• Shimojo M., Courchet J., Pieraut S., Torabi-Rander N., Sando R 3rd., Polleux F., Maximov A. SNAREs Controlling Vesicular Release of BDNF and Development of Callosal Axons. Cell Report 2015. Link

  • Pieraut S., Gounko NV., Sando R. 3rd, Dang W., Rebboah E., Panda S., Madisen L., Zeng H., Maximov A. Experience-Dependent Remodeling of Basket Cell Network in the Dentate Gyrus. Neuron 2014 Link

  • Sando R. 3rd, Baumgaertel K., Pieraut S., Torabi-Rander N., Wandless TJ., Mayford M., Maximov A. Inducible control of gene expression with destabilized Cre. Nat Methods 2013 Link

  • Mairet-Coello G., Courchet J., Pieraut S., Courchet V., Maximov A., Polleux F. The CAMKK2-AMPK kinase pathway mediates the synaptotoxic effects of Aβ oligomers through Tau phosphorylation. Neuron 2013 Link

  • Sando R. 3rd, Gounko N., Pieraut S., Liao L., Yates J. 3rd, Maximov A. HDAC4 Governs a Transcriptional Program Essential for Synaptic Plasticity and Memory. Cell 2012 Link 

  • Pieraut S., Lucas O., Sangari S., Sar C., Boudes M., Bouffi C., Noel D., Scamps F. An autocrine neuronal interleukin-6 loop mediates chloride accumulation and NKCC1 phosphorylation in axotomized sensory neurons. J Neurosci 2011  Link

  • Boudes M., Pieraut S., Valmier J., Carroll P., Scamps F. Single-cell electroporation of adult sensory neurons for gene screening with RNA interference mechanism. J Neurosci Methods 2008 Link

  • Aptel H., Hilaire C., Pieraut S., Boukhaddaoui H., Mallié S., Valmier J., Scamps F. The Cav3.2/alpha1H T-type Ca2+ current is a molecular determinant of excitatory effects of GABA in adult sensory neurons. Mol Cell Neurosci. 2007 Link

  • Pieraut S., Laurent-Matha V., Sar C., Hubert T., Méchaly I., Hilaire C., Mersel M., Delpire E., Valmier J., Scamps F. NKCC1 phosphorylation stimulates neurite growth of injured adult sensory neurons. J Neurosci. 2007 Link

  • Pieraut S., Boukhaddaoui H., Scamps F., Dayanithi G., Sieso V., Valmier J. Spontaneous glutamate release controls NT-3-dependent development of hippocampal calbindin-D(28k) phenotype through activation of sodium channels ex vivo. Eur J Neurosci. 2007 Link 

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