QUESTION IMAGE
Question
learning target: ap.5.3 - explain the molecular processes involved in the sliding filament model and biochemical mechanisms that provide energy for muscle contraction and relaxation.
instructions:
complete the following sentences and answer the questions related to muscle contraction. completing the muscle contraction interactive bioman game will help you.
- when a nerve impulse reaches a muscle, it causes ____________ to be released.
- calcium ions cause __________ to change shape and move ________ so that it no longer blocks myosin binding sites on __________.
- troponin causes __________ to move, so that __________ can bind to actin.
- what structure is formed when the myosin head binds to an actin filament during muscle contraction?
- what form of energy is needed to drive a muscle contraction?
- what is the first role of atp in a muscle contraction?
- how does atp release its stored energy?
Brief Explanations
- When a nerve impulse reaches a muscle, it causes calcium ions to be released. This is a key step in initiating muscle contraction as calcium is crucial for the subsequent events in the sliding filament model.
- Calcium ions cause troponin to change shape and move tropomyosin so that it no longer blocks myosin binding sites on actin. Troponin - tropomyosin complex plays a regulatory role in muscle contraction.
- Troponin causes tropomyosin to move, so that myosin can bind to actin. This binding is essential for the power stroke in muscle contraction.
- When the myosin head binds to an actin filament during muscle contraction, a cross - bridge is formed. Cross - bridges are responsible for the sliding of filaments.
- The form of energy needed to drive a muscle contraction is chemical energy in the form of ATP (adenosine triphosphate). ATP provides the energy for the movement of myosin heads.
- The first role of ATP in a muscle contraction is to bind to the myosin head and cause it to detach from actin. This is part of the cross - bridge cycle.
- ATP releases its stored energy by breaking the bond between its second and third phosphate groups, forming ADP (adenosine diphosphate) and inorganic phosphate.
Snap & solve any problem in the app
Get step-by-step solutions on Sovi AI
Photo-based solutions with guided steps
Explore more problems and detailed explanations
- calcium ions
- troponin; tropomyosin; actin
- tropomyosin; myosin
- cross - bridge
- chemical energy (ATP)
- to bind to the myosin head and cause it to detach from actin
- by breaking the bond between its second and third phosphate groups, forming ADP and inorganic phosphate