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Amplification, Mutation, and Sequencing of a Six-Letter Synthetic Genetic System

机译:六字母合成遗传系统的扩增,突变和测序

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摘要

The next goals in the development of a synthetic biology that uses ' artificial genetic systems will require chemistry-biology combinations that allow the amplification of DNA containing any number of sequential and nonsequential nonstandard nucleotides. This amplification must ensure that the nonstandard nucleotides are not unidirectionally lost during PCR amplification (unidirectional loss would cause the artificial system to revert to an all-natural genetic system). Further, technology is needed to sequence artificial genetic DNA molecules. The work reported here meets all three of these goals for a six-letter artificially expanded genetic information system (AEGIS) that comprises four standard nucleotides (G, A, C, and T) and two additional nonstandard nucleotides (Z and P). We report polymerases and PCR conditions that amplify a wide range of GACTZP DNA sequences having multiple consecutive unnatural synthetic genetic components with low (0.2% per theoretical cycle) levels of mutation. We demonstrate that residual mutation processes both introduce and remove unnatural nucleotides, allowing the artificial genetic system to evolve as such, rather than revert to a wholly natural system. We then show that mechanisms for these residual mutation processes can be exploited in a strategy to sequence "six-letter" GACTZP DNA These are all not yet reported for any other synthetic genetic system.
机译:使用人工遗传系统的合成生物学发展的下一个目标将需要化学生物学组合,以允许扩增包含任意数量的顺序和非顺序非标准核苷酸的DNA。这种扩增必须确保非标准核苷酸在PCR扩增过程中不会单向丢失(单向丢失会导致人工系统恢复为全天然遗传系统)。此外,需要对人工遗传DNA分子进行测序的技术。此处报告的工作满足了六个字母的人工扩展遗传信息系统(AEGIS)的所有这三个目标,该系统包含四个标准核苷酸(G,A,C和T)和两个其他非标准核苷酸(Z和P)。我们报告了聚合酶和PCR条件,可以扩增具有多个连续的非天然合成遗传成分且具有较低的突变水平(每个理论周期为0.2%)的GACTZP DNA序列。我们证明了残留突变过程既可以引入也可以去除非天然核苷酸,从而使人工遗传系统得以进化,而不是还原为完全天然的系统。然后,我们表明这些残留突变过程的机制可以在对“六字母” GACTZP DNA进行测序的策略中加以利用。对于其他任何合成遗传系统,这些都尚未报道。

著录项

  • 来源
    《Journal of the American Chemical Society》 |2011年第38期|p.15105-15112|共8页
  • 作者单位

    Foundation for Applied Molecular Evolution (FfAME), 720 SW Second Avenue, Suite 201, Gainesville, Florida 32601, United States,The Westheimer Institute for Science and Technology (TWIST), 720 SW Second Avenue, Suite 208, Gainesville, Florida 32601, United States;

    Foundation for Applied Molecular Evolution (FfAME), 720 SW Second Avenue, Suite 201, Gainesville, Florida 32601, United States,The Westheimer Institute for Science and Technology (TWIST), 720 SW Second Avenue, Suite 208, Gainesville, Florida 32601, United States;

    Foundation for Applied Molecular Evolution (FfAME), 720 SW Second Avenue, Suite 201, Gainesville, Florida 32601, United States,The Westheimer Institute for Science and Technology (TWIST), 720 SW Second Avenue, Suite 208, Gainesville, Florida 32601, United States;

    Foundation for Applied Molecular Evolution (FfAME), 720 SW Second Avenue, Suite 201, Gainesville, Florida 32601, United States,The Westheimer Institute for Science and Technology (TWIST), 720 SW Second Avenue, Suite 208, Gainesville, Florida 32601, United States;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);美国《化学文摘》(CA);
  • 原文格式 PDF
  • 正文语种 eng
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  • 入库时间 2022-08-18 03:14:27

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