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Thermococcus sp. 9°N DNA polymerase exhibits 3'-esterase activity that can be harnessed for DNA sequencing.


ABSTRACT: It was reported in 1995 that T7 and Taq DNA polymerases possess 3'-esterase activity, but without follow-up studies. Here we report that the 3'-esterase activity is intrinsic to the Thermococcus sp. 9°N DNA polymerase, and that it can be developed into a continuous method for DNA sequencing with dNTP analogs carrying a 3'-ester with a fluorophore. We first show that 3'-esterified dNTP can be incorporated into a template-primer DNA, and solve the crystal structures of the reaction intermediates and products. Then we show that the reaction can occur continuously, modulated by active site residues Tyr409 and Asp542. Finally, we use 5'-FAM-labeled primer and esterified dNTP with a dye to show that the reaction can proceed to ca. 450 base pairs, and that the intermediates of many individual steps can be identified. The results demonstrate the feasibility of a 3'-editing based DNA sequencing method that could find practical applications after further optimization.

SUBMITTER: LinWu SW 

PROVIDER: S-EPMC6586783 | biostudies-literature | 2019

REPOSITORIES: biostudies-literature

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<i>Thermococcus sp</i>. 9°N DNA polymerase exhibits 3'-esterase activity that can be harnessed for DNA sequencing.

LinWu Shiuan-Woei SW   Tu Yu-Hsuan YH   Tsai Ting-Yueh TY   Maestre-Reyna Manuel M   Liu Mu-Sen MS   Wu Wen-Jin WJ   Huang Jyun-Yuan JY   Chi Hung-Wen HW   Chang Wei-Hsin WH   Chiou Chung-Fan CF   Wang Andrew H-J AH   Lee Johnsee J   Tsai Ming-Daw MD  

Communications biology 20190620


It was reported in 1995 that T7 and Taq DNA polymerases possess 3'-esterase activity, but without follow-up studies. Here we report that the 3'-esterase activity is intrinsic to the <i>Thermococcus sp</i>. 9°N DNA polymerase, and that it can be developed into a continuous method for DNA sequencing with dNTP analogs carrying a 3'-ester with a fluorophore. We first show that 3'-esterified dNTP can be incorporated into a template-primer DNA, and solve the crystal structures of the reaction intermed  ...[more]

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