Episode

Semi-rational Engineering of Terminal Deoxynucleotidyl Transferase for High-efficiency Enzymatic de Novo DNA Synthesis

Dec 29, 20256:14
Synthetic Biology
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Abstract

The 21st century has witnessed rapid advancements in synthetic biology, with DNA synthesis emerging as a foundational technology. Conventional phosphoramidite-based methods face significant limitations, including short DNA elongation lengths (<300 nt), hazardous chemical waste, and low stepwise incorporation efficiency. Enzymatic DNA synthesis using terminal deoxynucleotidyl transferase (TdT) offers a promising alternative, enabling kilobase-scale assembly with greater efficiency and minimal environmental impact. Here, we identified Bos taurus TdT (BtTdT) through UniProt database mining as a catalytically active scaffold for natural and 3'-modified dNTPs. Comprehensive characterization of BtTdT's enzymatic properties--including pH, temperature, metal ion dependence, and substrate specificity--revealed its optimal conditions. Truncation of the BRCT domain generated variants with enhanced activity compared to wild-type BtTdT. Guided by AlphaFold3-predicted structural models, we engineered a quintuple mutant (M5: Bt15AAR336L/K338G/L397M/E456S/D395G) optimized for 3'-ONH2-dNTP incorporation. M5 exhibited 30-fold activity enhancement relative to the triple mutant M3 (Bt15AAR336L/K338G/L397M) and achieved stepwise incorporation efficiency exceeding 98% in de novo synthesis of 10-nt ssDNA, demonstrating its potential for scalable enzymatic DNA synthesis. This work establishes a rational framework for TdT engineering through rational domain truncation and computational design, showing potential toward industrial-scale enzymatic DNA manufacturing.

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Cite This Paper

Year:2025
Category:synthetic_biology
APA

C., Z., Z., H., Z., G., C., M., W., P., L., D., S., L. (2025). Semi-rational Engineering of Terminal Deoxynucleotidyl Transferase for High-efficiency Enzymatic de Novo DNA Synthesis. arXiv preprint arXiv:10.64898/2025.12.29.696827.

MLA

Zhang, C., He, Z., Gao, Z., Meng, C., Peng, W., Du, L., and Li, S.. "Semi-rational Engineering of Terminal Deoxynucleotidyl Transferase for High-efficiency Enzymatic de Novo DNA Synthesis." arXiv preprint arXiv:10.64898/2025.12.29.696827 (2025).