Type III CRISPR-Cas systems can provide redundancy to counteract viral escape from type I systems
Silas, Sukrit, Lucas-Elio, Patricia, Jackson, Simon A, Aroca-Crevillén, Alejandra, Hansen, Loren L, Fineran, Peter C, Fire, Andrew Z, Sánchez-Amat, Antonio
Published in eLife (17.08.2017)
Published in eLife (17.08.2017)
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Characterization of recombinant biosynthetic precursors of the cysteine tryptophylquinone cofactors of l-lysine-epsilon-oxidase and glycine oxidase from Marinomonas mediterranea
Chacón-Verdú, María Dolores, Campillo-Brocal, Jonatan C., Lucas-Elío, Patricia, Davidson, Victor L., Sánchez-Amat, Antonio
Published in Biochimica et biophysica acta (01.09.2015)
Published in Biochimica et biophysica acta (01.09.2015)
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Correction: Type III CRISPR-Cas systems can provide redundancy to counteract viral escape from type I systems
Silas, Sukrit, Lucas-Elio, Patricia, Jackson, Simon A, Aroca-Crevillén, Alejandra, Hansen, Loren L, Fineran, Peter C, Fire, Andrew Z, Sánchez-Amat, Antonio
Published in eLife (04.04.2018)
Published in eLife (04.04.2018)
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Direct CRISPR spacer acquisition from RNA by a natural reverse transcriptase–Cas1 fusion protein
Silas, Sukrit, Mohr, Georg, Sidote, David J., Markham, Laura M., Sanchez-Amat, Antonio, Bhaya, Devaki, Lambowitz, Alan M., Fire, Andrew Z.
Published in Science (American Association for the Advancement of Science) (26.02.2016)
Published in Science (American Association for the Advancement of Science) (26.02.2016)
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Structural Determinants of the Specific Activities of an L-Amino Acid Oxidase from Pseudoalteromonas luteoviolacea CPMOR-1 with Broad Substrate Specificity
Mamounis, Kyle J., Caldas Nogueira, Maria Luiza, Marchi Salvador, Daniela Priscila, Andreo-Vidal, Andres, Sanchez-Amat, Antonio, Davidson, Victor L.
Published in Molecules (Basel, Switzerland) (24.07.2022)
Published in Molecules (Basel, Switzerland) (24.07.2022)
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Distribution in microbial genomes of genes similar to lodA and goxA which encode a novel family of quinoproteins with amino acid oxidase activity
Campillo-Brocal, Jonatan C, Chacón-Verdú, María Dolores, Lucas-Elío, Patricia, Sánchez-Amat, Antonio
Published in BMC genomics (24.03.2015)
Published in BMC genomics (24.03.2015)
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Structure and Enzymatic Properties of an Unusual Cysteine Tryptophylquinone-Dependent Glycine Oxidase from Pseudoalteromonas luteoviolacea
Andreo-Vidal, Andres, Mamounis, Kyle J, Sehanobish, Esha, Avalos, Dante, Campillo-Brocal, Jonatan Cristian, Sanchez-Amat, Antonio, Yukl, Erik T, Davidson, Victor L
Published in Biochemistry (Easton) (20.02.2018)
Published in Biochemistry (Easton) (20.02.2018)
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Hydrogen Peroxide Linked to Lysine Oxidase Activity Facilitates Biofilm Differentiation and Dispersal in Several Gram-Negative Bacteria
Mai-Prochnow, Anne, Lucas-Elio, Patricia, Egan, Suhelen, Thomas, Torsten, Webb, Jeremy S, Sanchez-Amat, Antonio, Kjelleberg, Staffan
Published in Journal of Bacteriology (01.08.2008)
Published in Journal of Bacteriology (01.08.2008)
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Roles of Copper and a Conserved Aspartic Acid in the Autocatalytic Hydroxylation of a Specific Tryptophan Residue during Cysteine Tryptophylquinone Biogenesis
Williamson, Heather R, Sehanobish, Esha, Shiller, Alan M, Sanchez-Amat, Antonio, Davidson, Victor L
Published in Biochemistry (Easton) (21.02.2017)
Published in Biochemistry (Easton) (21.02.2017)
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LodB is required for the recombinant synthesis of the quinoprotein L-lysine-ε-oxidase from Marinomonas mediterranea
Chacón-Verdú, María Dolores, Gómez, Daniel, Solano, Francisco, Lucas-Elío, Patricia, Sánchez-Amat, Antonio
Published in Applied microbiology and biotechnology (01.04.2014)
Published in Applied microbiology and biotechnology (01.04.2014)
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Journal Article
LodB is required for the recombinant synthesis of the quinoprotein l-lysine-[epsilon]-oxidase from Marinomonas mediterranea
Chacón-verdú, María Dolores, Gómez, Daniel, Solano, Francisco, Lucas-elío, Patricia, Sánchez-amat, Antonio
Published in Applied microbiology and biotechnology (01.04.2014)
Published in Applied microbiology and biotechnology (01.04.2014)
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The Antimicrobial Activity of Marinocine, Synthesized by Marinomonas mediterranea, Is Due to Hydrogen Peroxide Generated by Its Lysine Oxidase Activity
Patricia Lucas-Elío, Daniel Gómez, Francisco Solano, Antonio Sanchez-Amat
Published in Journal of Bacteriology (01.04.2006)
Published in Journal of Bacteriology (01.04.2006)
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