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AMP deaminase binding in contracting rat skeletal muscle

K W Rundell1, P C Tullson, R L Terjung

  • 1Department of Physiology, State University of New York Health Science Center, Syracuse.

Insights

AMP deaminase binds to myosin in vivo during intense muscle contractions, preceding IMP production. This binding is not dependent on cellular acidosis but may be linked to energy recovery limitations.

Area of Science:

  • Muscle Physiology
  • Biochemistry
  • Enzymology

Background:

  • AMP deaminase catalyzes AMP hydrolysis to IMP and NH3, crucial during high energy demand in skeletal muscle.
  • In vitro studies suggest AMP deaminase activation is linked to myosin binding.

Purpose of the Study:

  • To investigate the in vivo binding of AMP deaminase to myosin during muscle contractions.
  • To determine if AMP deaminase binding is associated with IMP production rates or cellular acidosis.

Main Methods:

  • Measurement of AMP deaminase activity in free and bound fractions of rat skeletal muscle homogenates.
  • In situ muscle contractions under varying conditions (normal, acidosis-induced, ischemia-induced) were performed.
  • Quantification of AMP deaminase binding percentages in different muscle types (fast-twitch, slow-twitch).

Main Results:

  • AMP deaminase is primarily free (cytosolic) in resting muscle (~90%).
  • Intense contractions significantly increased AMP deaminase binding (fast-twitch ~60%, slow-twitch ~50%), preceding IMP formation.
  • Binding was independent of cellular acidosis and remained elevated with limited energy recovery due to ischemia.

Conclusions:

  • In vivo AMP deaminase-myosin complex formation is not coupled to cellular acidosis.
  • Myosin binding likely plays a role in activating AMP deaminase for IMP formation during muscle contraction.
  • Energy recovery status influences AMP deaminase binding post-contraction.

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