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February 28, 2026Nature Communications0 citationsOpen Access

Analysis and control of untemplated DNA polymerase activity for guided synthesis of kilobase-scale DNA sequences

SCSimeon D. CastleTIThea C T IrvineAWAdrian Woolfson

Key Points

  • The research aims to investigate the untemplated activity of DNA polymerases and understand its implications for DNA synthesis.
  • Utilized long-read nanopore sequencing to analyze DNA fragments.
  • Conducted real-time fluorescence assays for observing polymerase activity.
  • Employed atomic force microscopy to visualize DNA structures across varying temperatures and buffer compositions.
  • Examined diverse natural and engineered DNA polymerases to compare their untemplated synthesis capabilities.
  • Documented the ability of DNA polymerases to synthesize fragments without a template.
  • Identified specific sequence motifs enriched in the synthesized DNA products.
  • Demonstrated that environmental adjustments can influence the sequence composition of synthesized DNA.

Abstract

Abstract DNA polymerases are complex molecular machines capable of replicating genetic material using a template-driven process. While the copying function of these enzymes is well established, their ability to perform untemplated DNA synthesis is less well characterized. Here, we explore the ability of DNA polymerases to synthesize DNA fragments in the absence of a template. We use long-read nanopore sequencing, real-time fluorescence assays, and atomic force microscopy to observe the synthesis and physical structure of pools of DNA products derived from a diverse set of natural and engineered DNA polymerases across varying temperatures and buffer compositions. We detail the features of the DNA fragments generated, enrichment of select sequence motifs, and demonstrate that the sequence composition of the synthesized DNA can be altered by modifying environmental conditions. This work provides extensive data to better discern the process of untemplated DNA polymerase activity and may support its potential repurposing as a technology for the guided synthesis of DNA sequences on the kilobase-scale and beyond.

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Cite This Study

Castle et al. (2026) studied this question.

synapsesocial.com/papers/69a286c90a974eb0d3c01fe5https://doi.org/10.1038/s41467-026-69915-x
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