Chemical & Biomolecular Engineering, National University of Singapore, 4 Engineering Drive 4,117585, Singapore.
Nucleic Acids Res. 2021 May 7;49(8):4258-4265. doi: 10.1093/nar/gkab212.
Associative toehold is a powerful concept enabling efficient combinatorial computation in DNA circuit. A longer association length boosts circuit kinetics and equilibrium signal but results in higher leak rate. We reconcile this trade-off by using a hairpin lock design to dynamically elongate the effective associative toehold length in response to the input target. Design guidelines were established to achieve robust elongation without incurring additional leakages. Three hairpin initiators with different combinations of elongated associative toehold (4 → 6 nt, 5 → 8 nt and 6 → 9 nt) were shortlisted from the design framework for further discussion. The circuit performance improved in terms of reaction kinetics, equilibrium signal generated and limit of detection. Overall, the elongated associative toehold served as a built-in function to stabilize and favour the forward, desired reaction when triggered.
关联碱基对是一个强大的概念,能够在 DNA 电路中实现高效的组合计算。更长的关联长度可以提高电路的动力学和平衡信号,但会导致更高的泄漏率。我们通过使用发夹锁设计来协调这种权衡,以响应输入目标动态延长有效的关联碱基对长度。建立了设计准则,以实现稳健的伸长,而不会产生额外的泄漏。从设计框架中挑选了三个具有不同延长关联碱基对(4→6nt、5→8nt 和 6→9nt)组合的发夹启动子进行进一步讨论。在反应动力学、产生的平衡信号和检测限方面,该电路的性能得到了提高。总的来说,延长的关联碱基对充当了内置功能,在触发时稳定并有利于向前、期望的反应。