The shape of leucine in the gas phase

Publikation: Beitrag in FachzeitschriftArtikelForschungPeer-Review

Autoren

  • Emilio J. Cocinero
  • Alberto Lesarri
  • Jens Uwe Grabow
  • Juan C. López
  • José L. Alonso

Externe Organisationen

  • Universidad de Valladolid
Forschungs-netzwerk anzeigen

Details

OriginalspracheEnglisch
Seiten (von - bis)599-604
Seitenumfang6
FachzeitschriftCHEMPHYSCHEM
Jahrgang8
Ausgabenummer4
PublikationsstatusVeröffentlicht - 12 März 2007

Abstract

Two structures of neutral leucine are detected in the jet-cooled rotational spectrum of a laser-ablation molecular-beam Fourier transform microwave (LA-MB-FTMW) experiment. The comparison between the experimental rotational and 14N nuclear quadrupole coupling constants and those calculated ab initio provides conclusive evidence for the identification of the conformers. The most stable species is stabilized by a N-H⋯O=C intramolecular hydrogen bond and a cis-COOH interaction, while a higher-energy conformer exhibits a N⋯H-O intramolecular hydrogen bond and trans-COOH, as in lower aliphatic amino acids. The isobutyl side chain adopts the same configuration in the two conformers of leucine, characterized by a trans arrangement of the C′-Cα-Cβ-Cγ- chain. The differences with the preferred side chain configurations observed in valine and isoleucine are discussed.

ASJC Scopus Sachgebiete

Zitieren

The shape of leucine in the gas phase. / Cocinero, Emilio J.; Lesarri, Alberto; Grabow, Jens Uwe et al.
in: CHEMPHYSCHEM, Jahrgang 8, Nr. 4, 12.03.2007, S. 599-604.

Publikation: Beitrag in FachzeitschriftArtikelForschungPeer-Review

Cocinero, EJ, Lesarri, A, Grabow, JU, López, JC & Alonso, JL 2007, 'The shape of leucine in the gas phase', CHEMPHYSCHEM, Jg. 8, Nr. 4, S. 599-604. https://doi.org/10.1002/cphc.200600730
Cocinero, E. J., Lesarri, A., Grabow, J. U., López, J. C., & Alonso, J. L. (2007). The shape of leucine in the gas phase. CHEMPHYSCHEM, 8(4), 599-604. https://doi.org/10.1002/cphc.200600730
Cocinero EJ, Lesarri A, Grabow JU, López JC, Alonso JL. The shape of leucine in the gas phase. CHEMPHYSCHEM. 2007 Mär 12;8(4):599-604. doi: 10.1002/cphc.200600730
Cocinero, Emilio J. ; Lesarri, Alberto ; Grabow, Jens Uwe et al. / The shape of leucine in the gas phase. in: CHEMPHYSCHEM. 2007 ; Jahrgang 8, Nr. 4. S. 599-604.
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T1 - The shape of leucine in the gas phase

AU - Cocinero, Emilio J.

AU - Lesarri, Alberto

AU - Grabow, Jens Uwe

AU - López, Juan C.

AU - Alonso, José L.

PY - 2007/3/12

Y1 - 2007/3/12

N2 - Two structures of neutral leucine are detected in the jet-cooled rotational spectrum of a laser-ablation molecular-beam Fourier transform microwave (LA-MB-FTMW) experiment. The comparison between the experimental rotational and 14N nuclear quadrupole coupling constants and those calculated ab initio provides conclusive evidence for the identification of the conformers. The most stable species is stabilized by a N-H⋯O=C intramolecular hydrogen bond and a cis-COOH interaction, while a higher-energy conformer exhibits a N⋯H-O intramolecular hydrogen bond and trans-COOH, as in lower aliphatic amino acids. The isobutyl side chain adopts the same configuration in the two conformers of leucine, characterized by a trans arrangement of the C′-Cα-Cβ-Cγ- Cδ chain. The differences with the preferred side chain configurations observed in valine and isoleucine are discussed.

AB - Two structures of neutral leucine are detected in the jet-cooled rotational spectrum of a laser-ablation molecular-beam Fourier transform microwave (LA-MB-FTMW) experiment. The comparison between the experimental rotational and 14N nuclear quadrupole coupling constants and those calculated ab initio provides conclusive evidence for the identification of the conformers. The most stable species is stabilized by a N-H⋯O=C intramolecular hydrogen bond and a cis-COOH interaction, while a higher-energy conformer exhibits a N⋯H-O intramolecular hydrogen bond and trans-COOH, as in lower aliphatic amino acids. The isobutyl side chain adopts the same configuration in the two conformers of leucine, characterized by a trans arrangement of the C′-Cα-Cβ-Cγ- Cδ chain. The differences with the preferred side chain configurations observed in valine and isoleucine are discussed.

KW - Amino acids

KW - Conformation analysis

KW - Hydrogen bonds

KW - Rotational spectroscopy

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