The role of amino acid side chains in stabilizing dipeptides: the laser ablation Fourier transform microwave spectrum of Ac-Val-NH 2

The steric effects imposed by the isopropyl group of valine in the conformational stabilization of the capped dipeptide N-acetyl-l-valinamide (Ac-Val-NH ) have been studied by laser ablation molecular beam Fourier transform microwave (LA-MB-FTMW) spectroscopy. The rotational and quadrupole coupling...

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Veröffentlicht in:Physical chemistry chemical physics : PCCP 2017-09, Vol.19 (36), p.24985-24990
Hauptverfasser: León, I, Alonso, E R, Mata, S, Cabezas, C, Rodríguez, M A, Grabow, J-U, Alonso, J L
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Sprache:eng
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Zusammenfassung:The steric effects imposed by the isopropyl group of valine in the conformational stabilization of the capped dipeptide N-acetyl-l-valinamide (Ac-Val-NH ) have been studied by laser ablation molecular beam Fourier transform microwave (LA-MB-FTMW) spectroscopy. The rotational and quadrupole coupling constants of the two N nuclei determined in this work show that this dipeptide exists as a mixture of C and C conformers in the supersonic expansion. The conformers are stabilized by a C[double bond, length as m-dash]OH-N intramolecular hydrogen bond closing a seven- or a five-membered ring, respectively. The observation of both conformers is in good agreement with previous results on the related dipeptides containing different residues, confirming that the polarity/non-polarity of the side chains of the amino acid is responsible for the conformational locking/unlocking. The voluminous isopropyl group is not able to prevent the less stable C conformer from forming but it destabilizes the C[double bond, length as m-dash]OH-N interaction.
ISSN:1463-9076
1463-9084
DOI:10.1039/c7cp03924g