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The Journal of Biological Chemistry|November 27, 2009
The process-inducing activity of transmembrane agrin requires follistatin-like domainsElmar Porten, Beate Seliger, Verena A Schneider, et al.
The Journal of Physiology|February 1, 2020
Impaired muscle spindle function in murine models of muscular dystrophyLaura Gerwin, Sarah Rossmanith, Corinna Haupt, et al.
Journal of Neuroimmunology|May 7, 2021
Autoantibodies to cortactin and agrin in sera of patients with myasthenia gravisKathrin Doppler, Antonia Hemprich, Axel Haarmann, et al.
Journal of Neurology|August 5, 2011
Anti-LRP4 autoantibodies in AChR- and MuSK-antibody-negative myasthenia gravisAlexandra Pevzner, Benedikt Schoser, Katja Peters, et al.
Developmental Biology|November 3, 2018
The role of agrin, Lrp4 and MuSK during dendritic arborization and synaptogenesis in cultured embryonic CNS neuronsGerry Handara, Florian J A Hetsch, René Jüttner, et al.
Neurology|May 6, 2014
Anti-agrin autoantibodies in myasthenia gravisChristiane Gasperi, Arthur Melms, Benedikt Schoser, et al.
The Journal of Neuroscience : the Official Journal of the Society for Neuroscience|March 17, 2012
Agrin-signaling is necessary for the integration of newly generated neurons in the adult olfactory bulbKatja Burk, Angelique Desoeuvre, Camille Boutin, et al.
Molecular and Cellular Neurosciences|December 21, 2005
Clustering transmembrane-agrin induces filopodia-like processes on axons and dendritesMaik Annies, Godela Bittcher, Rene Ramseger, et al.
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