Prof. Gilles IACAZIO
Prof.
Gilles
IACAZIO
AMU iSm2 Service 342
Campus Scientifique de St Jérôme
13397
Marseille cedex 20
Téléphone :
Fax :
0491 28 84 40
Courriel :
Parcours :
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Enseignements :
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Thématiques :
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Publications (17)
Reference
Résumé graphique
HAL
An HMM approach expands the landscape of sesquiterpene cyclases across the kingdom Fungi
Hayat Hage, Julie Couillaud, Asaf Salamov, Margot Loussouarn-Yvon, Fabien Durbesson, Elena Ormeño, Sacha Grisel, Katia Duquesne, Renaud Vincentelli, Igor Grigoriev, Gilles Iacazio, Marie-Noëlle Rosso, Microbial Genomics, 2023, 9, 000990. <hal-04074453>
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In vitro Applications of the Terpene Mini‐Path 2.0
Julie Couillaud, Agnès Amouric, Elise Courvoisier‐dezord, Létitia Leydet, Nicolas Schweitzer, Marie‐noëlle Rosso, Hayat Hage, Margot Loussouarn‐yvon, Renaud Vincentelli, Jean‐louis Petit, Véronique de Berardinis, Mireille Attolini, Marc Maresca, Katia Duquesne, Gilles Iacazio, ChemBioChem, 2022, 23, e202200595. <hal-04029565>
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Extension of the terpene chemical space: the very first biosynthetic steps
Julie Couillaud, Katia Duquesne, Gilles Iacazio, ChemBioChem, 2022, 23, e202100642. <hal-04034379>
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In vitro Applications of the Terpene Mini‐Path 2.0
Julie Couillaud, Agnès Amouric, Elise Courvoisier-Dezord, Létitia Leydet, Nicolas Schweitzer, Marie‐noëlle Rosso, Hayat Hage, Margot Loussouarn-Yvon, Renaud Vincentelli, Jean‐louis Petit, Véronique de Berardinis, Mireille Attolini, Marc Maresca, Katia Duquesne, Gilles Iacazio, ChemBioChem, 2022, 23, e202200595. <hal-04064476>
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The Terpene Mini-Path, a New Promising Alternative for Terpenoids Bio-Production
Julie Couillaud, Létitia Leydet, Katia Duquesne, Gilles Iacazio, Genes, 2021, 12, 1974. <hal-03479634>
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Exploring natural biodiversity to expand access to microbial terpene synthesis
Juan Rico, Katia Duquesne, Jean-Louis Petit, Aline Mariage, Ekaterina Darii, Frédéric Peruch, Véronique de Berardinis, Gilles Iacazio, Microbial Cell Factories, 2019, 18, 23. <hal-02025505>
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Enantioselective Bio-Hydrolysis of Various Racemic and meso Aromatic Epoxides Using the Recombinant Epoxide Hydrolase Kau2
Wei Zhao, Michael Kotik, Gilles Iacazio, Alain Archelas, Advanced Synthesis and Catalysis, 2015, 357, 1895-1908. <hal-01477039>
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Prevalence and specificity of Baeyer–Villiger monooxygenases in fungi
Lorena Butinar, Martina Mohorčič, Valérie Deyris, Katia Duquesne, Gilles Iacazio, Magalie Claeys-Bruno, Josepha Friedrich, Véronique Alphand, Phytochemistry, 2015, 117, 144 - 153. <hal-01500961>
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Directed evolution of metagenome-derived epoxide hydrolase for improved enantioselectivity and enantioconvergence
Michael Kotik, Wei Zhao, Gilles Iacazio, Alain Archelas. . J. Mol. Catal.: B Enzym., 91, 44-51 (2013).
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Silica-Catalysed and Highly Stereoselective Convergent and Nonconvergent Rearrangements of Menthone Enol Acetate Epoxides: Easy Access to the Four α-Hydroxymenthone Stereoisomers
Sylvain Tranchimand, Bruno Faure, Jean-Valère Naubron, Véronique Alphand, Alain Archelas, Gilles Iacazio, European Journal of Organic Chemistry, 2012. <hal-01398482>
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Pages
Chapitres d'ouvrages (1)
Reference
Résumé graphique
HAL
Alain Archelas, Gilles Iacazio, Michael Kotik. Epoxide hydrolase and its application in organic synthesis. Green Biocatalysis, 2016, 978-1-118-82229-6. ⟨hal-01477037⟩
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Reference | Résumé graphique | HAL |
---|---|---|
An HMM approach expands the landscape of sesquiterpene cyclases across the kingdom Fungi |
![]() |
✓ |
In vitro Applications of the Terpene Mini‐Path 2.0 |
![]() |
✓ |
Extension of the terpene chemical space: the very first biosynthetic steps |
![]() |
✓ |
In vitro Applications of the Terpene Mini‐Path 2.0 |
![]() |
✖ |
The Terpene Mini-Path, a New Promising Alternative for Terpenoids Bio-Production |
![]() |
✓ |
Exploring natural biodiversity to expand access to microbial terpene synthesis |
![]() |
✓ |
Enantioselective Bio-Hydrolysis of Various Racemic and meso Aromatic Epoxides Using the Recombinant Epoxide Hydrolase Kau2 |
![]() |
✓ |
Prevalence and specificity of Baeyer–Villiger monooxygenases in fungi |
![]() |
✖ |
Directed evolution of metagenome-derived epoxide hydrolase for improved enantioselectivity and enantioconvergence |
![]() |
✖ |
Silica-Catalysed and Highly Stereoselective Convergent and Nonconvergent Rearrangements of Menthone Enol Acetate Epoxides: Easy Access to the Four α-Hydroxymenthone Stereoisomers |
![]() |
✓ |
Pages
Reference | Résumé graphique | HAL |
---|---|---|
Alain Archelas, Gilles Iacazio, Michael Kotik. Epoxide hydrolase and its application in organic synthesis. Green Biocatalysis, 2016, 978-1-118-82229-6. ⟨hal-01477037⟩ |
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