On the conformation of native and denatured nucleic acids.

[1]  W. Gratzer,et al.  The specific cleavage of yeast ribosomal ribonucleic acid with nucleases. , 1966, Biochemistry.

[2]  R. A. Cox The secondary structure of ribosomal ribonucleic acid in solution. , 1966, The Biochemical journal.

[3]  R. J. Swan,et al.  Optical Rotatory Dispersion of Oligoadenylic Acids and a consideration of the Factors Stabilizing Helical Polynucleotides1 , 1966, Nature.

[4]  G. Felsenfeld,et al.  A study of polyadenylic acid at neutral pH. , 1966, Journal of molecular biology.

[5]  K. V. van Holde,et al.  Adenylate oligomers in single- and double-strand conformation. , 1966, Journal of molecular biology.

[6]  I. Tinoco,et al.  Absorption and optical rotatory dispersion of six dinucleoside phosphates. , 1965, Journal of molecular biology.

[7]  K. V. van Holde,et al.  Base interactions of nucleotide polymers in aqueous solution. , 1965, Journal of molecular biology.

[8]  G. Fasman,et al.  Optical rotatory dispersion studies on the conformational stabilization forces of yeast soluble ribonucleic acid. , 1965, Journal of molecular biology.

[9]  I. Tinoco,et al.  Conformation of polyriboadenylic acid: pH and temperature dependence , 1965 .

[10]  M. Spencer,et al.  ON THE ORIGIN OF CRYSTALLIZABLE RNA FROM YEAST. , 1965, Journal of molecular biology.

[11]  G. Fasman,et al.  THE HELICAL CONFORMATIONS OF POLYCYTIDYLIC ACID: STUDIES ON THE FORCES INVOLVED. , 1964, Biochemistry.

[12]  W. Fuller,et al.  Determination of the Helical Configuration of Ribonucleic Acid Molecules by X-Ray Diffraction Study of Crystalline Amino-Acid–transfer Ribonucleic Acid , 1962, Nature.

[13]  M. Wilkins,et al.  X-ray diffraction studies of the structure of ribosomes from Escherichia coli , 1960 .

[14]  E. Chargaff,et al.  Nucleic Acids , 2020, Definitions.