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    Loading of malonyl-CoA Onto Tandem Acyl Carrier Protein Domains of Polyunsaturated Fatty Acid Synthases

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    Identificadores
    URI: http://hdl.handle.net/10902/18120
    DOI: 10.1074/jbc.RA118.002443
    ISSN: 0021-9258
    ISSN: 1083-351X
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    Autoría
    Santín, Omar; Moncalián Montes, GabrielAutoridad Unican
    Fecha
    2018-08-10
    Derechos
    © 2018 Santín and Moncalián. Published under exclusive license by The American Society for Biochemistry and Molecular Biology, Inc. This research was originally published in Santín, Omar, y Gabriel Moncalián. «Loading of Malonyl-CoA onto Tandem Acyl Carrier Protein Domains of Polyunsaturated Fatty Acid Synthases». Journal of Biological Chemistry, vol. 293, n.o 32, agosto de 2018, pp. 12491-501.
    Publicado en
    J Biol Chem 2018, 293 (32), 12491-12501
    Editorial
    American Society for Biochemistry and Molecular Biology Inc.
    Enlace a la publicación
    https://www.doi.org/10.1074/jbc.RA118.002443
    Palabras clave
    Acyl Carrier Protein (ACP)
    Acyltransferase
    Fatty Acid Synthase (FAS)
    Polyketide
    Polyunsaturated Fatty Acid (PUFA)
    Resumen/Abstract
    Omega-3 polyunsaturated fatty acids (PUFA) are produced in some unicellular organisms, such as marine gammaproteobacteria, myxobacteria, and thraustochytrids, by large enzyme complexes called PUFA synthases. These enzymatic complexes resemble bacterial antibiotic-producing proteins known as polyketide synthases (PKS). One of the PUFA synthase subunits is a conserved large protein (PfaA in marine proteobacteria) that contains three to nine tandem acyl carrier protein (ACP) domains as well as condensation and modification domains. In this work, a study of the PfaA architecture and its ability to initiate the synthesis by selecting malonyl units has been carried out. As a result, we have observed a self-acylation ability in tandem ACPs whose biochemical mechanism differ from the previously described for type II PKS. The acyltransferase domain of PfaA showed a high selectivity for malonyl-CoA that efficiently loads onto the ACPs domains. These results, together with the structural organization predicted for PfaA, suggest that this protein plays a key role at early stages of the anaerobic pathway of PUFA synthesis.
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    UNIVERSIDAD DE CANTABRIA

    Repositorio realizado por la Biblioteca Universitaria utilizando DSpace software
    Contacto | Sugerencias
    Metadatos sujetos a:licencia de Creative Commons Reconocimiento 4.0 España