Skip to content
Question of 48

Q.Draw a flow chart, showing the physiological processes involved in the formation of cross bridges during muscle contraction.

Kerala DhseKerala DHSE Plus One Board 2021Subjective· 2mImportance★★★★★
0% · 0/48 Questions
🔒 Locked · start free trial →

You're viewing a preview — the full solution, concept, methods & PYQ mapping are locked.

Start your 14-day free trial to unlock the full solution →

Cross-bridge formation is triggered by a nerve impulse that raises cytosolic Ca2+, which uncovers actin's myosin-binding sites so an ATP-energised myosin head can attach to actin and pull it inward.

Flow chart:

  1. A nerve impulse (action potential) arrives at the neuromuscular junction and triggers release of the neurotransmitter acetylcholine (ACh).
  2. ACh generates an action potential across the sarcolemma (muscle fibre membrane), which spreads inward via the transverse (T) tubules.
  3. This depolarisation causes the sarcoplasmic reticulum to release stored Ca2+ ions into the sarcoplasm (cytosol).
  4. The Ca2+ ions bind to troponin on the actin (thin) filament.
  5. Ca2+ binding to troponin causes a conformational change that shifts tropomyosin away from the myosin-binding (active) sites on actin, exposing them.
  6. The myosin head -- already energised by hydrolysis of ATP into ADP + Pi (held on the head) -- binds to the exposed active site on actin, forming a cross bridge.
  7. Release of Pi from the myosin head triggers the power stroke: the myosin head bends/rotates, pulling the actin filament inward (toward the centre of the sarcomere).
  8. ADP is then released from the myosin head.
  9. A new ATP molecule binds to the myosin head, causing it to detach from actin (breaking the cross bridge). …

Unlock everything free for 14 days

  • Full step-by-step solutions
  • Concept-first explanations
  • Methods, shortcuts & mistakes
  • PYQ mapping + timed mock tests

Full access for 14 days. No credit card required.