School of Biology, Georgia Institute of Technology, Atlanta, GA 30332, USA.
J Struct Biol. 2011 Apr;174(1):137-46. doi: 10.1016/j.jsb.2010.11.007. Epub 2010 Nov 11.
Electrostatic interactions play an important role in both packaging of DNA inside bacteriophages and its release into bacterial cells. While at physiological conditions DNA strands repel each other, the presence of polyvalent cations such as spermine and spermidine in solutions leads to the formation of DNA condensates. In this study, we discuss packaging of DNA into bacteriophages P4 and Lambda under repulsive and attractive conditions using a coarse-grained model of DNA and capsids. Packaging under repulsive conditions leads to the appearance of the coaxial spooling conformations; DNA occupies all available space inside the capsid. Under the attractive potential both packed systems reveal toroidal conformations, leaving the central part of the capsids empty. We also present a detailed thermodynamic analysis of packaging and show that the forces required to pack the genomes in the presence of polyamines are significantly lower than those observed under repulsive conditions. The analysis reveals that in both the repulsive and attractive regimes the entropic penalty of DNA confinement has a significant non-negligible contribution into the total energy of packaging. Additionally we report the results of simulations of DNA condensation inside partially packed Lambda. We found that at low densities DNA behaves as free unconfined polymer and condenses into the toroidal structures; at higher densities rearrangement of the genome into toroids becomes hindered, and condensation results in the formation of non-equilibrium structures. In all cases packaging in a specific conformation occurs as a result of interplay between bending stresses experienced by the confined polymer and interactions between the strands.
静电相互作用在噬菌体包装 DNA 及其向细菌细胞释放中都起着重要作用。虽然在生理条件下 DNA 链相互排斥,但多价阳离子如精胺和亚精胺的存在会导致 DNA 凝聚体的形成。在这项研究中,我们使用 DNA 和衣壳的粗粒度模型讨论了在排斥和吸引条件下 DNA 包装入噬菌体 P4 和 Lambda 的情况。在排斥条件下的包装导致出现同轴绕线构象;DNA 占据衣壳内的所有可用空间。在吸引力势下,两种包装系统都呈现出环形构象,衣壳的中心部分为空。我们还对包装进行了详细的热力学分析,结果表明,在多胺存在下包装基因组所需的力明显低于在排斥条件下观察到的力。分析表明,在排斥和吸引两种情况下,DNA 限制的熵罚对包装的总能量有显著的非可忽略贡献。此外,我们还报告了部分包装的 Lambda 内 DNA 凝聚的模拟结果。我们发现,在低密度下,DNA 表现为自由无约束的聚合物,并凝聚成环形结构;在较高密度下,基因组的重新排列成环形受到阻碍,凝聚导致形成非平衡结构。在所有情况下,特定构象的包装都是由于受限聚合物所经历的弯曲应力和链之间的相互作用之间的相互作用而发生的。