Abstract

The interaction of myosin and actin in many invertebrate muscles is mediated by the direct binding of Ca2+ to myosin, in contrast to modes of regulation in vertebrate skeletal and smooth muscles. Earlier work showed that the binding of skeletal muscle myosin subfragment 1 to the actin-troponin-tropomyosin complex in the presence of ATP is weakened by less than a factor of 2 by removal of Ca2+ although the maximum rate of ATP hydrolysis decreases by 96%. We have now studied the invertebrate type of regulation using heavy meromyosin (HMM) prepared from both the scallop Aequipecten irradians and the squid Loligo pealii. Binding of these HMMs to rabbit skeletal actin was determined by measuring the ATPase activity present in the supernatant after sedimenting acto-HMM in an ultracentrifuge. The HMM of both species bound to actin in the presence of ATP, even in the absence of Ca2+, although the binding constant in the absence of Ca2+ (4.3 X 10(3) M-1) was about 20% of that in the presence of Ca+ (2.2 X 10(4) M-1). Studies of the steady state ATPase activity of these HMMs as a function of actin concentration revealed that the major effect of removing Ca2+ was to decrease the maximum velocity, extrapolated to infinite actin concentration, by 80-85%. Furthermore, at high actin concentrations where most of the HMM was bound to actin, the rate of ATP hydrolysis remained inhibited in the absence of Ca+. Therefore, inhibition of the ATPase rate in the absence of Ca2+ cannot be due simply to an inhibition of the binding of HMM to actin; rather, Ca2+ must also directly alter the kinetics of ATP hydrolysis.

Highlights

  • In the present studwye, have investigatedthe effect of Ca2+ on the actin-activatedmolluscan HMM’ ATPase activity and on the binding of molluscan HMM to actin in the presence of ATP

  • During the1970s, it was generally accepted that regulation of vertebrateskeletal muscle contraction involveda steric digestion (400:l weight ratio) for 1 min at 23 “C asdescribed earlier (13, 14)

  • The reaction was terminated by addition of soybean trypsin inhibitor at a 2:l weight ratio to trypsin

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Summary

Regulation of Molluscan Actomyosin ATPaseActivity*

Earlier work evidence that relaxation of vertebrate smooth muscle is showed that the binding of skeletal muscle myosin due to inhibitionof a kinetic step subsequent to thebinding subfragment 1 to theactin-troponin-tropomyosin com- of myosin toactin (9) regulationin this case is plex in the presence of ATP is weakened by less than a factor of 2 by removal of Ca2+ the maximum rate of ATP hydrolysisdecreases by 96%.We have studied the invertebrate type of regulation using heavy meromyosin (HMM) prepared fromboth the scallop Aequipecten irradians and the squid Loligo pealii Binding of these HMMs to rabbit skeletal actin was determined by measuring the ATPase activity present inthe supernatant after sedimenting actoHMM in an ultracentrifuge.

DEF essential LC regulatory LC
RESULTS
Regulation of Molluscan Actomyosin ATPase Activity
DISCUSSION
Myosin type
Full Text
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