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Q.Briefly explain the mechanism of muscle contraction.

Jammu Kashmir JkboseJammu and Kashmir Board of School Education (Class 11) 2025Subjective· 3mImportance★★★★★
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Muscle contraction is explained by the sliding filament theory - actin (thin) filaments are pulled inward over myosin (thick) filaments by repeated myosin head cross-bridge cycling, powered by ATP and triggered by calcium ions, shortening the sarcomere.

A skeletal muscle fibre contracts using the following sequence of events, known as the sliding filament theory:

  1. Signal generation: A motor neuron generates and transmits an action potential (nerve impulse) at the neuromuscular junction, releasing the neurotransmitter acetylcholine, which generates an action potential in the muscle fibre.
  2. Calcium release: This action potential spreads through the muscle fibre and reaches the sarcoplasmic reticulum, causing it to release stored calcium ions (Ca2+) into the sarcoplasm (cytoplasm of the muscle cell).
  3. Exposure of binding sites: The increased Ca2+ binds to troponin on the actin (thin) filament, causing a change in its shape. This shifts the tropomyosin thread that normally covers the myosin-binding sites on the actin filament, exposing them.
  4. Cross-bridge formation: The myosin head (of the thick filament), which is already energised by ATP hydrolysis (bound as ADP + Pi), now binds to the exposed active site on actin, forming a cross-bridge.
  5. Power stroke: The myosin head then releases the ADP and Pi and bends, pulling the actin filament inward (towards the centre of the sarcomere) - this is called the power stroke.
  6. Detachment and reset: A new ATP molecule binds to the myosin head, causing it to detach from actin. Hydrolysis of this ATP re-energises the myosin head, resetting it to bind again to a new site further along the actin filament.
  7. This cycle of attachment, power stroke, detachment, and re-attachment is repeated rapidly many times, so the actin filaments are progressively pulled over/slide past the myosin filaments toward the centre of the sarcomere. …

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