Issue 48, 2021

Exploration of chromophores for a VCD couplet in a spectrally transparent infrared region for biomolecules

Abstract

Interactions of two chromophores such as carbonyl groups yield a strong VCD couplet that reflects the molecular structures. The use of VCD couplets for biomacromolecular structural studies has been hampered by severe signal overlap caused by numerous functional groups that originally exist in biomacromolecules. Nitrile, isonitrile, alkyne, and azido groups show characteristic IR absorption in the 2300–2000 cm−1 region, where biomolecules do not strongly absorb. We herein examined the usefulness of these functional groups as chromophores to observe a strong VCD couplet that can be readily interpreted using theoretical calculations. Studies on a chiral binaphthyl scaffold possessing two identical chromophores showed that nitrile and isonitrile groups generate moderately-strong but complex VCD signals due to anharmonic contributions. The nature of their anharmonic VCD patterns is discussed by comparison with the VCD spectrum of a mono-chromophoric molecule and by anharmonic DFT calculations. On the other hand, through studies on diazido binaphthyl and diazido monosaccharide, we demonstrated that the azido group is more promising for structural analysis of larger molecules due to its simple, strong VCD couplet whose spectral patterns are readily predicted by harmonic DFT calculations.

Graphical abstract: Exploration of chromophores for a VCD couplet in a spectrally transparent infrared region for biomolecules

Supplementary files

Article information

Article type
Paper
Submitted
06 Sep 2021
Accepted
17 Nov 2021
First published
18 Nov 2021

Phys. Chem. Chem. Phys., 2021,23, 27525-27532

Exploration of chromophores for a VCD couplet in a spectrally transparent infrared region for biomolecules

T. Taniguchi, M. Z. M. Zubir, N. Harada and K. Monde, Phys. Chem. Chem. Phys., 2021, 23, 27525 DOI: 10.1039/D1CP04074J

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