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Cellular Signalling|November 28, 2008
PAK signalling in neuronal physiologyPatricia Kreis, Jean-Vianney BarnierThe Journal of Biological Chemistry|December 5, 2002
A new constitutively active brain PAK3 isoform displays modified specificities toward Rac and Cdc42 GTPasesVeronique Rousseau, Olivier Goupille, Nathalie Morin, et al.Neurochemical Research|April 5, 2003
Exploring the regulation of the expression of ChAT and VAChT genes in NG108-15 cells: implication of PKA and PI3K signaling pathwaysXavier Castell, Nathalie Cheviron, Jean-Vianney Barnier, et al.Journal of Neurochemistry|May 30, 2008
The four mammalian splice variants encoded by the p21-activated kinase 3 gene have different biological propertiesPatricia Kreis, Véronique Rousseau, Emmanuel Thévenot, et al.Diabetes|October 29, 2013
Pak3 promotes cell cycle exit and differentiation of β-cells in the embryonic pancreas and is necessary to maintain glucose homeostasis in adult miceJulie Piccand, Aline Meunier, Carole Merle, et al.The Journal of Biological Chemistry|June 1, 2007
The p21-activated kinase 3 implicated in mental retardation regulates spine morphogenesis through a Cdc42-dependent pathwayPatricia Kreis, Emmanuel Thévenot, Véronique Rousseau, et al.Frontiers in Neuroscience|March 20, 2023
The molecular basis of p21-activated kinase-associated neurodevelopmental disorders: From genotype to phenotypeManon Dobrigna, Sandrine Poëa-Guyon, Véronique Rousseau, et al.The Journal of Biological Chemistry|July 21, 2012
The p21-activated kinase PAK3 forms heterodimers with PAK1 in brain implementing trans-regulation of PAK3 activityGaëlle Combeau, Patricia Kreis, Florence Domenichini, et al.Endocrinology|August 29, 2006
Regulation of the RAP1/RAF-1/extracellularly regulated kinase-1/2 cascade and prolactin release by the phosphoinositide 3-kinase/AKT pathway in pituitary cellsDavid Romano, Morgane Pertuit, Ramahefarizo Rasolonjanahary, et al.Neurotoxicity Research|March 12, 2016
Overexpressed Down Syndrome Cell Adhesion Molecule (DSCAM) Deregulates P21-Activated Kinase (PAK) Activity in an In Vitro Neuronal Model of Down Syndrome: Consequences on Cell Process Formation and ExtensionRamón Pérez-Núñez, Natalia Barraza, Arlek Gonzalez-Jamett, et al.Pageof 3