Showing results (1-10 of 30) with videos related to
Sort By:
Pageof 3
Chemistry and Physics of Lipids|January 24, 2014
Interplay between phosphoinositide lipids and calcium signals at the leading edge of chemotaxing ameboid cellsJoseph J Falke, Brian P ZiembaChemistry and Physics of Lipids|May 25, 2013
Lateral diffusion of peripheral membrane proteins on supported lipid bilayers is controlled by the additive frictional drags of (1) bound lipids and (2) protein domains penetrating into the bilayer hydrocarbon coreBrian P Ziemba, Joseph J FalkePlos One|May 2, 2018
A PKC-MARCKS-PI3K regulatory module links Ca2+ and PIP3 signals at the leading edge of polarized macrophagesBrian P Ziemba, Joseph J FalkeBiophysical Journal|February 3, 2023
PDK1:PKCα heterodimer association-dissociation dynamics in single-molecule diffusion tracks on a target membraneMoshe T Gordon, Brian P Ziemba, Joseph J FalkeBiophysical Journal|October 21, 2021
Single-molecule studies reveal regulatory interactions between master kinases PDK1, AKT1, and PKCMoshe T Gordon, Brian P Ziemba, Joseph J FalkeBiochemistry|January 24, 2012
Assembly of membrane-bound protein complexes: detection and analysis by single molecule diffusionBrian P Ziemba, Jefferson D Knight, Joseph J FalkeJournal of the American Chemical Society|July 31, 2014
Interactions of protein kinase C-α C1A and C1B domains with membranes: a combined computational and experimental studyJianing Li, Brian P Ziemba, Joseph J Falke, et al.Plos One|May 30, 2020
Rapid exposure of macrophages to drugs resolves four classes of effects on the leading edge sensory pseudopod: Non-perturbing, adaptive, disruptive, and activatingThomas C Buckles, Brian P Ziemba, Danijel Djukovic, et al.Biochemistry|June 11, 2013
The PH domain of phosphoinositide-dependent kinase-1 exhibits a novel, phospho-regulated monomer-dimer equilibrium with important implications for kinase domain activation: single-molecule and ensemble studiesBrian P Ziemba, Carissa Pilling, Véronique Calleja, et al.Protein Science : a Publication of the Protein Society|October 20, 2012
A novel mechanism of ligand binding and release in the odorant binding protein 20 from the malaria mosquito Anopheles gambiaeBrian P Ziemba, Emma J Murphy, Hannah T Edlin, et al.Pageof 3