, shortening the sarcomere.

Step-by-step mechanism:

  1. Neural stimulation: A motor neuron releases acetylcholine at the neuromuscular junction, generating an action potential that spreads along the sarcolemma and down the T-tubules to the triads.
  2. Ca2+ release: The action potential triggers the sarcoplasmic reticulum's terminal cisternae to release stored Ca2+ ions into the sarcoplasm.
  3. Exposure of binding sites: Ca2+ binds to troponin, causing a conformational change that shifts tropomyosin away from the myosin-binding sites on the actin filament.
  4. Cross-bridge formation: The energised myosin head (which has hydrolysed ATP to ADP + Pi, held in a 'cocked' high-energy state) binds to the newly exposed site on actin, forming a cross-bridge.
  5. Power stroke: Release of ADP and Pi from the myosin head causes it to bend, pulling the actin filament inward towards the centre of the sarcomere (the H-zone) — this is the power stroke.
  6. Sliding of filaments: As many myosin heads repeat this cycle, the actin filaments slide over the myosin filaments, shortening the sarcomere — the I-band and H-zone narrow, while the A-band length remains unchanged. Collectively, shortening of all sarcomeres in a fibre causes the muscle to contract. …

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