The internal ‘slithering’ dynamics of supercoiled DNA

[1]  J. Roth,et al.  Surveying a supercoil domain by using the gamma delta resolution system in Salmonella typhimurium , 1996, Journal of bacteriology.

[2]  J. Langowski,et al.  DNA supercoiling, localized bending and thermal fluctuations. , 1996, Trends in biochemical sciences.

[3]  K Rippe,et al.  Action at a distance: DNA-looping and initiation of transcription. , 1995, Trends in biochemical sciences.

[4]  Marko,et al.  Statistical mechanics of supercoiled DNA. , 1995, Physical review. E, Statistical physics, plasmas, fluids, and related interdisciplinary topics.

[5]  W. Olson,et al.  Effects of localized bending on DNA supercoiling. , 1995, Trends in biochemical sciences.

[6]  Wei Yang,et al.  Crystal structure of the site-specific recombinase γδ resolvase complexed with a 34 by cleavage site , 1995, Cell.

[7]  J Langowski,et al.  Modulation of intramolecular interactions in superhelical DNA by curved sequences: a Monte Carlo simulation study. , 1995, Biophysical journal.

[8]  Obukhov,et al.  Dynamics of a ring polymer in a gel. , 1994, Physical review letters.

[9]  E. Siggia,et al.  Fluctuations and supercoiling of DNA. , 1994, Science.

[10]  Marko,et al.  Electrophoresis of charged polymers: Simulation and scaling in a lattice model of reptation. , 1994, Physical review. E, Statistical physics, plasmas, fluids, and related interdisciplinary topics.

[11]  C. Parker,et al.  Stereoselectivity of DNA catenane fusion by resolvase , 1994, Nature.

[12]  Giuseppe Chirico,et al.  Kinetics of DNA supercoiling studied by Brownian dynamics simulation , 1994 .

[13]  N R Cozzarelli,et al.  Conformational and thermodynamic properties of supercoiled DNA. , 1994, Annual review of biophysics and biomolecular structure.

[14]  J. Langowski,et al.  Ten microseconds in the life of a superhelix , 1993 .

[15]  K. Klenin,et al.  DNA curvature influences the internal motions of supercoiled DNA. , 1993, The EMBO journal.

[16]  J. V. Leeuwen,et al.  The drift velocity in reptation models for electrophoresis , 1993 .

[17]  M Frank-Kamenetskii,et al.  Conformational and thermodynamic properties of supercoiled DNA. , 1992, Journal of molecular biology.

[18]  D. Crothers,et al.  DNA bending, flexibility, and helical repeat by cyclization kinetics. , 1992, Methods in enzymology.

[19]  Christian N. Parker,et al.  Dynamics of long-range interactions on DNA: The speed of synapsis during site-specific recombination by resolvase , 1991, Cell.

[20]  K. Klenin,et al.  Computer simulation of DNA supercoiling. , 1991, Journal of molecular biology.

[21]  T. Duke MONTE-CARLO REPTATION MODEL OF GEL-ELECTROPHORESIS - STEADY-STATE BEHAVIOR , 1990 .

[22]  T. Duke Monte Carlo reptation model of gel electrophoresis: Response to field pulses , 1990 .

[23]  N R Cozzarelli,et al.  Structure of plectonemically supercoiled DNA. , 1990, Journal of molecular biology.

[24]  P. Hagerman,et al.  Application of the method of phage T4 DNA ligase-catalyzed ring-closure to the study of DNA structure. II. NaCl-dependence of DNA flexibility and helical repeat. , 1990, Journal of molecular biology.

[25]  L. Lee New Trends in Physics and Physical Chemistry of Polymers , 1990 .

[26]  Nicholas R. Cozzarelli,et al.  DNA topology and its biological effects , 1990 .

[27]  Duke Tube model of field-inversion electrophoresis. , 1989, Physical review letters.

[28]  Rubinstein Discretized model of entangled-polymer dynamics. , 1987, Physical review letters.

[29]  S. Edwards,et al.  The Theory of Polymer Dynamics , 1986 .

[30]  D. Sherratt,et al.  Structural and catalytic properties of specific complexes between Tn3 resolvase and the recombination site res. , 1986, Biochemical Society transactions.

[31]  N. Cozzarelli,et al.  The stereostructure of knots and catenanes produced by phage λ integrative recombination: implications for mechanism and DNA structure , 1985, Cell.

[32]  O. Berg Diffusion‐controlled protein–DNA association: Influence of segemental diffusion of the DNA , 1984, Biopolymers.

[33]  P. Gennes Scaling Concepts in Polymer Physics , 1979 .

[34]  P. Gennes,et al.  Reptation of a Polymer Chain in the Presence of Fixed Obstacles , 1971 .