Matthews Richard, Louis A A, Yeomans J M
Rudolf Peierls Centre for Theoretical Physics, 1 Keble Road, Oxford 0X1 3NP, England, United Kingdom.
Phys Rev Lett. 2009 Feb 27;102(8):088101. doi: 10.1103/PhysRevLett.102.088101. Epub 2009 Feb 23.
We present a numerical study of the effect of knotting on the ejection of flexible and semiflexible polymers from a spherical, viruslike capsid. The polymer ejection rate is primarily controlled by the knot, which moves to the hole in the capsid and then acts as a ratchet. Polymers with more complex knots eject more slowly and, for large knots, the knot type, and not the flexibility of the polymer, determines the rate of ejection. We discuss the relation of our results to the ejection of DNA from viral capsids and conjecture that this process has the biological advantage of unknotting the DNA before it enters a cell.
我们对打结对柔性和半柔性聚合物从球形病毒样衣壳中排出的影响进行了数值研究。聚合物的排出速率主要由结控制,结移动到衣壳的孔中,然后起到棘轮的作用。具有更复杂结的聚合物排出得更慢,对于大的结,是结的类型而不是聚合物的柔韧性决定了排出速率。我们讨论了我们的结果与病毒衣壳中DNA排出的关系,并推测这个过程具有在DNA进入细胞之前解开其结的生物学优势。