光敏性
碱基对
体内
计算生物学
复制(统计)
德纳姆
体外
化学
基础(拓扑)
组合化学
计算机科学
生物
生物物理学
纳米技术
DNA
遗传学
生物化学
材料科学
基因
病毒学
光电子学
基因表达
数学分析
数学
DNA甲基化
作者
Honglei Wang,Luying Wang,Nana Ma,Wuyuan Zhu,Bianbian Huo,Anlian Zhu,Lingjun Li
标识
DOI:10.1021/acssynbio.1c00451
摘要
Completing the storage and retrieval of increased genetic information in vivo and producing therapeutic proteins have been achieved by the unnatural base pair dNaM-dTPT3. Up to now, some biological and chemical approaches are implemented to improve the semi-synthetic organism (SSO). However, the photosensitivity of this pair, suggested as a potential threat to the healthy growth of cells, is still a problem to solve. Hence, we designed and synthesized a panel of TPT3 analogues with the basic structural skeletons of TPT3 but modified thiophene rings at variant sites to improve the photostability of unnatural base pairs. A comprehensive screening strategy, including photosensitivity tests, kinetic experiments, and replication in vitro by PCR and in vivo by amplification, was implemented. A new pair, dNaM-dTAT1, which had almost equally high efficiency and fidelity with the dNaM-dTPT3 pair itself both in vivo and in vitro, was proven to be more photostable and thermostable and less toxic to E. coli cells. The discovery of dNaM-dTAT1 represents our first progress for the optimization of this type of bases toward more photostable properties; our data also suggest that less photosensitive unnatural base pairs will be beneficial to build a healthier cellular replication system.
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