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Far-Field Electrostatic Signatures of Macromolecular 3D Conformation.


ABSTRACT: In solution as in vacuum, the electrostatic field distribution in the vicinity of a charged object carries information on its three-dimensional geometry. We report on an experimental study exploring the effect of molecular shape on long-range electrostatic interactions in solution. Working with DNA nanostructures carrying approximately equal amounts of total charge but each in a different three-dimensional conformation, we demonstrate that the geometry of the distribution of charge in a molecule has substantial impact on its electrical interactions. For instance, a tetrahedral structure, which is the most compact distribution of charge we tested, can create a far-field effect that is effectively identical to that of a rod-shaped molecule carrying half the amount of total structural charge. Our experiments demonstrate that escape-time electrometry (ETe) furnishes a rapid and facile method to screen and identify 3D conformations of charged biomolecules or molecular complexes in solution.

SUBMITTER: Kloes G 

PROVIDER: S-EPMC9562458 | biostudies-literature | 2022 Oct

REPOSITORIES: biostudies-literature

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Far-Field Electrostatic Signatures of Macromolecular 3D Conformation.

Kloes Gunnar G   Bennett Timothy J D TJD   Chapet-Batlle Alma A   Behjatian Ali A   Turberfield Andrew J AJ   Krishnan Madhavi M  

Nano letters 20220920 19


In solution as in vacuum, the electrostatic field distribution in the vicinity of a charged object carries information on its three-dimensional geometry. We report on an experimental study exploring the effect of molecular shape on long-range electrostatic interactions in solution. Working with DNA nanostructures carrying approximately equal amounts of total charge but each in a different three-dimensional conformation, we demonstrate that the geometry of the distribution of charge in a molecule  ...[more]

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