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Molecular Cell|January 15, 2000
Multiple ephrins control cell organization in C. elegans using kinase-dependent and -independent functions of the VAB-1 Eph receptorX Wang, P J Roy, S J Holland, et al.Ciba Foundation Symposium|January 1, 1990
Phospholipase C isozymes: structural and functional similaritiesR Kriz, L L Lin, L Sultzman, et al.Molecular Cell|July 27, 2000
Structural basis for specificity switching of the Src SH2 domainM S Kimber, J Nachman, A M Cunningham, et al.Neuron|January 5, 2002
The receptor tyrosine kinase EphB2 regulates NMDA-dependent synaptic functionJ T Henderson, J Georgiou, Z Jia, et al.Nature Genetics|March 31, 2000
The SH2 tyrosine phosphatase shp2 is required for mammalian limb developmentT M Saxton, B G Ciruna, D Holmyard, et al.Cell|July 12, 1996
Nuk controls pathfinding of commissural axons in the mammalian central nervous systemM Henkemeyer, D Orioli, J T Henderson, et al.Molecular and Cellular Biology|November 1, 1992
A limited set of SH2 domains binds BCR through a high-affinity phosphotyrosine-independent interactionA J Muller, A M Pendergast, M H Havlik, et al.The EMBO Journal|June 1, 1995
Biochemical and genetic analysis of the Drk SH2/SH3 adaptor protein of DrosophilaT Raabe, J P Olivier, B Dickson, et al.Neuroscience|March 18, 2009
EphB2 and EphA4 receptors regulate formation of the principal inter-hemispheric tracts of the mammalian forebrainS K Y Ho, N Kovacević, R M Henkelman, et al.Neuron|February 13, 2001
The mammalian ShcB and ShcC phosphotyrosine docking proteins function in the maturation of sensory and sympathetic neuronsR Sakai, J T Henderson, J P O'Bryan, et al.Pageof 24