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1.
ACS Sustain Chem Eng ; 12(9): 3575-3584, 2024 Mar 04.
Artículo en Inglés | MEDLINE | ID: mdl-38456190

RESUMEN

Enzymatic decarboxylation of biobased hydroxycinnamic acids gives access to phenolic styrenes for adhesive production. Phenolic acid decarboxylases are proficient enzymes that have been applied in aqueous systems, organic solvents, biphasic systems, and deep eutectic solvents, which makes stability a key feature. Stabilization of the enzyme would increase the total turnover number and thus reduce the energy consumption and waste accumulation associated with biocatalyst production. In this study, we used ancestral sequence reconstruction to generate thermostable decarboxylases. Investigation of a set of 16 ancestors resulted in the identification of a variant with an unfolding temperature of 78.1 °C and a half-life time of 45 h at 60 °C. Crystal structures were determined for three selected ancestors. Structural attributes were calculated to fit different regression models for predicting the thermal stability of variants that have not yet been experimentally explored. The models rely on hydrophobic clusters, salt bridges, hydrogen bonds, and surface properties and can identify more stable proteins out of a pool of candidates. Further stabilization was achieved by the application of mixtures of natural deep eutectic solvents and buffers. Our approach is a straightforward option for enhancing the industrial application of the decarboxylation process.

2.
Chembiochem ; 24(16): e202300207, 2023 08 15.
Artículo en Inglés | MEDLINE | ID: mdl-37191502

RESUMEN

Biocatalytic decarboxylation of hydroxycinnamic acids yields phenolic styrenes, which are important precursors for antioxidants, epoxy coatings, adhesives and other polymeric materials. Bacillus subtilis decarboxylase (BsPAD) is a cofactor-independent enzyme that catalyzes the cleavage of carbon dioxide from p-coumaric-, caffeic-, and ferulic acid with high catalytic efficiency. Real-time spectroscopic assays for decarboxylase reactions remove the necessity of extensive sample workup, which is required for HPLC, mass spectrometry, gas chromatography, or NMR methods. This work presents two robust and sensitive assays based on photometry and fluorimetry that allow decarboxylation reactions to be followed with high sensitivity while avoiding product extraction and long analysis times. Optimized assay procedures were used to measure BsPAD activity in cell lysates and to determine the kinetic constants (KM and Vmax ) of the purified enzyme for p-coumaric-, caffeic- and ferulic acid. Substrate inhibition was shown for caffeic acid.


Asunto(s)
Carboxiliasas , Ácidos Cumáricos , Ácidos Cumáricos/química , Carboxiliasas/química , Fluorometría
3.
Chembiochem ; 22(20): 2951-2956, 2021 10 13.
Artículo en Inglés | MEDLINE | ID: mdl-34033201

RESUMEN

Racemic camphor and isoborneol are readily available as industrial side products, whereas (1R)-camphor is available from natural sources. Optically pure (1S)-camphor, however, is much more difficult to obtain. The synthesis of racemic camphor from α-pinene proceeds via an intermediary racemic isobornyl ester, which is then hydrolyzed and oxidized to give camphor. We reasoned that enantioselective hydrolysis of isobornyl esters would give facile access to optically pure isoborneol and camphor isomers, respectively. While screening of a set of commercial lipases and esterases in the kinetic resolution of racemic monoterpenols did not lead to the identification of any enantioselective enzymes, the cephalosporin Esterase B from Burkholderia gladioli (EstB) and Esterase C (EstC) from Rhodococcus rhodochrous showed outstanding enantioselectivity (E>100) towards the butyryl esters of isoborneol, borneol and fenchol. The enantioselectivity was higher with increasing chain length of the acyl moiety of the substrate. The kinetic resolution of isobornyl butyrate can be easily integrated into the production of camphor from α-pinene and thus allows the facile synthesis of optically pure monoterpenols from a renewable side-product.


Asunto(s)
Monoterpenos Bicíclicos/química , Alcanfor/síntesis química , Monoterpenos Bicíclicos/metabolismo , Burkholderia gladioli/enzimología , Alcanfor/química , Alcanfor/metabolismo , Cefalosporinas/metabolismo , Estructura Molecular , Rhodococcus/enzimología , Serina Endopeptidasas/metabolismo , Estereoisomerismo
4.
Bioorg Chem ; 104: 104214, 2020 11.
Artículo en Inglés | MEDLINE | ID: mdl-32927128

RESUMEN

In this paper, we study the activity and specificity of EstDZ2, a new thermostable carboxyl esterase of unknown function, which was isolated from a metagenome library from a Russian hot spring. The biocatalytic reaction employing EstDZ2 proved to be an efficient method for the hydrolysis of aryl p-, o- or m-substituted esters of butyric acid and esters of secondary alcohols. Docking studies revealed structural features of the enzyme that led to activity differences among the different substrates.


Asunto(s)
Esterasas/metabolismo , Temperatura , Alcoholes/química , Alcoholes/metabolismo , Biocatálisis , Ácido Butírico/química , Ácido Butírico/metabolismo , Esterasas/química , Esterasas/aislamiento & purificación , Biblioteca de Genes , Manantiales de Aguas Termales , Hidrólisis , Simulación del Acoplamiento Molecular , Estructura Molecular
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