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The History and Advances of Reversible Terminators Used in New Generations of Sequencing Technology 被引量:1

The History and Advances of Reversible Terminators Used in New Generations of Sequencing Technology
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摘要 DNA sequencing using reversible terminators, as one sequencing by synthesis strategy, has garnered a great deal of interest due to its popular application in the second-generation high-throughput DNA sequencing technology. In this review, we provided its history of develop- ment, classification, and working mechanism of this technology. We also outlined the screening strategies for DNA polymerases to accommodate the reversible terminators as substrates during polymerization; particularly, we introduced the "REAP" method developed by us. At the end of this review, we discussed current limitations of this approach and provided potential solutions to extend its application. DNA sequencing using reversible terminators, as one sequencing by synthesis strategy, has garnered a great deal of interest due to its popular application in the second-generation high-throughput DNA sequencing technology. In this review, we provided its history of develop- ment, classification, and working mechanism of this technology. We also outlined the screening strategies for DNA polymerases to accommodate the reversible terminators as substrates during polymerization; particularly, we introduced the "REAP" method developed by us. At the end of this review, we discussed current limitations of this approach and provided potential solutions to extend its application.
出处 《Genomics, Proteomics & Bioinformatics》 SCIE CAS CSCD 2013年第1期34-40,共7页 基因组蛋白质组与生物信息学报(英文版)
基金 the National Natural Science Foundation of China (Grant No. 31270846) the Chinese Academy of Sciences "100-Talent Program" for the support of this work
关键词 DNA polymerases Sequencing technology Modified nucleotide Primer extension Reversible terminator Sequencing by synthesis DNA polymerases Sequencing technology Modified nucleotide Primer extension Reversible terminator Sequencing by synthesis
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