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dc.contributor.authorGavira Gallardo, José Antonio 
dc.contributor.authorTorres De Pinedo, Jesús Manuel 
dc.contributor.authorSánchez Medina, María Pilar 
dc.contributor.authorOrtega Sánchez, Esperanza 
dc.contributor.authorMartínez Rodríguez, Sergio 
dc.date.accessioned2022-05-25T06:29:49Z
dc.date.available2022-05-25T06:29:49Z
dc.date.issued2022-04-26
dc.identifier.citationGavira, J. A... [et al.]. (2022). Structural insights into choline-O-sulfatase reveal the molecular determinants for ligand binding. Acta Cryst. D78, 669-682. [https://doi.org/10.1107/S2059798322003709]es_ES
dc.identifier.urihttp://hdl.handle.net/10481/74975
dc.descriptionThis work was supported by the Spanish Ministry of Science and Innovation/FEDER grants PID2020-116261GB-I00 (JAG) and RTI2018-097991-B-I00 (JLN), Secretaria General de Universidades, Investigacion y Tecnologia, Junta de Andalucia (PY20-00149 and UAL18-BIO-B005-B; ACA) and the University of Granada (grant PPJI2017-1; SMR). Funding for open access charge: Universidad de Granada/CBUA.es_ES
dc.description.abstractCholine-O-sulfatase (COSe; EC 3.1.6.6) is a member of the alkaline phosphatase (AP) superfamily, and its natural function is to hydrolyze choline-O-sulfate into choline and sulfate. Despite its natural function, the major interest in this enzyme resides in the landmark catalytic/substrate promiscuity of sulfatases, which has led to attention in the biotechnological field due to their potential in protein engineering. In this work, an in-depth structural analysis of wild-type Sinorhizobium (Ensifer) meliloti COSe (SmeCOSe) and its C54S active-site mutant is reported. The binding mode of this AP superfamily member to both products of the reaction (sulfate and choline) and to a substrate-like compound are shown for the first time. The structures further confirm the importance of the C-terminal extension of the enzyme in becoming part of the active site and participating in enzyme activity through dynamic intra-subunit and inter-subunit hydrogen bonds (Asn146A–Asp500B–Asn498B). These residues act as the ‘gatekeeper’ responsible for the open/closed conformations of the enzyme, in addition to assisting in ligand binding through the rearrangement of Leu499 (with a movement of approximately 5 A ° ). Trp129 and His145 clamp the quaternary ammonium moiety of choline and also connect the catalytic cleft to the C-terminus of an adjacent protomer. The structural information reported here contrasts with the proposed role of conformational dynamics in promoting the enzymatic catalytic proficiency of an enzyme.es_ES
dc.description.sponsorshipSpanish Government European Commission PID2020-116261GB-I00 RTI2018-097991-B-I00es_ES
dc.description.sponsorshipSecretaria General de Universidadeses_ES
dc.description.sponsorshipJunta de Andalucia PY20-00149 UAL18-BIO-B005-Bes_ES
dc.description.sponsorshipUniversity of Granada PPJI2017-1es_ES
dc.language.isoenges_ES
dc.publisherInternational Union of Crystallographyes_ES
dc.rightsAtribución 3.0 España*
dc.rights.urihttp://creativecommons.org/licenses/by/3.0/es/*
dc.subjectCholinees_ES
dc.subjectSulfataseses_ES
dc.subjectConformational gatinges_ES
dc.subjectAlkaline phosphataseses_ES
dc.subjectPromiscuityes_ES
dc.titleStructural insights into choline-O-sulfatase reveal the molecular determinants for ligand bindinges_ES
dc.typejournal articlees_ES
dc.rights.accessRightsopen accesses_ES
dc.identifier.doi10.1107/S2059798322003709
dc.type.hasVersionVoRes_ES


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