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Biomedical subjects

B J Berne

Publications and source records attributed to B J Berne.

5 recordsLinked to original sources

Characterization of heterogeneous solutions using laser light scattering: study of the tubulin system.

Laser light scattering has been applied to a systematic study of a heterogeneous solution of tubulin at low temperature--conditions under which tubulin assembly into microtubules does not take place. Methods of analyzing laser light scattering results obtained from solutions containing multiple components are discussed. Data analysis techniques are described and their application to the determination of diffusion constants from experimental data is extensively illustrated. Multiple components were found under the conditions that the tubulin was studied. We have identified one component having D20,w = 4.41 X 10(-7) cm2/s (sigma = 0.54 X 10(-7) cm2/s) which has the expected value for tubulin dimer. In addition, we have found two components which are significantly larger than tubulin. One large component has D 20,w approximately 0.55 X 10(-7) cm2/s and is present in all samples at 4 degrees C even after centrifugation to remove components greater than 10 S. Another large component having 3.2 X 10(-7) cm2/s greater than or equal to D20,w greater than or equal to 1.5 X 10(-7) cm2/s has been found to sediment with 10 S less than or equal to s less than 20 S.

Animals

Equilibrium components of tubulin preparations.

Laser light scattering techniques are used to examine the existence of a tubulin-ring or tubulin-aggregate equilibrium. Three principal components in addition to tubulin dimer have been observed. One large component having D20,w = 0.65 +/- 0.25 X 10(-7) cm2/s is in equilibrium with tubulin (dimer) at 4 degrees C. A second large component having D20,w = 0.74 +/- 0.05 X 10(-7) cm2/s is metastable at 4 degrees C and is formed when tubulin solutions are warmed to 36 degrees C and cooled back to 4 degrees C. The properties of the component reported in the previous paper (Gethner, J.S., Flynn, G.W., Berne, B.J., and Gaskin, F. (1977), Biochemistry 16 (preceding paper in this issue)) to sediment at 10 S to 20 S are shown to be consistent with a small, metastable aggregate of tubulin.

Animals

Number fluctuation spectroscopy of motile microorganisms.

A random-walk model of motility is used to predict the dynamics of fluctuations in the number of particles in a small observation volume. The results show that number fluctuations provide a measure of the mean swimming speed as well as the persistence length. Experimental light-scattering results are presented for three strains of Escherichia coli whose motion appears random-walk in nature. For the strain with th elongest persistence length, excellent agreement is found that theoretical predictions. For the more erratic strains, however, the shape of the measured scattered light intensity correlation functions indicates the presence of a contribution due to orientational fluctuations.

Cell Movement

Inelastic light scattering by large structured particles.

Autocorrelation functions are computed for nonspherical particles whose dimensions are comparable to or greater than the wavelength of scattered light. Particular attention is given to models of motile microorganisms. Results for Gaussian ellipsoids, finite thin rods, ellipsoids with internal structures, and dumbbell-shaped scatterers are derived and compared.

Cell Movement