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Nucleic Acids Research, 1977, Vol. 4, No. 8 2573-2592
© 1977


Articles

Structure of poly 8-bromoadenylic acid: conformational studies by CPF energy calculations

Girjesh Govil, Cherie Fisk, Frank B. Howard and H. Todd Miles

National Institute of Arthritis, Metabolism and Digestive Diseases, National Institutes of Health Bethesda, MD 20014, USA

Received November 16, 1976. Poly 8-bromoadenylic acid [poly(8BrA)] is the only known all-syn polynucleotide. It shows a helix-coil transition with a melting curve centred around 55° C. Energy calculations based on classical potential functions have been used to explore the three-dimensional structure of this polymer in helix and random coil. It is concluded that the ordered state is a helix of two parallel strands with a two-fold rotation axis, and the duplex is stabilised by hydrogen bonds involving N1 and H6. Each strand has a conformation with C3' endo geometry, {theta}' = 216°, {omega}' = 280°, {omega} = 294°, {theta} = 179°, {chi} = 243°. and {psi} = 57°. Such a conformation leads to approximately 8 nucleotide units per turn of the helix and an axial rise of 3.9A°. The structure of poly(8BrA) has been compared with that of the related polymer poly(A) which forms a double helical structure in acidic conditions with bases in the anti conformation and with interstrand hydrogen-bonds between N7 and H6. This is the first time that a specific geometrical model of a novel polynucleotide structure has been produced initially by potential energy calculations, though such calculations on a number of known structures have been reported previously.


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