个性化文献订阅>期刊> Journal of Organic Chemistry
 

Synthesis and Characterization of Conformationally Preorganized, (R)-Diethylene Glycol-Containing gamma-Peptide Nucleic Acids with Superior Hybridization Properties and Water Solubility

  作者 SAHU BICHISMITA; SACUI IULIA; RAPIREDDY SRINIVAS; ZANOTTI KIMBERLY J; BAHAL RAMAN; ARMITAGE BRUCE A; LY DANITH H  
  选自 期刊  Journal of Organic Chemistry;  卷期  2011年76-14;  页码  5614-5627  
  关联知识点  
 

[摘要]Developed in the early 1990s, peptide nucleic acid (PNA) has emerged as a promising class of nucleic acid mimic because of its strong binding affinity and sequence selectivity toward DNA and RNA and resistance to enzymatic degradation by proteases and nucleases; however, the main drawbacks, as compared to other classes of oligonucleotides, are water solubility and biocompatibility. Herein we show that installation of a relatively small, hydrophilic (R)-diethylene glycol ("miniPEG", R-MP) unit at the gamma-backbone transforms a randomly folded PNA into a right-handed helix. Synthesis of optically pure (R-MP)gamma PNA monomers is described, which can be accomplished in a few simple steps from a commercially available and relatively cheap Boc-L-serine. Once synthesized, (R-MP)gamma PNA oligomers are preorganized into a right-handed helix, hybridize to DNA and RNA with greater affinity and sequence selectivity, and are more water soluble and less aggregating than the parental PNA oligomers. The results presented herein have important implications for the future design and application of PNA in biology, biotechnology, and medicine, as well as in other disciplines, including drug discovery and molecular engineering.

 
      被申请数(0)  
 

[全文传递流程]

一般上传文献全文的时限在1个工作日内