4.5 Article

Stacking Interactions and DNA Intercalation

Journal

JOURNAL OF PHYSICAL CHEMISTRY B
Volume 113, Issue 32, Pages 11166-11172

Publisher

AMER CHEMICAL SOC
DOI: 10.1021/jp905765c

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Funding

  1. D.O.E., Division of Materials Sciences and Engineering
  2. [NSF-DMR-0456937]
  3. [NSF-DMR-0801343]
  4. Division Of Materials Research
  5. Direct For Mathematical & Physical Scien [0801343] Funding Source: National Science Foundation

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The relationship between stacking interactions and the intercalation of proflavine and ellipticine within DNA is investigated using a nonempirical van der Waals density functional for the correlation energy. Our results, employing a binary stack model, highlight fundamental, qualitative differences between base-pair-base-pair interactions and that of the stacked intercalator-base-pair system. The most notable result is the paucity of torque, which so distinctively defines the twist of DNA. Surprisingly, this model, when combined with a constraint on the twist of the surrounding base-pair steps to match the observed unwinding of the sugar-phosphate backbone, was sufficient for explaining the experimentally observed proflavine intercalator configuration. Our extensive mapping of the potential energy surface of base-pair-intercalator interactions call provide valuable information for future nonempirical studies of DNA intercalation dynamics.

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