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Enzymatic Synthesis and Molecular Modelling Studies of Rhamnose Esters Using Lipase from Pseudomonas stutzeri

dc.contributor.advisorHernáiz Gómez-Degano, María Josefa
dc.contributor.authorGarcía Oliva, Cecilia María
dc.contributor.authorPerona Requena, Almudena
dc.contributor.authorRumbero, Ángel
dc.contributor.authorHoyos Vidal, María Pilar
dc.contributor.authorHernáiz Gómez-Degano, María Josefa
dc.date.accessioned2024-01-30T12:41:14Z
dc.date.available2024-01-30T12:41:14Z
dc.date.issued2022-02-17
dc.description.abstractRhamnolipids are becoming an important class of glycolipid biosurfactants. Herein, we describe for the first time the enzymatic synthesis of rhamnose fatty acid esters by the transesterification of rhamnose with fatty acid vinyl esters, using lipase from Pseudomonas stutzeri as a biocatalyst. The use of this lipase allows excellent catalytic activity in the synthesis of 4-O-acylrhamnose (99% conversion and full regioselectivity) after 3 h of reaction using tetrahydrofuran (THF) as the reaction media and an excess of vinyl laurate as the acyl donor. The role of reaction conditions, such as temperature, the substrates molar ratio, organic reaction medium and acyl donor chain-length, was studied. Optimum conditions were found using 35 °C, a molar ratio of 1:3 (rhamnose:acyldonor), solvents with a low logP value, and fatty acids with chain lengths from C4 to C18 as acyl donors. In hydrophilic solvents such as THF and acetone, conversions of up to 99–92% were achieved after 3 h of reaction. In a more sustainable solvent such as 2-methyl-THF (2-MeTHF), high conversions were also obtained (86%). Short and medium chain acyl donors (C4–C10) allowed maximum conversions after 3 h, and long chain acyl donors (C12–C18) required longer reactions (5 h) to get 99% conversions. Furthermore, scaled up reactions are feasible without losing catalytic action and regioselectivity. In order to explain enzyme regioselectivity and its ability to accommodate ester chains of different lengths, homology modelling, docking studies and molecular dynamic simulations were performed to explain the behaviour observed.en
dc.description.departmentDepto. de Química en Ciencias Farmacéuticas
dc.description.facultyFac. de Farmacia
dc.description.refereedTRUE
dc.description.sponsorshipMinisterio de Ciencia, Innovación y Universidades (España)
dc.description.statuspub
dc.identifier.doi10.3390/ijms23042239
dc.identifier.issn1422-0067
dc.identifier.officialurlhttps://doi.org/10.3390/ijms23042239
dc.identifier.urihttps://hdl.handle.net/20.500.14352/96496
dc.issue.number2239
dc.journal.titleInternational Journal of Molecular Sciences
dc.language.isoeng
dc.page.final18
dc.page.initial1
dc.publisherMultidisciplinary Digital Publishing Institute
dc.relation.projectIDinfo:eu-repo/grantAgreement/RTI2018-096037-B-I00
dc.rightsAttribution 4.0 International
dc.rights.accessRightsopen access
dc.rights.urihttps://creativecommons.org/licenses/by/4.0/
dc.subject.keywordRhamnose esters
dc.subject.keywordPseudomonas stutzeri lipase
dc.subject.keywordSugar fatty acid esters
dc.subject.keywordEnzymatic synthesis
dc.subject.keywordRhamnolipids
dc.subject.ucmCiencias
dc.subject.ucmCiencias Biomédicas
dc.subject.ucmQuímica
dc.subject.ucmFarmacia
dc.subject.ucmQuímica orgánica (Química)
dc.subject.ucmQuímica farmaceútica
dc.subject.unesco23 Química
dc.subject.unesco2306 Química Orgánica
dc.subject.unesco2306.06 Química de Los Hidratos de Carbono
dc.subject.unesco3303.05 Síntesis Química
dc.titleEnzymatic Synthesis and Molecular Modelling Studies of Rhamnose Esters Using Lipase from Pseudomonas stutzerien
dc.typejournal article
dc.type.hasVersionVoR
dc.volume.number23
dspace.entity.typePublication
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