Jean-Claude Lacaille
Affiliations: | Université de Montréal, Montréal, Canada |
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"Jean-Claude Lacaille"Mean distance: 12.92 (cluster 6) | S | N | B | C | P |
Parents
Sign in to add mentorCarolyn Weyand Harley | grad student | MUN | |
Philip A. Schwartzkroin | grad student | University of Washington | |
Per Andersen | post-doc | University of Oslo, Norway |
Children
Sign in to add traineeDelphine Gobert | grad student | Université de Montréal | |
Sylvain Williams | grad student | Centre de recherché du Centre hospitalier de l'Universite de Montreal | |
Valérie Lapointe | grad student | 1999-2002 | Université de Montréal |
Nathalie T. Sanon | grad student | 2010 | Université de Montréal |
Sandrine Bertrand | post-doc | Université de Montréal | |
C. Andrew Chapman | post-doc | Université de Montréal | |
Gavin L. Woodhall | post-doc | Université de Montréal | |
Julien Artinian | post-doc | 2013- | Université de Montréal |
Christine E. Gee | post-doc | 1997-2000 | Université de Montréal |
Israeli Ran | post-doc | 2006-2011 | Université de Montréal |
Collaborators
Sign in to add collaboratorRoberta Cagnetta | collaborator | 2021- | University of Montreal (Canada) |
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Publications
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Cagnetta R, Lacaille JC, Sonenberg N. (2024) Exploration of new space elicits phosphorylation of GluA1(Ser831) and S6K and expression of Arc in the hippocampus in vivo as in long-term potentiation. Molecular Brain. 17: 35 |
Sharma V, Oliveira MM, Sood R, et al. (2023) mRNA translation in astrocytes controls hippocampal long-term synaptic plasticity and memory. Proceedings of the National Academy of Sciences of the United States of America. 120: e2308671120 |
Khlaifia A, Jadhav V, Danik M, et al. (2023) Disruption Induced by Recombination between Inverted loxP Sites Is Associated with Hippocampal Interneuron Dysfunction. Eneuro. 10 |
Wiebe S, Huang Z, Ladak RJ, et al. (2023) Cell-type-specific translational control of spatial working memory by the cap-binding protein 4EHP. Molecular Brain. 16: 9 |
Honoré E, Lacaille JC. (2022) Object location learning in mice requires hippocampal somatostatin interneuron activity and is facilitated by mTORC1-mediated long-term potentiation of their excitatory synapses. Molecular Brain. 15: 101 |
Honoré È, Belo do Nascimento I, Laplante I, et al. (2022) Stimulation of protein synthesis by optogenetic and chemical induction of excitatory synaptic plasticity in hippocampal somatostatin interneurons. Molecular Brain. 15: 81 |
Khlaifia A, Honoré E, Artinian J, et al. (2022) mTORC1 function in hippocampal parvalbumin interneurons: regulation of firing and long-term potentiation of intrinsic excitability but not long-term contextual fear memory and context discrimination. Molecular Brain. 15: 56 |
Asgarihafshejani A, Honoré È, Michon FX, et al. (2022) Erratum: Long-term potentiation at pyramidal cell to somatostatin interneuron synapses controls hippocampal network plasticity and memory. Iscience. 25: 104458 |
Asgarihafshejani A, Honoré È, Michon FX, et al. (2022) Long-term potentiation at pyramidal cell to somatostatin interneuron synapses controls hippocampal network plasticity and memory. Iscience. 25: 104259 |
Racine AS, Michon FX, Laplante I, et al. (2021) Somatostatin contributes to long-term potentiation at excitatory synapses onto hippocampal somatostatinergic interneurons. Molecular Brain. 14: 130 |