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Biophys J, March 1999, p. 1598-1605, Vol. 76, No. 3
*Department of Applied Mathematics, University of Washington, Seattle, Washington 98195, and #Department of Biochemistry and Molecular Biophysics, Washington University School of Medicine, St. Louis, Missouri 63110 USA
We present a new method for analyzing the dynamics of
conformational fluctuations of individual flexible polymer molecules. In single-particle tracking (SPT), one end of the polymer molecule is
tethered to an immobile substratum. A microsphere attached to the other
end serves as an optical marker. The conformational fluctuations of the
polymer molecule can be measured by optical microscopy via the motion
of the microsphere. The bead-and-spring theory for polymer dynamics is
further developed to account for the microsphere, and together the
measurement and the theory yield quantitative information about
molecular conformations and dynamics under nonperturbing conditions.
Applying the method to measurements carried out on DNA molecules
provides information complementary to recent studies of single DNA
molecules under extensional force. Combining high precision
measurements with the theoretical analysis presented here creates a
powerful tool for studying conformational dynamics of biological and
synthetic macromolecules at the single-molecule level.
Biophys J, March 1999, p. 1598-1605, Vol. 76, No. 3
© 1999 by the Biophysical Society 0006-3495/99/03/1598/08 $2.00
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