Browsing by Author Cousin, Michael A.

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Issue DateTitleAuthor(s)Citation
2013Building a better dynasore: the dyngo compounds potently inhibit dynamin and endocytosisChau, Ngoc; Chircop (nee Fabbro), Megan; Daniel, James; Gorgani, Nick; Krishnan, Saieaswar; Lloyd, J; Mariana, Anna; Moshkanbaryans, Lia; Perera, Swetha; Quan, Annie; Robinson, Phillip; Whiting, Ainslie; Campbell, Michael; Clayton, Emma L.; Cousin, Michael A.; Deane, Fiona M; Hadzic, Gordana; Howes, Mark T.; McCluskey, Adam; McGeachie, Andrew; Meunier, Frederic; Nguyen, Tam; Parton, Robert G.; Robertson, Mark J; Sakoff, Jennette A.; Sun, Jian-Yuan; Von Kleist, Lisa; Xuefeng, Wang; Dean's Unit: CMRI; Children's Hospital Westmead: Childrens Medical Research Ins; Children's Hospital Westmead: Childrens Medical Research Ins; Children's Hospital Westmead: Childrens Medical Research Ins; School of Medical Sciences: Bosch Institute; Western Clinical School: Medicine (Westmead); Children's Hospital Westmead: Childrens Medical Research Ins; Children's Hospital Westmead: Childrens Medical Research Ins; Children's Hospital Westmead: Childrens Medical Research Ins; Dean's Unit: CMRI; Children's Hospital Westmead: Childrens Medical Research Ins; Children's Hospital Westmead: Childrens Medical Research InsBuilding a better dynasore: the dyngo compounds potently inhibit dynamin and endocytosis, Traffic (Malden), vol.14, 12, 2013,pp 1272-1289
2011Calcineurin Selectively Docks with the Dynamin Ixb Splice Variant to Regulate Activity-dependent Bulk EndocytosisGraham, Mark; Novelle, Aimee; Robinson, Phillip; Sue, Nancy; Xue, Jing; Cousin, Michael A.; Gray, Noah; McNiven, Mark; Smillie, Karen J.; Children's Hospital Westmead: Childrens Medical Research Ins; Children's Hospital Westmead: Childrens Medical Research Ins; Children's Hospital Westmead: Childrens Medical Research Ins; Children's Hospital Westmead: Childrens Medical Research Ins; Children's Hospital Westmead: Childrens Medical Research InsCalcineurin Selectively Docks with the Dynamin Ixb Splice Variant to Regulate Activity-dependent Bulk Endocytosis, Journal of Biological Chemistry, vol.286, 35, 2011,pp 30295-30303
2003Cdk5 is essential for synaptic vesicle endocytosisGraham, Mark; Robinson, Phillip; Berven, Leise A.; Boadle, Ross A.; Cousin, Michael A.; Hansra, Gurdip; Jupp, Orla J.; Larsen, Martin R.; Malladi, Chandra S; McClure, Sonya J.; Sarcevic, Boris; Tan, Timothy C.; Valova, Valentina A; Children's Hospital Westmead: Childrens Medical Research Ins; Children's Hospital Westmead: Childrens Medical Research InsCdk5 is essential for synaptic vesicle endocytosis, Nature Cell Biology, vol.5,(8),2003,pp 701-710
2010Dynamin I phosphorylation by GSK3 controls activity-dependent bulk endocytosis of synaptic vesiclesBache, Nicolai; Robinson, Phillip; Sue, Nancy; Cheung, Giselle; Clayton, Emma L.; Cole, Adam; Cousin, Michael A.; O'Leary, Timothy; Smillie, Karen J.; Sutherland, Calum; Wyllie, David; Children's Hospital Westmead: Childrens Medical Research Ins; Children's Hospital Westmead: Childrens Medical Research Ins; School of Molecular BioscienceDynamin I phosphorylation by GSK3 controls activity-dependent bulk endocytosis of synaptic vesicles, Nature Neuroscience, vol.13, doi:10.1038/nn.2571,pp 845-851
2007Myristyl Trimethyl Ammonium Bromide and Octadecyl Trimethyl Ammonium Bromide Are Surface-Active Small Molecule Dynamin Inhibitors that Block Endocytosis Mediated by Dynamin I or Dynamin IIChau, Ngoc; Malladi, Chandra; McGeachie, A; Quan, Annie; Robinson, Phillip; Rusak, J; Van Dam, Ellen; Chen, C; Cousin, Michael A.; Keating, Damien J; McCluskey, Adam; Dean's Unit: CMRI; Dean's Unit: CMRI; Children's Hospital Westmead: Childrens Medical Research Ins; Dean's Unit: CMRI; Children's Hospital Westmead: Childrens Medical Research Ins; Children's Hospital Westmead: Childrens Medical Research Ins; Children's Hospital Westmead: Childrens Medical Research InsMyristyl Trimethyl Ammonium Bromide and Octadecyl Trimethyl Ammonium Bromide Are Surface-Active Small Molecule Dynamin Inhibitors that Block Endocytosis Mediated by Dynamin I or Dynamin II, Molecular Pharmacology, vol.72,(6),2007,pp 1425-1439
2009The phospho-dependent dynamin-syndapin interaction triggers activity-dependent bulk endocytosis of synaptic vesiclesAnggono, Victor; Chau, Ngoc; Robinson, Phillip; Clayton, Emma L.; Cousin, Michael A.; Smillie, Karen J.; Children's Hospital Westmead: Childrens Medical Research Ins; Dean's Unit: CMRI; Children's Hospital Westmead: Childrens Medical Research InsThe phospho-dependent dynamin-syndapin interaction triggers activity-dependent bulk endocytosis of synaptic vesicles, The Journal of Neuroscience, vol.29,(24),2009,pp 7706-7717
2012Phosphorylation of syndapin I F-BAR domain at two helix-capping motifs regulates membrane tubulationGraham, Mark; Quan, Annie; Robinson, Phillip; Xue, Jing; Anggono, Victor; Cousin, Michael A.; Parker, Michael W; Smillie, Karen J.; Wielens, Jerome; Children's Hospital Westmead: Childrens Medical Research Ins; Dean's Unit: CMRI; Children's Hospital Westmead: Childrens Medical Research Ins; Children's Hospital Westmead: Childrens Medical Research InsPhosphorylation of syndapin I F-BAR domain at two helix-capping motifs regulates membrane tubulation, Proceedings of the National Academy of Sciences (PNAS) of the United States of America, vol.109, 10, 2012,pp 3760-3765
2003Synapsin I-associated Phosphatidylinositol 3-kinase mediates synaptic vesicle delivery to the readily releasable poolRobinson, Phillip; Cousin, Michael A.; Malladi, Chandra S; Raymond, Clarke R.; Smillie, Karen J.; Tan, Timothy C; Children's Hospital Westmead: Childrens Medical Research InsSynapsin I-associated Phosphatidylinositol 3-kinase mediates synaptic vesicle delivery to the readily releasable pool, Journal of Biological Chemistry, vol.278,(31),2003,pp 29065-29071