Division of Chemistry and Biological Chemistry, School of Physical and Mathematical Sciences, Nanyang Technological University, 21 Nanyang Link, Singapore 637371 (Singapore).
Sci Rep. 2017 Jan 13;7:40293. doi: 10.1038/srep40293.
DNA/RNA hybrid duplexes are prevalent in many cellular functions and are an attractive target form for electrochemical biosensing and electric nanodevice. However the electronic conductivities of DNA/RNA hybrid duplex remain relatively unexplored and limited further technological applications. Here cyclopropyl-modified deoxyribose- and ribose-adenosines were developed to explore hole transport (HT) in both DNA duplex and DNA/RNA hybrids by probing the transient hole occupancies on adenine tracts. HT yields through both B-form and A-form double helixes displayed similar shallow distance dependence, although the HT yields of DNA/RNA hybrid duplexes were lower than those of DNA duplexes. The lack of oscillatory periods and direction dependence in HT through both helixes implied efficient hole propagation can be achieved via the hole delocalization and coherent HT over adenine tracts, regardless of the structural variations.
DNA/RNA 杂合双链在许多细胞功能中很常见,是电化学生物传感和电动纳米器件的有吸引力的目标形式。然而,DNA/RNA 杂合双链的电子电导率仍未得到充分探索,限制了其进一步的技术应用。在此,我们通过探测腺嘌呤链上瞬态空穴占有率,开发了环丙基修饰的脱氧核糖和核糖腺嘌呤核苷,以探索 DNA 双链和 DNA/RNA 杂合双链中的空穴传输(HT)。通过 B 型和 A 型双螺旋的 HT 产率均表现出相似的浅距离依赖性,尽管 DNA/RNA 杂合双链的 HT 产率低于 DNA 双链的 HT 产率。HT 通过两种螺旋均缺乏周期性和方向依赖性,这意味着通过腺嘌呤链上的空穴离域和相干 HT,可以实现有效的空穴传输,而与结构变化无关。