Travers A A, Thompson J M T
MRC Laboratory of Molecular Biology, Hills Road, Cambridge CB2 2QH, UK.
Philos Trans A Math Phys Eng Sci. 2004 Jul 15;362(1820):1265-79. doi: 10.1098/rsta.2004.1392.
This article gives an overview of recent research on the mechanical properties and spatial deformations of the DNA molecule. Globally the molecule behaves like a uniform elastic rod, and its twisting and writhing govern its compaction and packaging within a cell. Meanwhile high mechanical stresses can induce structural transitions of DNA giving, for example, a phase diagram in the space of the applied tension and torque. Locally, the mechanical properties vary according to the local sequence organization. These variations play a vital role in the biological functioning of the molecule.
本文概述了近期关于DNA分子力学性质和空间变形的研究。从整体上看,该分子表现得像一根均匀的弹性杆,其扭曲和缠绕决定了它在细胞内的压缩和包装。同时,高机械应力可诱导DNA的结构转变,例如,给出在外加张力和扭矩空间中的相图。在局部,力学性质根据局部序列组织而变化。这些变化在分子的生物学功能中起着至关重要的作用。