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Biosupramolecular Systems: Integrating Cues into Responses

机译:BioSupramular Systems:将提示整合到响应中

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摘要

Life is orchestrated by biomolecules interacting in complex networks of biological circuitry with emerging function. Progress in different areas of chemistry has made the design of systems that can recapitulate elements of such circuitry possible. Herein we review prominent examples of networks, the methodologies available to translate an input into various outputs, and speculate on potential applications and directions for the field. The programmability of nucleic acid hybridization has inspired applications beyond its function in heredity. At the circuitry level, DNA provides a powerful platform to design dynamic systems that respond to nucleic acid input sequences with output sequences through diverse logic gates, enabling the design of ever more complex circuitry. In order to interface with more diverse biomolecular inputs and yield outputs other than oligonucleotide sequences, an array of nucleic acid conjugates have been reported that can engage proteins as their input and yield a turn-on of enzymatic activity, a bioactive small molecule, or morphological changes in nanoobjects. While the programmability of DNA makes it an obvious starting point to design circuits, other biosupramolecular interactions have also been demonstrated, and harnessing progress in protein design is bound to deliver further integration of macromolecules in artificial circuits.
机译:生物分子通过生物电路复杂网络与新出现功能进行策划。不同化学领域的进展使得能够重新容纳这种电路的元件的系统。这里我们审查了网络的突出示例,可用于将输入转换为各种输出的方法,并推测现场的潜在应用程序和方向。核酸杂交的可编程性引发了超出其在遗传中的功能的应用。在电路级别,DNA提供了一种强大的平台,用于设计通过各种逻辑门的输出序列响应核酸输入序列的动态系统,从而实现更复杂的电路。为了与寡核苷酸序列以外的更多样化的生物分子输入和产量输出界面,已经报道了一种核酸缀合物阵列,其可以将蛋白质与其输入接合并产生酶活性,生物活性小分子或形态学的开启纳米孔的变化。虽然DNA的可编程性使其成为设计电路的明显起点,但也已经证明了其他生物粥分子相互作用,并且蛋白质设计的利用进展必将进一步整合大分子在人造电路中的大分子。

著录项

  • 来源
    《Journal of the American Chemical Society》 |2021年第12期|4467-4482|共16页
  • 作者单位

    University of Geneva Department of Organic Chemistry Faculty of Science CH-1205 Geneva Switzerland;

    University of Geneva Department of Organic Chemistry Faculty of Science CH-1205 Geneva Switzerland;

    University of Geneva Department of Organic Chemistry Faculty of Science CH-1205 Geneva Switzerland;

    University of Geneva Department of Organic Chemistry Faculty of Science CH-1205 Geneva Switzerland;

  • 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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