Counterion association with native and denatured nucleic acids: an experimental approach.
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[1] J. Völker,et al. Communication between noncontacting macromolecules , 2001, Proceedings of the National Academy of Sciences of the United States of America.
[2] J. Daban. Physical constraints in the condensation of eukaryotic chromosomes. Local concentration of DNA versus linear packing ratio in higher order chromatin structures. , 2000, Biochemistry.
[3] R. Silverman,et al. Antisense cancer therapy: The state of the science , 2000, Current oncology reports.
[4] P. Privalov,et al. Problems and prospects in microcalorimetry of biological macromolecules. , 2000, Methods in enzymology.
[5] D. Praseuth,et al. Triple helix formation and the antigene strategy for sequence-specific control of gene expression. , 1999, Biochimica et biophysica acta.
[6] I. Rouzina,et al. Heat capacity effects on the melting of DNA. 1. General aspects. , 1999, Biophysical journal.
[7] I. Rouzina,et al. Heat capacity effects on the melting of DNA. 2. Analysis of nearest-neighbor base pair effects. , 1999, Biophysical journal.
[8] H. Klump,et al. Energetics of strand-displacement reactions in triple helices: a spectroscopic study. , 1999, Journal of molecular biology.
[9] R. Blake,et al. High-resolution calorimetric and optical melting profiles of DNA plasmids: resolving contributions from intrinsic melting domains and specifically designed inserts. , 1999, Biopolymers.
[10] J. Völker,et al. A more unified picture for the thermodynamics of nucleic acid duplex melting: a characterization by calorimetric and volumetric techniques. , 1999, Proceedings of the National Academy of Sciences of the United States of America.
[11] Kenneth A. Marx,et al. Statistical mechanical simulation of polymeric DNA melting with MELTSIM , 1999, Bioinform..
[12] G. S. Manning,et al. Counterion condensation revisited. , 1998, Journal of biomolecular structure & dynamics.
[13] D. Patel,et al. A K cation-induced conformational switch within a loop spanning segment of a DNA quadruplex containing G-G-G-C repeats. , 1998, Journal of molecular biology.
[14] R. Blake,et al. Thermal stability of DNA. , 1998, Nucleic acids research.
[15] M. Record,et al. Biophysical compensation mechanisms buffering E. coli protein-nucleic acid interactions against changing environments. , 1998, Trends in biochemical sciences.
[16] M. Record,et al. Responses of E. coli to osmotic stress: large changes in amounts of cytoplasmic solutes and water. , 1998, Trends in biochemical sciences.
[17] J. SantaLucia,et al. A unified view of polymer, dumbbell, and oligonucleotide DNA nearest-neighbor thermodynamics. , 1998, Proceedings of the National Academy of Sciences of the United States of America.
[18] มาลา ตรีวัชรีกร,et al. Nucleic acid hybridization , 1998 .
[19] I. Rouzina,et al. Use of Poisson-Boltzmann equation to analyze ion binding to DNA. , 1998, Methods in enzymology.
[20] M. Record,et al. Analysis of effects of salts and uncharged solutes on protein and nucleic acid equilibria and processes: a practical guide to recognizing and interpreting polyelectrolyte effects, Hofmeister effects, and osmotic effects of salts. , 1998, Advances in protein chemistry.
[21] J. Völker,et al. Thermodynamic properties of a conformationally constrained intramolecular DNA triple helix. , 1997, Biochemistry.
[22] P. Vallone,et al. Predicting sequence-dependent melting stability of short duplex DNA oligomers. , 1997, Biopolymers.
[23] J. Feigon,et al. The selectivity for K+ versus Na+ in DNA quadruplexes is dominated by relative free energies of hydration: a thermodynamic analysis by 1H NMR. , 1996, Biochemistry.
[24] R. Blake,et al. Thermodynamic effects of formamide on DNA stability. , 1996, Nucleic acids research.
[25] V. Potaman,et al. Triple-Helical Nucleic Acids , 1995, Springer New York.
[26] W. Braunlin. NMR studies of cation-binding environments on nucleic acids , 1996 .
[27] P. Privalov,et al. Precise scanning calorimeter for studying thermal properties of biological macromolecules in dilute solution. , 1995, Analytical biochemistry.
[28] F. B. Howard,et al. The poly(dT).2poly(dA) triple helix. , 1995, Biochemistry.
[29] K. Breslauer,et al. Thermodynamics of an intramolecular DNA triple helix: a calorimetric and spectroscopic study of the pH and salt dependence of thermally induced structural transitions. , 1995, Journal of molecular biology.
[30] J. Bond,et al. Grand canonical Monte Carlo molecular and thermodynamic predictions of ion effects on binding of an oligocation (L8+) to the center of DNA oligomers. , 1995, Biophysical journal.
[31] K. Breslauer,et al. Nucleic acid hybridization: triplex stability and energetics. , 1995, Annual review of biophysics and biomolecular structure.
[32] M. Record,et al. Salt-nucleic acid interactions. , 1995, Annual review of physical chemistry.
[33] H H Klump,et al. Electrostatic effects in DNA triple helices. , 1994, Biochemistry.
[34] J. Bond,et al. Conformational transitions of duplex and triplex nucleic acid helices: thermodynamic analysis of effects of salt concentration on stability using preferential interaction coefficients. , 1994, Biophysical journal.
[35] Gerald S. Manning,et al. An attractive force between two rodlike polyions mediated by the sharing of condensed counterions , 1994 .
[36] J. R. Williamson,et al. G-quartet structures in telomeric DNA. , 1994, Annual review of biophysics and biomolecular structure.
[37] P. Ross,et al. Thermodynamics of Cro protein-DNA interactions. , 1992, Proceedings of the National Academy of Sciences of the United States of America.
