Title of article
Nanoscale mechanical and dynamical properties of DNA single molecules Review Article
Author/Authors
Claudio Anselmi، نويسنده , , Pasquale DeSantis، نويسنده , , Anita Scipioni، نويسنده ,
Issue Information
روزنامه با شماره پیاپی سال 2005
Pages
13
From page
209
To page
221
Abstract
Experimental evidence suggests DNA mechanical properties, in particular intrinsic curvature and flexibility, have a role in many relevant biological processes. Systematic investigations about the origin of DNA curvature and flexibility have been carried out; however, most of the applied experimental techniques need simplifying models to interpret the data, which can affect the results.
Progress in the direct visualization of macromolecules allows the analysis of morphological properties and structural changes of DNAs directly from the digitised micrographs of single molecules. In addition, the statistical analysis of a large number of molecules gives information both on the local intrinsic curvature and the flexibility of DNA tracts at nanometric scale in relatively long sequences.
However, it is necessary to extend the classical worm-like chain model (WLC) for describing conformations of intrinsically straight homogeneous polymers to DNA. This review describes the various methodologies proposed by different authors.
Keywords
DNA flexibility , Worm-like chain , DNA curvature , Divalent cations effects , DNA–mica interactions , Persistence length
Journal title
Biophysical Chemistry
Serial Year
2005
Journal title
Biophysical Chemistry
Record number
1113592
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