Latinwo Folarin, Schroeder Charles M
Department of Chemical & Biomolecular Engineering, University of Illinois at Urbana-Champaign, UrbanaIL, 61801, USA.
Soft Matter. 2011 Jan 1;7(18):7907-7913. doi: 10.1039/c1sm05298e. Epub 2011 Jul 8.
Double stranded DNA (dsDNA) has long served as a model system for single molecule polymer dynamics. However, dsDNA is a semiflexible polymer, and the structural rigidity of the DNA double helix gives rise to local molecular properties and chain dynamics that differ from flexible chains, including synthetic organic polymers. Recently, we developed single stranded DNA (ssDNA) as a new model system for single molecule studies of flexible polymer chains. In this work, we discuss model polymer systems in the context of "ideal" and "real" chain behavior considering thermal blobs, tension blobs, hydrodynamic drag and force-extension relations. In addition, we present monomer aspect ratio as a key parameter describing chain conformation and dynamics, and we derive dynamical scaling relations in terms of this molecular-level parameter. We show that asymmetric Kuhn segments can suppress monomer-monomer interactions, thereby altering global chain dynamics. Finally, we discuss ssDNA in the context of a new model system for single molecule polymer dynamics. Overall, we anticipate that future single polymer studies of flexible chains will reveal new insight into the dynamic behavior of "real" polymers, which will highlight the importance of molecular individualism and the prevalence of non-linear phenomena.
双链DNA(dsDNA)长期以来一直作为单分子聚合物动力学的模型系统。然而,dsDNA是一种半柔性聚合物,DNA双螺旋的结构刚性导致了局部分子特性和链动力学,这些特性与柔性链不同,包括合成有机聚合物。最近,我们开发了单链DNA(ssDNA)作为柔性聚合物链单分子研究的新模型系统。在这项工作中,我们在考虑热涨落链段、张力涨落链段、流体动力学阻力和力-伸长关系的“理想”和“真实”链行为的背景下讨论模型聚合物系统。此外,我们提出单体纵横比作为描述链构象和动力学的关键参数,并根据这个分子水平参数推导出动力学标度关系。我们表明不对称的库恩链段可以抑制单体-单体相互作用,从而改变全局链动力学。最后,我们在单分子聚合物动力学新模型系统的背景下讨论ssDNA。总的来说,我们预计未来对柔性链的单聚合物研究将揭示对“真实”聚合物动力学行为的新见解,这将突出分子个体性的重要性和非线性现象的普遍性。