[38] R. Blake,et al. Electrostatic forces at helix–coil boundaries in DNA , 1990, Biopolymers.
[39] J. Wyman,et al. Binding and Linkage: Functional Chemistry of Biological Macromolecules , 1990 .
[40] M. Record,et al. Ion distributions around DNA and other cylindrical polyions: theoretical descriptions and physical implications. , 1990, Annual review of biophysics and biophysical chemistry.
[41] H. Klump. Energetics of order/order transitions in nucleic acids , 1988 .
[42] R. Blake,et al. Loop energy in DNA , 1987, Biopolymers.
[43] M. Record,et al. Grand canonical Monte Carlo calculations of thermodynamic coefficients for a primitive model of DNA-salt solutions , 1986 .
[44] H. Blöcker,et al. Predicting DNA duplex stability from the base sequence. , 1986, Proceedings of the National Academy of Sciences of the United States of America.
[45] M. Record,et al. Ions as regulators of protein-nucleic acid interactions in vitro and in vivo. , 1985, Advances in biophysics.
[46] Wolfram Saenger,et al. Principles of Nucleic Acid Structure , 1983 .
[47] K. Breslauer,et al. Salt‐dependent conformational transitions in the self‐complementary deoxydodecanucleotide d(CGCAATTCGCG): Evidence for hairpin formation , 1983, Biopolymers.
[48] M. Record,et al. Polyelectrolyte Theories and their Applications to DNA , 1982 .
[49] S. Shaner,et al. Double helical DNA: conformations, physical properties, and interactions with ligands. , 1981, Annual review of biochemistry.
[50] M. Record,et al. The relationship between the poisson-boltzmann model and the condensation hypothesis: an analysis based on the low salt form of the Donnan coefficient. , 1980, Biophysical chemistry.
[51] F. Anan,et al. The Conformation of Biological Macromolecules , 1980 .
[52] C. Cantor,et al. Techniques for the study of biological structure and function , 1980 .
[53] Charles R. Cantor,et al. The behavior of biological macromolecules , 1980 .
[54] Gerald S. Manning,et al. Counterion binding in polyelectrolyte theory , 1979 .
[55] R. Blake,et al. Effect of sodium ion on the high‐resolution melting of lambda DNA , 1979, Biopolymers.
[56] G. S. Manning. Limiting laws and counterion condensation in polyelectrolyte solutions. V. Further development of the chemical model. , 1978, Biophysical chemistry.
[57] R. Burgess,et al. Nonspecific interactions of Escherichia coli RNA polymerase with native and denatured DNA: differences in the binding behavior of core and holoenzyme. , 1978, Biochemistry.
[58] T. Lohman,et al. Thermodynamic analysis of ion effects on the binding and conformational equilibria of proteins and nucleic acids: the roles of ion association or release, screening, and ion effects on water activity , 1978, Quarterly Reviews of Biophysics.
[59] G. S. Manning. The molecular theory of polyelectrolyte solutions with applications to the electrostatic properties of polynucleotides , 1978, Quarterly Reviews of Biophysics.
[60] Charles Anderson,et al. Sodium-23 NMR studies of cation-DNA interactions. , 1978, Biophysical chemistry.
[61] P. Dehaseth,et al. Nonspecific interaction of lac repressor with DNA: an association reaction driven by counterion release. , 1977, Biochemistry.
[62] R. Ratliff,et al. Helix coil transitions of d (A)n·d(T)n, d(A‐T)n·d(A‐T)n, and d(A‐A‐T)n·d(A‐T‐T)n; evaluation of parameters governing DNA stability , 1977, Biopolymers.
[63] G. S. Manning. The application of polyelectrolyte limiting laws to the helix–coil transition of DNA. VI. The numerical value of the axial phosphate spacing for the coil form , 1976, Biopolymers.
[64] T. Lohman,et al. Ion effects on ligand-nucleic acid interactions. , 1976, Journal of molecular biology.
[65] G. S. Manning. On the application of polyelectrolyte limiting laws to the helix–coil transition of DNA. V. Ionic effects on renaturation kinetics , 1976, Biopolymers.
[66] T. Lohman,et al. Na+ effects on transitions of DNA and polynucleotides of variable linear charge density , 1976, Biopolymers.
[67] G. S. Manning,et al. Application of polyelectrolyte limiting laws to virial and asymptotic expansions for the Donnan equilibrium. , 1974, Biophysical chemistry.
[68] G. S. Manning. On the Application of Polyelectrolyte “Limiting Laws” to the Helix‐Coil Transition of DNA. II. The Effect of Mg++ Counterions , 1972, Biopolymers.
[69] T. Ackermann,et al. Experimental thermodynamics of the helix–random coil transition. IV. Influence of the base composition of DNA on the transition enthalpy , 1971, Biopolymers.
[70] G. S. Manning. Limiting Laws and Counterion Condensation in Polyelectrolyte Solutions. III. An Analysis Based on the Mayer Ionic Solution Theory , 1969 .
[71] J. Sturtevant,et al. Heats of the helix–coil transitions of the poly A–poly U complexes , 1968, Biopolymers.
[72] N. Davidson,et al. Kinetics of renaturation of DNA. , 1968, Journal of molecular biology.
[73] M. Riley,et al. Physical and chemical characterization of two- and three-stranded adenine-thymine and adenine-uracil homopolymer complexes. , 1966, Journal of molecular biology.
[74] Chamberlin Mj. Comparative properties of DNA, RNA, and hybrid homopolymer pairs. , 1965 .
[75] P. Doty,et al. Determination of the base composition of deoxyribonucleic acid from its thermal denaturation temperature. , 1962, Journal of molecular biology.