4-Fluoro-threonine, the only fluoro amino acid of natural origin discovered so far, is an interesting target for both synthetic and theoretical investigations. In this work, we lay the foundation for spectroscopic characterization of 4-fluoro-threonine. First, we report a diastereoselective synthetic route, which is suitable to produce synthetic material for experimental characterization. The addition of the commercially available ethyl isocyanoacetate to benzyloxyacetaldehyde led to the corresponding benzyloxy-oxazoline, which was hydrolyzed and transformed into ethyl (4S*,5S*)-5-hydroxymethyl-2-oxo-4-oxazolidinecarboxylate in a few steps. Fluorination with diethylamino sulfur trifluoride (DAST) afforded ethyl (4S*,5S*)-5-fluoromethyl-2-oxo-4-oxazolidinecarboxylate, which was deprotected to give the desired diastereomerically pure 4-fluoro-threonine, in 8-10% overall yield. With the synthetic material in our hands, acid-base titrations have been carried out to determine acid dissociation constants and the isoelectric point, which is the testing ground for the theoretical analysis. We have used machine learning coupled with quantum chemistry at the state-of-the-art to analyze the conformational space of 4-fluoro-threonine, with the aim of gaining insights from the comparison of computational and experimental results. Indeed, we have demonstrated that our approach, which couples a last-generation double-hybrid density functional including empirical dispersion contributions with a model combining explicit first-shell molecules and a polarizable continuum for describing solvent effects, provides results and trends in remarkable agreement with experiments. Finally, the conformational analysis applied to fluoro amino acids represents an interesting study for the effect of fluorine on the stability and population of conformers.

4-Fluoro-Threonine: From Diastereoselective Synthesis to pH-Dependent Conformational Equilibrium in Aqueous Solution / S. Potenti, L. Spada, M. Fusè, G. Mancini, A. Gualandi, C. Leonardi, P.G. Cozzi, C. Puzzarini, V. Barone. - In: ACS OMEGA. - ISSN 2470-1343. - 6:20(2021 May 14), pp. 13170-13181. [10.1021/acsomega.1c01007]

4-Fluoro-Threonine: From Diastereoselective Synthesis to pH-Dependent Conformational Equilibrium in Aqueous Solution

S. Potenti
Co-primo
;
2021

Abstract

4-Fluoro-threonine, the only fluoro amino acid of natural origin discovered so far, is an interesting target for both synthetic and theoretical investigations. In this work, we lay the foundation for spectroscopic characterization of 4-fluoro-threonine. First, we report a diastereoselective synthetic route, which is suitable to produce synthetic material for experimental characterization. The addition of the commercially available ethyl isocyanoacetate to benzyloxyacetaldehyde led to the corresponding benzyloxy-oxazoline, which was hydrolyzed and transformed into ethyl (4S*,5S*)-5-hydroxymethyl-2-oxo-4-oxazolidinecarboxylate in a few steps. Fluorination with diethylamino sulfur trifluoride (DAST) afforded ethyl (4S*,5S*)-5-fluoromethyl-2-oxo-4-oxazolidinecarboxylate, which was deprotected to give the desired diastereomerically pure 4-fluoro-threonine, in 8-10% overall yield. With the synthetic material in our hands, acid-base titrations have been carried out to determine acid dissociation constants and the isoelectric point, which is the testing ground for the theoretical analysis. We have used machine learning coupled with quantum chemistry at the state-of-the-art to analyze the conformational space of 4-fluoro-threonine, with the aim of gaining insights from the comparison of computational and experimental results. Indeed, we have demonstrated that our approach, which couples a last-generation double-hybrid density functional including empirical dispersion contributions with a model combining explicit first-shell molecules and a polarizable continuum for describing solvent effects, provides results and trends in remarkable agreement with experiments. Finally, the conformational analysis applied to fluoro amino acids represents an interesting study for the effect of fluorine on the stability and population of conformers.
No
English
mixtures; molecular structure; monomers; peptides and proteins; solvents;
Settore CHIM/06 - Chimica Organica
Settore CHIM/02 - Chimica Fisica
Articolo
Esperti anonimi
Pubblicazione scientifica
   Raising up Catalysis for Innovative Developments (SURSUMCAT)
   SURSUMCAT
   MINISTERO DELL'ISTRUZIONE E DEL MERITO
   20174SYJAF_002
14-mag-2021
American Chemical Society
6
20
13170
13181
12
Pubblicato
Periodico con rilevanza internazionale
orcid
scopus
pubmed
crossref
Aderisco
info:eu-repo/semantics/article
4-Fluoro-Threonine: From Diastereoselective Synthesis to pH-Dependent Conformational Equilibrium in Aqueous Solution / S. Potenti, L. Spada, M. Fusè, G. Mancini, A. Gualandi, C. Leonardi, P.G. Cozzi, C. Puzzarini, V. Barone. - In: ACS OMEGA. - ISSN 2470-1343. - 6:20(2021 May 14), pp. 13170-13181. [10.1021/acsomega.1c01007]
open
Prodotti della ricerca::01 - Articolo su periodico
9
262
Article (author)
Periodico con Impact Factor
S. Potenti, L. Spada, M. Fusè, G. Mancini, A. Gualandi, C. Leonardi, P.G. Cozzi, C. Puzzarini, V. Barone
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/2434/1018234
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