Institut für Physik, Johannes Gutenberg-Universität, 55128 Mainz, Germany.
Nucleic Acids Res. 2012 Jun;40(11):5129-37. doi: 10.1093/nar/gks157. Epub 2012 Feb 22.
Observation that DNA molecules in bacteriophage capsids preferentially form torus type of knots provided a sensitive gauge to evaluate various models of DNA arrangement in phage heads. Only models resulting in a preponderance of torus knots could be considered as close to reality. Recent studies revealed that experimentally observed enrichment of torus knots can be qualitatively reproduced in numerical simulations that include a potential inducing nematic arrangement of tightly packed DNA molecules within phage capsids. Here, we investigate what aspects of the nematic arrangement are crucial for inducing formation of torus knots. Our results indicate that the effective stiffening of DNA by the nematic arrangement not only promotes knotting in general but is also the decisive factor in promoting formation of DNA torus knots in phage capsids.
观察到噬菌体衣壳中的 DNA 分子优先形成环型结,为评估噬菌体头部中 DNA 排列的各种模型提供了一个敏感的指标。只有导致环型结优势的模型才能被认为更接近现实。最近的研究表明,在包括潜在的诱导噬菌体衣壳内紧密包装的 DNA 分子形成向列排列的数值模拟中,可以定性地再现实验观察到的环型结的富集。在这里,我们研究了向列排列的哪些方面对于诱导环型结的形成是至关重要的。我们的结果表明,向列排列对 DNA 的有效硬化不仅普遍促进了打结,而且也是促进噬菌体衣壳中环型 DNA 结形成的决定性因素。