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A J Rowe

Publications and source records attributed to A J Rowe.

At least 55 records · Page 3Linked to original sources

Fraying of A-filaments into three subfilaments.

Since Huxley established their bipolar structure, direct electron microsocpy of A-filaments isolated from vertebrate skeletal muscle has yielded little further interpretable information about the mode of packing of the myosin molecules within the filament. Using A-filaments prepared from rat psoas muscle we have now found it possible to induce clear fraying of these filaments into subfilaments, by exposure of the preparation to very low ionic strength before contrasting with uranyl acetate. The number of such filaments observed is generally (and never in excess of) three. Considerations of symmetry suggest that the formation of these frayed filaments is compatible only with a 'three stranded' model for the native A-filament, a finding in agreement with the balance of evidence recently published using other techniques.

Animals↗

Hydrodynamic studies on the self association of vertebrate skeletal muscle myosin.

Sedimentation velocity studies on myosin A solutions at high ionic strength combined with computer-simulation of the concentration dependence of the sedimentation coefficient for a rapidly reversible monomer-dimer equilibrium have confirmed that if such an equilibrium does exist it has an equilibrium constant of less than 10 ml/g. A new hydrodynamic treatment has been used to calculate the molecular weight of myosin from s0 and ks alone and has yielded a value of 470 000. Combination of viscosity and sedimentation velocity results has shown that the myosin molecule displays little swelling (Vs/v = 1.1 +/- 0.1). A new picture of the myosin molecule is presented in which a conformational change in the head region is suggested to account for the variation in published s 0 values.

Animals↗

Frictional properties and molecular weight of native and synthetic myosin filaments from vertebrate skeletal muscle.

1. The molecular weights of a series of synthetic myosin filaments have been measured, using the transport-concentration dependence theory of Rowe, A.J. [Biopolymers, 1977, 16, 2595--2611]. It is shown that for preparations of narrow length distribution (0.60--0.77 micrometer), N, the number of myosin molecules/14.3 nm varies between 3 and 6. 2. The reduced specific viscosity of synthetic myosin filaments has been measured as a function of both concentration and shear rate. From the concentration dependence at zero rate of shear, a value for the "swelling" of the filaments Vs/-v = 2.3 has been calculated. 3. The frictional coefficient of synthetic myosin filaments has been shown to be anomalously but reproducibly high, as compared to that of prolate ellipsoids of the same length and mass. This additional frictional drag has been numerically characterised by a "frictional increment", fi = 1.76 +/- 0.11. 4. A procedure has been devised whereby for any elongated structure which can be assumed to show the same (or other known) fi value, the molecular weight can be estimated from s0 (extrapolated sedimentation coefficient) and 2b (length) alone. 5. An s0 value for natural A-filaments, isolated from rabbit psoas muscle, has been determined by the active enzyme centrifugation technique. From this value, s0 = 132 +/- 3 S, a molecular weight of 1.20 . 10(8) has been computed by the new procedure, for preparations of average length 1.27 micrometer. 6. Contingent upon the validity of the assumptions used (see 4 above) the N value is computed as 3.1 +/- 0.2, consistent with the native, fully intact A-filament having three-fold symmetry, containing 294 myosin molecules, and having a molecular weight based upon myosin and C-protein of 1.31 . 10(8).

Adenosine Triphosphatases↗