142 results on '"Zeno, Wade F."'
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2. Disordered protein networks as mechanistic drivers of membrane remodeling and endocytosis
3. List of contributors
4. Clathrin senses membrane curvature
5. Dynamics of Crowding-Induced Mixing in Phase Separated Lipid Bilayers
6. Crowding-Induced Mixing Behavior of Lipid Bilayers: Examination of Mixing Energy, Phase, Packing Geometry, and Reversibility
7. Spectroscopic Characterization of Structural Changes in Membrane Scaffold Proteins Entrapped within Mesoporous Silica Gel Monoliths
8. Analysis of Lipid Phase Behavior and Protein Conformational Changes in Nanolipoprotein Particles upon Entrapment in Sol–Gel-Derived Silica
9. Graphene Quantum Dots Inhibit Lipid Peroxidation in Biological Membranes.
10. Scaling relationships for translational diffusion constants applied to membrane domain dissolution and growth
11. BPS2025 - Lipid unsaturation regulates α-synuclein binding
12. BPS2025 - Exploring intrinsic disorder at the protein-lipid interface
13. BPS2025 - Impact of membrane packing defects and charge on alpha-synuclein binding
14. BPS2025 - Exploring membrane interactions and cellular uptake with cell-penetrating nanodiscs
15. BPS2025 - Investigating the impact of membrane physiochemical properties on lipid peroxidation
16. Dynamic interactions between alpha-synuclein and curved membrane surfaces
17. Membrane mechanics regulate the cooperativity of proteins in curvature sensing
18. The role of graphene quantum dots in mitigating lipid peroxidation
19. Curvature Sorting and Crowding-Induced Mixing in Experimental Model Membranes
20. Chapter 16 - Disordered protein networks as mechanistic drivers of membrane remodeling and endocytosis
21. Synergy between intrinsically disordered domains and structured proteins amplifies membrane curvature sensing
22. Predicting membrane curvature sensing and remodeling by protein domains and assemblies using continuum models
23. Correction: A continuum membrane model can predict curvature sensing by helix insertion
24. Membrane fission by clathrin
25. Synergy between the structured and disordered regions of alpha-synuclein in membrane remodeling
26. Characterizing synthetic cell penetrating nanodiscs for therapeutic delivery
27. Measuring lipid peroxidation in the presence of graphene quantum dots
28. Influence of membrane physiochemical properties on dynamic binding interactions with alpha-synuclein
29. A continuum membrane model predicts curvature sensing by helix insertion
30. Mechanical Feedback in Protein Recruitment to Membranes
31. A continuum membrane model can predict curvature sensing by helix insertion
32. Clathrin Senses Membrane Curvature
33. Principles and Applications of Biological Membrane Organization
34. Disordered proteins and bar domains collaborate to remodel membranes
35. Chapter Seven - Curvature Sorting and Crowding-Induced Mixing in Experimental Model Membranes
36. The Role of Disordered Proteins in Membrane Curvature Sensing during Endocytosis
37. Molecular Mechanisms of Membrane Curvature Sensing by a Disordered Protein
38. Intrinsically Disordered Proteins Sense Membrane Curvature
39. Structured and intrinsically disordered domains within Amphiphysin1 work together to sense and drive membrane curvature
40. Self-diffusion of a highly concentrated monoclonal antibody by fluorescence correlation spectroscopy: insight into protein–protein interactions and self-association
41. BAR scaffolds drive membrane fission by crowding disordered domains
42. The 2018 biomembrane curvature and remodeling roadmap
43. The 2018 biomembrane curvature and remodeling roadmap
44. The 2018 biomembrane curvature and remodeling roadmap
45. EPS15 Forms Membrane Bound Networks that Promote Localized Assembly of the Clathrin Coat
46. BAR scaffolds drive membrane fission by crowding disordered domains.
47. Lipid Phase Behavior and Protein-Lipid Interactions within Nanolipoprotein Particles upon Sol-Gel Derived Encapsulation
48. Thermodynamic Modelling of Phase Separated Lipid Mixtures Induced by Protein Crowding
49. Investigation of Nanolipoprotein Particles Entrapped Within Nanoporous Silica: A Novel Platform for Immobilization of Integral Membrane Proteins
50. Fermentation Temperature Modulates Phosphatidylethanolamine and Phosphatidylinositol Levels in the Cell Membrane of Saccharomyces cerevisiae
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