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Methods in Molecular Biology (Clifton, N.J.)|March 21, 2024
Sedimentation and Laser Light Scattering Methods for Quantifying Synthetic Tau Aggregation PropensityDmitry Malyshka, Daniela Jimenez-Harrison, Jeff KuretChemistry (Weinheim an Der Bergstrasse, Germany)|November 19, 2016
Ferrocyanide-Mediated Photoreduction of Ferricytochrome C Utilized to Selectively Probe Non-native Conformations Induced by Binding to Cardiolipin-Containing LiposomesDmitry Malyshka, Reinhard Schweitzer-StennerPhotochemical & Photobiological Sciences : Official Journal of the European Photochemistry Association and the European Society for Photobiology|October 4, 2018
Photoreduction of ferricytochrome c in the presence of potassium ferrocyanideDmitry Malyshka, Reinhard Schweitzer-StennerBiochemistry|February 22, 2023
DJ-1 Molecular Chaperone Activity Depresses Tau Aggregation Propensity through Interaction with MonomersDaniela Jimenez-Harrison, Carol J Huseby, Claire N Hoffman, et al.The Journal of Physical Chemistry Letters|April 19, 2017
pH Dependence of Ferricytochrome c Conformational Transitions during Binding to Cardiolipin Membranes: Evidence for Histidine as the Distal Ligand at Neutral pHBridget Milorey, Dmitry Malyshka, Reinhard Schweitzer-StennerFEBS Letters|March 1, 2005
Site-specific pseudophosphorylation modulates the rate of tau filament dissociationMihaela Necula, Jeff KuretAnalytical Biochemistry|September 29, 2004
A static laser light scattering assay for surfactant-induced tau fibrillizationMihaela Necula, Jeff KuretFEBS Letters|December 21, 2005
C-terminal truncation modulates both nucleation and extension phases of tau fibrillizationHaishan Yin, Jeff KuretAnalytical Biochemistry|May 26, 2004
Electron microscopy as a quantitative method for investigating tau fibrillizationMihaela Necula, Jeff KuretAnalytical Biochemistry|October 24, 2007
Detection and quantification of tau aggregation using a membrane filter assayEdward Chang, Jeff KuretPageof 7