Franck PINOT

Chargé de recherche / Senior researcher
Téléphone : 03 67 15 52 71

Ses publications

  • PINEAU E., SAUVEPLANE V., GRIENENBERGER E., BASSARD J.E., BEISSON F. and PINOT F.

    CYP77B1 a fatty acid epoxygenase specific to flowering plants

    Plant Science, 307:110905, 2021. | DOI : https://doi.org/10.1016/j.plantsci.2021.110905DOI logo

  • WANG D., TABTI R., ELDERWISH S., DJEHAL A., CHOUHA N., PINOT F., YU P., NEBIGIL C.G. and DÉSAUBRY L.

    Evolutionarily conserved SFPH proteins as therapeutic targets for a myriad of diseases

    Bioorganic & Medicinal Chemistry, 127600, 2020.

  • PINEAU E., XU L., RENAULT H., TROLET A., NAVROT N., ULLMANN P., LÉGERET B., VERDIER G., BEISSON F. and PINOT F.

    Arabidopsis thaliana EPOXIDE HYDROLASE1 (AtEH1) is a cytosolic epoxide hydrolase involved in the synthesis of poly-hydroxylated cutin monomers

    New Phytologist, 215(1):173-186, 2017. | DOI : 28497532DOI logo

  • HEITZ T., SMIRNOVA E., WIDEMANN E., AUBERT Y., PINOT F. and MENARD R.

    The rise and fall of Jasmonate Biological activities

    Sub-cellular biochemistry, 86:405-26, 2016. | DOI : 10.1007/978-3-319-25979-6_16DOI logo

  • AUBERT Y., WIDEMANN E., MIESCH L., PINOT F. and HEITZ T.

    CYP94-mediated jasmonoyl-isoleucine hormone oxidation shapes jasmonate profiles and attenuates defence responses to Botrytis cinerea infection

    Journal of Experimental Botany, 66(13):3879-3892, 2015. | DOI : 10.1093/jxb/erv190DOI logo

  • WIDEMANN E., HEITZ T., MIESCH L., MIESCH M., PINOT F. and LUGAN R.

    Identification of the 12-oxojasmonoyl-isoleucine, a new jasmonate in Arabidopsis, by combining chemical derivatization and LC-MS/MS analysis

    Metabolomics, 11306-014, 2015.

  • HEINRICH C., WIDEMANN E., SANZ J., LUGAN R., HEITZ T., PINOT F., MIESCH M. and MIESCH L.

    A route for the total synthesis of enantiomerically enriched jasmonates 12-COOH-JA and 12-COOH-JA-Ile.

    European Journal of Organic Chemistry, 1130-1136, 2015. | DOI : 10.1104/pp.110.168617DOI logo

  • WIDEMANN E., GRAUSEM B., RENAULT H., PINEAU E., HEINRICH C., LUGAN R., ULLMANN P., MIESCH L., AUBERT Y., MIESCH M., HEITZ T. and PINOT F.

    Sequential oxidation of Jasmonoyl-Phenylalanine and Jasmonoyl-Isoleucine by multiple cytochrome P450 of the CYP94 family through newly identified aldehyde intermediates

    Phytochemistry, 117:388-399, 2015. | DOI : 10.1016/j.phytochem.2015.06.027DOI logo

  • GRAUSEM B., WIDEMANN E., VERDIER G., D. N., AUBERT Y., BEISSON F., SCHREIBER L., FRANKE R. and PINOT F.

    CYP77A19 and CYP77A20 characterized from Solanum tuberosum oxidize fatty acids in vitro and partially restore the wild phenotype in an Arabidopsis thaliana cutin mutant.

    Plant Cell and Environment, 37(9):2102-15, 2014. | DOI : 10.1111/pce.12298DOI logo

  • SHI J.X., ADATO A., ALKAN N., HE Y., LASHBROOKE J., MATAS A.J., MEIR S., MALITSKY S., ISAACSON T., PRUSKY D., LESHKOWITZ D., SCHREIBER L., GRANELL A.R., WIDEMANN E., GRAUSEM B., PINOT F., ROSE J.K., ROGACHEV I., ROTHAN C. and AHARONI A.

    The tomato SlSHINE3 transcription factor regulates fruit cuticle formation and epidermal patterning

    New Phytologist, 197(2):468-480, 2013. | DOI : 10.1111/nph.12032DOI logo

  • WIDEMANN E., MIESCH L., LUGAN R., HOLDER E., HEINRICH C., AUBERT Y., MIESCH M., PINOT F. and HEITZ T.

    The amido-hydrolases IAR3 and ILL6 contribute to jasmonoyl-isoleucine hormone turnover and generate 12-hydroxy-jasmonic acid upon wounding in Arabidopsis leaves.

    Journal of Biological Chemistry, 288(44):31701-31714, 2013.

  • HEITZ T., WIDEMANN E., LUGAN R., MIESCH L., ULLMANN P., DÉSAUBRY L., HOLDER E., GRAUSEM B., KANDEL S., MIESCH M., WERCK D. and PINOT F.

    Cytochromes P450 CYP94C1 and CYP94B3 catalyze two successive oxidation steps of the plant hormone jasmonoyl-isoleucine for catabolic turnover.

    Journal of Biological Chemistry, 287(9):6296-6306, 2012. | DOI : 10.1074/jbc.M111.316364DOI logo

  • ZHANG S., WIDEMANN E., GRAUSEM B., LESOT A., PINOT F., PEDRINI N. and KEYHANI N.O.

    CYP52X1, representing new cytochrome P450 subfamily, displays fatty acid hydroxylase activity and contributes to virulence and growth on insect cuticular substrates in entomopathogenic fungus Beauveria bassiana.

    Journal of Biological Chemistry, 287(16):13477-13486, 2012. | DOI : 10.1074/jbc.M111.338947DOI logo

  • PINOT F.

    Cytochrome P450 metabolizing fatty acids in living organisms

    FEBS Letters, 278:181, 2011. | DOI : 10.1111/j.1742-4658.2010.07946.xDOI logo

  • PINOT F. and BEISSON F.

    Cytochrome P450 metabolizing fatty acids in plants: characterization and physiolocical roles

    FEBS Letters, 278:195-205, 2011. | DOI : 10.1111/j.1742-4658.2010.07948.xDOI logo

  • KASTNER P.E., LE CALVÉ S., DISS L., SAUVEPLANE V., FRANKE R., SCHREIBER L. and PINOT F.

    Specific accumulation of CYP94A1 transcripts after exposure to gaseous benzaldehyde : Induction of lauric aciD w-hydroxylase activity in Vicia sativa exposed to atmospheric pollutants

    Environmental Research, 111:37-44, 2011. | DOI : 10.1016/j.envres.2010.09.014DOI logo