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Thermophilic Nucleic Acid Polymerases and Their Application in Xenobiology

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出版社

MDPI
DOI: 10.3390/ijms232314969

关键词

thermophilic organisms; thermophilic enzymes; nucleic acid polymerases; xeno nucleic acids (XNAs); xenobiology

资金

  1. National Natural Science Foundation of China
  2. National Key R&D Program of China
  3. Guangdong Provincial Pearl River Talents Program
  4. Program for Guangdong Introducing Innovative and Entrepreneurial Teams
  5. [21978100]
  6. [2019YFA0904102]
  7. [2019QN01Y228]
  8. [2019ZT08Y318]

向作者/读者索取更多资源

Thermophilic nucleic acid polymerases have great DNA/RNA synthesis activities at high temperatures and have been widely used in bioengineering, biotechnology, and biomedicine. Xeno nucleic acids (XNAs) are new carriers of genetic information and have contributed to the development of xenobiology. Researchers have engineered thermophilic nucleic acid polymerases to enable their synthesis, reverse transcription, and amplification of XNAs, facilitating their application in the production of novel drugs, materials, and catalysts.
Thermophilic nucleic acid polymerases, isolated from organisms that thrive in extremely hot environments, possess great DNA/RNA synthesis activities under high temperatures. These enzymes play indispensable roles in central life activities involved in DNA replication and repair, as well as RNA transcription, and have already been widely used in bioengineering, biotechnology, and biomedicine. Xeno nucleic acids (XNAs), which are analogs of DNA/RNA with unnatural moieties, have been developed as new carriers of genetic information in the past decades, which contributed to the fast development of a field called xenobiology. The broad application of these XNA molecules in the production of novel drugs, materials, and catalysts greatly relies on the capability of enzymatic synthesis, reverse transcription, and amplification of them, which have been partially achieved with natural or artificially tailored thermophilic nucleic acid polymerases. In this review, we first systematically summarize representative thermophilic and hyperthermophilic polymerases that have been extensively studied and utilized, followed by the introduction of methods and approaches in the engineering of these polymerases for the efficient synthesis, reverse transcription, and amplification of XNAs. The application of XNAs facilitated by these polymerases and their mutants is then discussed. In the end, a perspective for the future direction of further development and application of unnatural nucleic acid polymerases is provided.

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