<p>1. Overview of flavin-dependent enzymes</p> <p>Panu Pimviriyakul and Pimchai Chaiyen</p> <p>2. Flavoenzymes for biocatalysis</p> <p>Mélanie Hall</p> <p>3. The multipurpose family of flavoprotein oxidases</p> <p>Marco Fraaije and Andrea Mattevi</p> <p>4. Vanillyl alcohol oxidase</p> <p>Tom A. Ewing, Gudrun Gygli, Marco W. Fraaije and Willem J.H. van Berkel</p> <p>5. Porcine kidney D-amino acid oxidase-derived R-amine oxidases with new substrate specificities</p> <p>Kazuyuki Yasukawa, Nobuhiro Kawahara, Fumihiro Motojima, Shogo Nakano and Yasuhisa Asano</p> <p>6. Choline oxidases</p> <p>Giovanni Gadda</p> <p>7. Reaction mechanisms and applications of aryl-alcohol oxidase</p> <p>Ana Serrano, Juan Carro and Angel T. Martínez</p> <p>8. Structure and function relationships of sugar oxidases and their potential use in biocatalysis</p> <p>Kanokkan Sriwaiyaphram, Pangrum Punthong, Jeerus Sucharitakul and Thanyaporn Wongnate</p> <p>9. Baeyer-Villiger monooxygenases: From protein engineering to biocatalytic applications</p> <p>Sandy Schmidt and Uwe T. Bornscheuer</p> <p>10. Phenolic hydroxylases</p> <p>Pirom Chenprakhon, Panu Pimviriyakul, Chanakan Tongsook and Pimchai Chaiyen</p> <p>11. Structures, mechanisms and applications of flavin-dependent halogenases</p> <p>Aisaraphon Phintha, Kridsadakorn Prakinee and Pimchai Chaiyen</p> <p>12. Flavin-dependent dehalogenases</p> <p>Panu Pimviriyakul and Pimchai Chaiyen</p> <p>13. Styrene monooxygenases, indole monooxygenases and related flavoproteins applied in bioremediation and biocatalysis</p> <p>Dirk Tischler, Antje Kumpf, Daniel Eggerichs and Thomas Heine</p> <p>14. Bacterial luciferase: Molecular mechanisms and applications</p> <p>Ruchanok Tinikul, Paweenapon Chunthaboon, Jittima Phonbuppha and Tanakan Paladkong</p> <p>15. Cellobiose dehydrogenase</p> <p>Florian Csarman, Lena Wohlschlager and Roland Ludwig</p> <p>16. Thermal, electrochemical and photochemical reactions involving catalytically versatile ene reductase enzymes</p> <p>Helen S. Toogood and Nigel S. Scrutton</p> <p>17. Biochemistry of prenylated-FMN enzymes</p> <p>Annica Saaret, Arune Balaikaite and David Leys</p>