Boroudjerdi Hoda, Naji Ali, Naji A, Netz R
Fachbereich Physik, Freie Universität Berlin, Arnimalle 14, 14195, Berlin, Germany.
Eur Phys J E Soft Matter. 2014 Mar;37(3):21. doi: 10.1140/epje/i2014-14021-6. Epub 2014 Mar 31.
We investigate the wrapping conformations of a single, strongly adsorbed polymer chain on an oppositely charged nano-sphere by employing a reduced (dimensionless) representation of a primitive chain-sphere model. This enables us to determine the global behavior of the chain conformation in a wide range of values for the system parameters including the chain contour length, its linear charge density and persistence length as well as the nano-sphere charge and radius, and also the salt concentration in the bathing solution. The structural behavior of a charged chain-sphere complex can be described in terms of a few distinct conformational symmetry classes separated by continuous or discontinuous transition lines which are determined by means of appropriately defined (order) parameters. Our results can be applied to a wide class of strongly coupled polymer-sphere complexes including, for instance, complexes that comprise a mechanically flexible or semiflexible polymer chain or an extremely short or long chain and, as a special case, include the biologically relevant example of DNA-histone complexes.
我们通过采用原始链-球模型的简化(无量纲)表示法,研究了一条强吸附在带相反电荷的纳米球上的聚合物链的包裹构象。这使我们能够确定在广泛的系统参数值范围内链构象的整体行为,这些参数包括链的轮廓长度、线性电荷密度和持久长度,以及纳米球的电荷和半径,还有浴液中的盐浓度。带电链-球复合物的结构行为可以用由连续或不连续转变线分隔的几个不同的构象对称类来描述,这些转变线是通过适当定义的(序)参数确定的。我们的结果可应用于广泛的强耦合聚合物-球复合物,例如包括由机械柔性或半柔性聚合物链或极短或极长链组成的复合物,作为一个特殊情况,还包括DNA-组蛋白复合物这个与生物学相关的例子。