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Novel Kinetic Resolution of Thiazolo-Benzimidazolines Using MAO Enzymes.
Villamil, Valentina; Vairoletti, Franco; Tijman, Ariel; López, Gonzalo; Peixoto de Abreu Lima, Alejandro; Saiz, Cecilia; Iglesias, César; Mahler, Graciela.
Afiliación
  • Villamil V; Departamento de Química Orgánica, Laboratorio de Quimica Farmaceutica, Facultad de Quimica, Universidad de la República, Gral Flores 2124, Montevideo, Montevideo 11800, Uruguay.
  • Vairoletti F; Departamento de Química Orgánica, Laboratorio de Quimica Farmaceutica, Facultad de Quimica, Universidad de la República, Gral Flores 2124, Montevideo, Montevideo 11800, Uruguay.
  • Tijman A; Programa de Posgrado en Quimica, Universidad de la República Uruguay, Gral Flores 2124, Montevideo, Montevideo 11800, Uruguay.
  • López G; Programa de Posgrado en Quimica, Universidad de la República Uruguay, Gral Flores 2124, Montevideo, Montevideo 11800, Uruguay.
  • Peixoto de Abreu Lima A; Departamento de Biociencias, Laboratorio de Microbiología Molecular, Facultad de Quimica, Universidad de la Republica, Gral Flores 2124, Montevideo, Montevideo 11800, Uruguay.
  • Saiz C; Departamento de Biociencias y Departamento de Quimica Organica, Laboratorio de Biocatalisis y Biotransformaciones, Facultad de Quimica, Universidad de la Republica, Gral Flores 2124, Montevideo, Montevideo 11800, Uruguay.
  • Iglesias C; Programa de Posgrado en Quimica, Universidad de la República Uruguay, Gral Flores 2124, Montevideo, Montevideo 11800, Uruguay.
  • Mahler G; Departamento de Biociencias, Laboratorio de Microbiología Molecular, Facultad de Quimica, Universidad de la Republica, Gral Flores 2124, Montevideo, Montevideo 11800, Uruguay.
ACS Omega ; 8(45): 42114-42125, 2023 Nov 14.
Article en En | MEDLINE | ID: mdl-38024698
ABSTRACT
The kinetic resolution of racemic 1H,3H-thiazolo[3,4-a]benzimidazoline (TBIM) heterocycles was achieved using E. coli whole cells expressing the MAO-N D11 enzyme. Several cosolvents were screened using TBIM 2a as the substrate. DMF was the best cosolvent, affording the pure enantiomer (+)-2a in 44% yield, 94% ee. The stereochemistry of TBIM was predicted by means of ab initio calculations of optical rotation and circular dichroism spectra. The reaction scope was investigated for 11 substituted (±) TBIM using an optimized protocol. The best yield and % ee were obtained for the nonsubstituted 2a. Among the substituted compounds, the 5-substituted-TBIM showed better % ee than the 4-substituted one. The small electron donor group (Me) led to better % ee than the electron-withdrawing groups (-NO2 and -CO2Et), and the bulky naphthyl group was detrimental for the kinetic resolution. Docking experiments and molecular dynamics (MD) simulations were employed to further understand the interactions between MAO-N D11 and the thiazolo-benzimidazoline substrates. For 2a, the MD showed favorable positioning and binding energy for both enantiomers, thus suggesting that this kinetic resolution is influenced not only by the active site but also by the entry tunnel. This work constitutes the first report of the enzymatic kinetic resolution applied to TBIM heterocycles.