Xu Kunming
State Key Laboratory of Marine Environmental Science, Environmental Science Research Center, Xiamen University, Xiamen 361005, China.
J Biol Phys. 2009 Aug;35(3):223-30. doi: 10.1007/s10867-009-9149-9. Epub 2009 Apr 9.
A DNA molecule is characterized by a stepwise oscillatory circuit where every base pair is a capacitor, every phosphate bridge is an inductance, and every deoxyribose is a charge router. The circuitry accounts for DNA conductivity through both short and long distances in good agreement with experimental evidence that has led to the identification of the so-called super-exchange and multiple-step hopping mechanisms. However, in contrast to the haphazard hopping and super-exchanging events, the circuitry is a well-defined charge transport mechanism reflecting the great reliability of the genetic substance in delivering electrons. Stepwise oscillatory charge transport through a nucleotide sequence that directly modulates the oscillation frequency may have significant biological implications.
DNA分子的特征是具有一个逐步振荡电路,其中每个碱基对都是一个电容器,每个磷酸桥都是一个电感,每个脱氧核糖都是一个电荷路由器。该电路能够解释DNA在短距离和长距离内的导电性,这与实验证据高度吻合,这些实验证据导致了所谓的超交换和多步跳跃机制的确定。然而,与随机的跳跃和超交换事件不同,该电路是一种定义明确的电荷传输机制,反映了遗传物质在传递电子方面的高度可靠性。通过直接调节振荡频率的核苷酸序列进行的逐步振荡电荷传输可能具有重要的生物学意义。