AI Article Synopsis

  • Helical oligomers made from achiral monomers display areas of consistent screw sense, interspersed with occasional reversals that aren’t well-studied.
  • A screw-sense reversal was analyzed within a specific helical oligoamide made from 2-aminoisobutyric acid, created by fixing a right-handed and left-handed screw sense at both ends.
  • Various techniques like X-ray crystallography and NMR showed that while the reversal could shift along the helical structure, the overall helical shape remained intact, suggesting that similar structures may easily switch screw sense during their formation.

Article Abstract

Helical oligomers of achiral monomers adopt domains of uniform screw sense, which are occasionally interrupted by screw-sense reversals. These rare, elusive, and fast-moving features have eluded detailed characterization. We now describe the structure and habits of a screw-sense reversal trapped within a fragment of a helical oligoamide foldamer of the achiral quaternary amino acid 2-aminoisobutyric acid (Aib). The reversal was enforced by compelling the amide oligomer to adopt a right-handed screw sense at one end and a left-handed screw sense at the other. The trapped reversal was characterized by X-ray crystallography, and its dynamic properties were monitored by NMR and circular dichroism, and modelled computationally. Raman spectroscopy indicated that a predominantly helical architecture was maintained despite the reversal. NMR and computational results indicated a stepwise shift from one screw sense to another on moving along the helical chain, indicating that in solution the reversal is not localised at a specific location, but is free to migrate across a number of residues. Analogous unconstrained screw-sense reversals that are free to move within a helical structure are likely to provide the mechanism by which comparable helical polymers and foldamers undergo screw-sense inversion.

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Source
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC5380885PMC
http://dx.doi.org/10.1039/c6sc05474aDOI Listing

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