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Biochemistry|February 24, 1987
Tubulin oligomers and microtubule assembly studied by time-resolved X-ray scattering: separation of prenucleation and nucleation eventsU Spann, W Renner, E M Mandelkow, et al.The EMBO Journal|February 1, 1988
Dynamics of the microtubule oscillator: role of nucleotides and tubulin-MAP interactionsE M Mandelkow, G Lange, A Jagla, et al.Neuron|July 1, 1993
Phosphorylation of Ser262 strongly reduces binding of tau to microtubules: distinction between PHF-like immunoreactivity and microtubule bindingJ Biernat, N Gustke, G Drewes, et al.The Journal of Cell Biology|October 1, 1989
Tau protein becomes long and stiff upon phosphorylation: correlation between paracrystalline structure and degree of phosphorylationT Hagestedt, B Lichtenberg, H Wille, et al.Neurobiology of Aging|December 4, 2003
Clogging of axons by tau, inhibition of axonal traffic and starvation of synapsesE-M Mandelkow, K Stamer, R Vogel, et al.The Journal of Cell Biology|August 1, 1992
Alzheimer-like paired helical filaments and antiparallel dimers formed from microtubule-associated protein tau in vitroH Wille, G Drewes, J Biernat, et al.Molecular Biology of the Cell|December 1, 1995
Domains of tau protein, differential phosphorylation, and dynamic instability of microtubulesB Trinczek, J Biernat, K Baumann, et al.The Journal of Cell Biology|March 20, 2002
Tau blocks traffic of organelles, neurofilaments, and APP vesicles in neurons and enhances oxidative stressK Stamer, R Vogel, E Thies, et al.Journal of Muscle Research and Cell Motility|December 20, 2005
Interaction of kinesin motors, microtubules, and MAPsA Marx, J Müller, E-M Mandelkow, et al.Biochemistry|August 16, 1994
Domains of tau protein and interactions with microtubulesN Gustke, B Trinczek, J Biernat, et al.Pageof 14