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May 12, 2015Journal of the American Chemical Society242 citations

Evolution of Functional Six-Nucleotide DNA

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LZLiqin ZhangWannan Medical CollegeZYZunyi YangFirebird Biomolecular Sciences (United States)KSKwame SefahHunan University

Key Points

  • To determine whether expanding the genetic alphabet to six nucleotides (GACTZP) allows the evolution of functional DNA molecules capable of selectively binding liver cancer cells.
  • Designed two synthetic nucleotides (Z and P) engineered to form complete Watson-Crick base pairs and incorporated them into a GACTZP oligonucleotide library.
  • Performed laboratory in vitro evolution (LIVE) with low-level mutation to evolve sequences that selectively bind transformed liver cancer cells over untransformed liver cells.
  • Isolated over a dozen distinct DNA species capable of selective binding to liver cancer cells.
  • The strongest binding molecules contained Z and/or P nucleotides, frequently in multiple, nearby, or adjacent configurations, whereas sequences lacking Z and P showed only weak binding.

Abstract

Axiomatically, the density of information stored in DNA, with just four nucleotides (GACT), is higher than in a binary code, but less than it might be if synthetic biologists succeed in adding independently replicating nucleotides to genetic systems. Such addition could also add functional groups not found in natural DNA, but useful for molecular performance. Here, we consider two new nucleotides (Z and P, 6-amino-5-nitro-3-(1'-β-D-2'-deoxyribo-furanosyl)-2(1H)-pyridone and 2-amino-8-(1'-β-D-2'-deoxyribofuranosyl)-imidazo1,2-a-1,3,5-triazin-4(8H)-one). These are designed to pair via complete Watson-Crick geometry. These were added to a library of oligonucleotides used in a laboratory in vitro evolution (LIVE) experiment; the GACTZP library was challenged to deliver molecules that bind selectively to liver cancer cells, but not to untransformed liver cells. Unlike in classical in vitro selection, low levels of mutation allow this system to evolve to create binding molecules not necessarily present in the original library. Over a dozen binding species were recovered. The best had Z and/or P in their sequences. Several had multiple, nearby, and adjacent Zs and Ps. Only the weaker binders contained no Z or P at all. This suggests that this system explored much of the sequence space available to this genetic system and that GACTZP libraries are richer reservoirs of functionality than standard libraries.

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Cite This Study

Zhang et al. (2015) studied this question.

synapsesocial.com/papers/69db2c0ae6ab964fb0836e35https://doi.org/10.1021/jacs.5b02251
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