Abstract
Chemically skinned anterior byssus retractor muscle (ABRM) preparations were prepared by treatment with the nonionic detergents saponin and Triton X-100. Both maximum peak tension and rate of contraction were found to be greater in saponin-treated ABRM than in ABRM treated with Triton X-100. Active tension was initiated at a concentration of free Ca2+ above 0.1 microM, and maximum tension development was found at a [Ca2+] = approximately 32 microM. During exposure of the muscle preparation to optimal Ca2+ concentration, a high and almost constant tension level was sustained. The force recovery was high after a quick release during this period indicating the presence of an "active" state rather than a "catch" state. Actually, a state equivalent to the catch state in the living ABRM could not be induced, if the Ca2+ concentration was above 0.1 microM. Variations in the ionic strength in the range of 0.07--0.28 M had no influence on active state and only slightly affected the maximum tension developed. The influence of Mg2+ on the Ca2+-activated tension was examined by studying the tension-pCa relation at two concentrations of free Mg2+ (0.43 and 4.0 mM). The tension-pCa relation was found to be S-shaped with tension increasing steeply over approximately 1 pCa unit, indicating the existence of cooperativity between Ca2+ sites. Increasing the free concentration of Mg2+ shifted the tension-pCa relation to lower pCa as in striated muscles, demonstrating a decreasing Ca2+ sensitivity with increasing Mg2+. At [Mg2+] = 4.0 mM the half-maximum tension was found at [Ca2+] = 0.43 microM, decreasing to 0.20 microM at [Mg2+] = 0.43 mM. At both Mg2+ concentrations studied, plots of log Prel/(1--Prel) vs. log [Ca2+] were nonlinear with a shape indicating a rather complicated model for cooperativity, probably involving four sites for Ca2+. These Ca2+--Mg2+ interactions are most probably taking place at the myosin head itself because troponin is absent in this myosin-regulated muscle.
MeSH Terms
Adenosine Triphosphate/metabolism
Animals
Bivalvia/physiology
Calcium/physiology
Dose-Response Relationship, Drug
In Vitro Techniques
Magnesium/metabolism,pharmacology
Muscle Contraction/drug effects
Muscle Tonus/drug effects
Muscle, Smooth/physiology
Chemicals
Adenosine Triphosphate
Magnesium
Calcium
Authors & Affiliations
1 authors, click to expand affiliations / ORCID
Cornelius F
References (25)
25 references, click to expand
-
Thermodynamic quantities associated with the interaction of adenosine triphosphate with metal ions.
J Am Chem Soc. 1966 Feb 20;88(4):668-71
PMID: 5902558
-
Force measurements in skinned muscle fibres.
J Physiol. 1969 Feb;200(3):807-19
PMID: 5765859
-
Calcium ion and muscle contraction.
Prog Biophys Mol Biol. 1968;18:123-83
PMID: 4894870
-
Ionic mobility in muscle cells.
Science. 1969 Dec 5;166(3910):1297-8
PMID: 5350329
-
The activation by Ca2+ of the ATPase of extracted muscle fibrilsith variation of ionic strength, pH and concentration of MgATP.
Biochim Biophys Acta. 1969;189(3):440-8
PMID: 4243638
-
The regulation of enzyme activity and allosteric transition.
Prog Biophys Mol Biol. 1970;21:321-97
PMID: 4915325
-
Regulation in molluscan muscles.
J Mol Biol. 1970 Dec 14;54(2):313-26
PMID: 4250215
-
Smooth muscle tone.
Physiol Rev. 1971 Jan;51(1):201-48
PMID: 5543902
-
The effect of calcium on the force-velocity relation of briefly glycerinated frog muscle fibres.
J Physiol. 1971 Oct;218(1):117-45
PMID: 5316143
-
Tension in skinned frog muscle fibers in solutions of varying ionic strength and neutral salt composition.
J Gen Physiol. 1973 Nov;62(5):550-74
PMID: 4543066
-
The muscular membrane and calcium activation of the contractile system of a lamellibranch smooth muscle (ABRM).
Pflugers Arch. 1975;354(1):75-85
PMID: 237253
-
The calcium and magnesium binding sites on troponin and their role in the regulation of myofibrillar adenosine triphosphatase.
J Biol Chem. 1975 Jun 25;250(12):4628-33
PMID: 124731
-
Regulation of muscular contraction. Distribution of actin control and myosin control in the animal kingdom.
J Gen Physiol. 1975 Jul;66(1):1-30
PMID: 125778
-
Characterization of the effects of Mg2+ on Ca2+- and Sr2+-activated tension generation of skinned skeletal muscle fibers.
J Gen Physiol. 1975 Oct;66(4):427-44
PMID: 1081122
-
Diagnostic uses of the Hill (Logit and Nernst) plots.
J Mol Biol. 1975 Jun 25;95(2):201-12
PMID: 171413
-
Myosin-linked calcium regulation in vertebrate smooth muscle.
J Mol Biol. 1976 Mar 25;102(1):75-92
PMID: 131863
-
Regulatory light chains in myosins.
J Mol Biol. 1976 Jul 15;104(4):747-75
PMID: 134163
-
Tension-length behaviour of a molluscan smooth muscle related to filament organisation.
Acta Physiol Scand. 1978 Feb;102(2):167-80
PMID: 626096
-
Troponin-like proteins from muscles of the scallop, Aequipecten irradians.
Biochem J. 1978 May 1;171(2):413-8
PMID: 148888
-
Contraction of detergent-treated smooth muscle.
Proc Natl Acad Sci U S A. 1978 Jul;75(7):3527-30
PMID: 98770
-
Characteristics of Ca2+- and Mg2+-induced tension development in chemically skinned smooth muscle fibers.
J Gen Physiol. 1978 Jul;72(1):1-14
PMID: 151731
-
Extraction and functional reformation of thick filaments in chemically skinned molluscan catch muscle fibers.
J Biochem. 1979 Feb;85(2):535-40
PMID: 422545
-
Evidence for two distinct affinities in the binding of divalent metal ions to myosin.
J Biol Chem. 1979 Jul 25;254(14):6470-7
PMID: 156186
-
Properties of detergents.
Methods Enzymol. 1979;56:734-49
PMID: 459890
-
The nature of the phasic and the tonic responses of the anterior byssal retractor muscle of Mytilus.
J Physiol. 1959 Dec;149:154-77
PMID: 14407244