陈非,董梦醒,葛猛,刘国成.人造碱基与人工合成生命[J].中国科学院院刊,2016,31(4):457-466.

人造碱基与人工合成生命

Artificial Base and Synthetic Life
作者
陈非
中国科学院北京基因组研究所,中国科学院基因组学与信息重点实验室 北京 100101
Chen Fei
CAS Key Laboratory of Genome Sciences and Information, Beijing Institute of Genomics, Chinese Academy of Sciences, Beijing 100101, China
董梦醒
中国科学院北京基因组研究所,中国科学院基因组学与信息重点实验室 北京 100101;中国科学院大学 北京 100049
Dong Mengxing
CAS Key Laboratory of Genome Sciences and Information, Beijing Institute of Genomics, Chinese Academy of Sciences, Beijing 100101, China;University of Chinese Academy of Sciences, Beijing 100049, China
葛猛
中国科学院北京基因组研究所,中国科学院基因组学与信息重点实验室 北京 100101
Ge Meng
CAS Key Laboratory of Genome Sciences and Information, Beijing Institute of Genomics, Chinese Academy of Sciences, Beijing 100101, China
刘国成
中国科学院北京基因组研究所,中国科学院基因组学与信息重点实验室 北京 100101
Liu Guocheng
CAS Key Laboratory of Genome Sciences and Information, Beijing Institute of Genomics, Chinese Academy of Sciences, Beijing 100101, China
中文关键词
         人造碱基;人工扩展碱基字母;非天然碱基对;合成生物学;人工合成生命
英文关键词
        artificial base;expanded genetic alphabets;unnatural base pair;synthetic biology;synthetic life
中文摘要
        文章就人造碱基及相关人工合成生命领域内的代表性研究成果进行了全景式综述,着重介绍了氢键互补及疏水性两种最为主要的人造碱基对,探讨了具有里程碑意义的六核酸分子人工合成生命及其对合成生物学未来发展的影响,简单综述了人造碱基在DNA检测诊断试剂盒等方面的成功应用实例。最后对这一研究领域的前景和面临的挑战进行了展望。
英文摘要
        “Artificial Base” is also known as “Expanded Genetic Alphabets”. Through modifying normal bases, it is designed to achieve the function of native nucleic acid, which was first introduced about thirty years ago. In 2014, Nature reported a semi-synthetic Escherichia coli, whose genome contains a pair of unnatural base pair which can be stably propagated in the semi-synthetic bacterium. This landmark work was selected as one of the top ten breakthroughs of 2014 by the Science journal. Here, we panoramically review the representative achievements in the field of artificial base and synthetic life, particularly two leading artificial base pairs respectively with alternative hydrogen bonding pattern and hydrophobic shape complementation pattern. Moreover, we discuss the significant work regarding the synthetic living system with sixletter nucleotides and its effect on future developments of synthetic biology. The successful applications of diagnostic kit for DNA test and other cases are also introduced. Finally, we discuss the further work required to this field and the challenges.
DOI10.16418/j.issn.1000-3045.2016.04.011
作者简介
陈非中科院北京基因组所研究员,博士生导师,中科院“百人计划”引进人才。在美期间曾师从“合成生物学”联合创始人StevenA.Benner。目前主要致力于致病微生物基因组学及宏基因组学研究,有多篇研究论文发表在PNAS、JACS、NucleicAcidRes等国际顶级期刊上。E-mail:chenfei@big.ac.cn
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