Snir Yehuda, Kamien Randall D
Department of Physics and Astronomy, University of Pennsylvania, Philadelphia, PA 19104, USA.
Science. 2005 Feb 18;307(5712):1067. doi: 10.1126/science.1106243.
The helix is a ubiquitous motif for biopolymers. We propose a heuristic, entropically based model that predicts helix formation in a system of hard spheres and semiflexible tubes. We find that the entropy of the spheres is maximized when short stretches of the tube form a helix with a geometry close to that found in natural helices. Our model could be directly tested with wormlike micelles as the tubes, and the effect could be used to self-assemble supramolecular helices.
螺旋结构是生物聚合物中普遍存在的基序。我们提出了一种基于熵的启发式模型,该模型可预测硬球和半柔性管系统中的螺旋形成。我们发现,当管的短片段形成几何形状接近天然螺旋的螺旋时,球的熵最大化。我们的模型可以直接用蠕虫状胶束作为管来进行测试,并且这种效应可用于自组装超分子螺旋。