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Discrimination of assembled and disassembled forms of gizzard myosin by papain
Abstract:
Chicken gizzard myosin in 0.15 M or 0.5 M NaCl was cleaved at two sites of heavy chain with 2-10 micrograms/ml papain. MgATP inhibited these cleavages of myosin in 0.15 M NaCl but not in 0.5 M NaCl. The protective effect of ATP was observed at concentrations as low as 10 microM and increased in proportion to ATP concentration to a maximum at 1 mM. ADP was as effective as ATP, while adenosine 5'-[beta, gamma-imido]triphosphate, an unhydrolyzable ATP analogue, was less effective than ATP or ADP. AMP had no protective effect on the digestion of myosin and GTP inhibited slightly the digestion. When the papain-insensitive myosin in 0.15 M NaCl and 2.5 mM MgATP was phosphorylated by Ca2+/calmodulin-dependent myosin light-chain kinase, the myosin restored the vulnerability to papain. However, the two papain-susceptible forms, nonphosphorylated form in the absence of MgATP and phosphorylated form in the presence of MgATP, yielded very similar but distinct proteolytic fragments upon the digestion. When the extent of myosin assembly was estimated by the turbidimetry of myosin suspension in 0.15 M NaCl, nonphosphorylated myosin in the absence and presence of MgATP was assembled and disassembled, respectively, and phosphorylated myosin in the presence of MgATP was assembled. These results suggest that, at physiological ionic strength, papain as a probe distinguishes disassembled myosin and assembled myosin as papain-insensitive and papain-sensitive forms, respectively.
Insights
Chicken gizzard myosin
Area of Science:
- Muscle protein biochemistry
- Enzymatic cleavage studies
Background:
- Myosin, a key muscle protein, undergoes structural changes influencing its function.
- Understanding myosin's conformational states is crucial for muscle physiology research.
Purpose of the Study:
- To investigate how adenosine triphosphate (ATP) and phosphorylation affect chicken gizzard myosin's susceptibility to papain digestion.
- To determine if papain cleavage can differentiate between assembled and disassembled myosin states.
Main Methods:
- Chicken gizzard myosin was subjected to papain digestion under varying conditions (NaCl concentration, MgATP, phosphorylation).
- Proteolytic fragments were analyzed to assess cleavage sites.
- Myosin assembly state was measured using turbidimetry.
Main Results:
- MgATP protected myosin from papain cleavage at low ionic strength (0.15 M NaCl) but not at high ionic strength (0.5 M NaCl).
- Phosphorylation by Ca2+/calmodulin-dependent myosin light-chain kinase restored papain sensitivity to MgATP-bound myosin.
- Papain digestion patterns differed between nonphosphorylated (disassembled) and phosphorylated (assembled) myosin states.
Conclusions:
- Papain acts as a probe to distinguish between assembled (papain-sensitive) and disassembled (papain-insensitive) myosin states at physiological ionic strength.
- ATP and myosin phosphorylation play critical roles in regulating myosin's structural conformation and susceptibility to enzymatic cleavage.