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Methods in Molecular Biology (Clifton, N.J.)|January 22, 2021
Induced Dimerization Tools to Deplete Specific Phosphatidylinositol PhosphatesJonathan Pacheco, Rachel C Wills, Gerald R V HammondMethods in Molecular Biology (Clifton, N.J.)|January 22, 2021
Quantification of Genetically Encoded Lipid BiosensorsRachel C Wills, Jonathan Pacheco, Gerald R V HammondThe Journal of Cell Biology|November 23, 2022
PI(4,5)P2 diffuses freely in the plasma membrane even within high-density effector protein complexesJonathan Pacheco, Anna C Cassidy, James P Zewe, et al.The Biochemical Journal|November 11, 2022
PI(4,5)P2: signaling the plasma membraneRachel C Wills, Gerald R V HammondJournal of Cell Science|August 3, 2023
A novel homeostatic mechanism tunes PI(4,5)P2-dependent signaling at the plasma membraneRachel C Wills, Colleen P Doyle, James P Zewe, et al.Trends in Cell Biology|May 20, 2019
Oxysterol Binding Protein: Tether, Transporter… and Flux Capacitor?Gerald R V Hammond, Jonathan PachecoMolecular Biology of the Cell|June 29, 2018
Genetically encoded lipid biosensorsRachel C Wills, Brady D Goulden, Gerald R V HammondMolecular Biology of the Cell|April 14, 2022
An update on genetically encoded lipid biosensorsGerald R V Hammond, Morgan M C Ricci, Claire C Weckerly, et al.The Journal of Cell Biology|March 27, 2020
Probing the subcellular distribution of phosphatidylinositol reveals a surprising lack at the plasma membraneJames P Zewe, April M Miller, Sahana Sangappa, et al.The Journal of Cell Biology|December 29, 2018
A high-avidity biosensor reveals plasma membrane PI(3,4)P<sub>2</sub> is predominantly a class I PI3K signaling productBrady D Goulden, Jonathan Pacheco, Allyson Dull, et al.Pageof 9