341 results on '"Weisman, Lois S."'
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2. Bur1 functions with TORC1 for vacuole‐mediated cell cycle progression
3. Targeting cancer metabolism by simultaneously disrupting parallel nutrient access pathways
4. Simultaneous Detection of Phosphoinositide Lipids by Radioactive Metabolic Labeling
5. Roles for PI(3,5)P2 in nutrient sensing through TORC1.
6. A signaling lipid drives synapse formation
7. The Vac 14p-Fig4p Complex Acts Independently of Vac7p and Couples $PI3,5P_2$ Synthesis and Turnover
8. Myosin V Attachment to Cargo Requires the Tight Association of Two Functional Subdomains
9. Yeast Homotypic Vacuole Fusion Requires the Ccz1-Mon1 Complex during the Tethering/Docking Stage
10. Identification of an Organelle-Specific Myosin V Receptor
11. Osmotic Stress-Induced increase of Phosphatidylinositol 3,5-Bisphosphate Requires Vac14p, an Activator of the Lipid Kinase Fab1p
12. Two Distinct Regions in a Yeast Myosin-V Tail Domain Are Required for the Movement of Different Cargoes
13. The Terminal Tail Region of a Yeast Myosin-V Mediates Its Attachment to Vacuole Membranes and Sites of Polarized Growth
14. Fab1p Is Essential for PtdIns(3)P 5-Kinase Activity and the Maintenance of Vacuolar Size and Membrane Homeostasis
15. Retrograde Traffic out of the Yeast Vacuole to the TGN Occurs via the Prevacuolar/Endosomal Compartment
16. Vac8p, a Vacuolar Protein with Armadillo Repeats, Functions in Both Vacuole Inheritance and Protein Targeting from the Cytoplasm to Vacuole
17. Recruitment of the SNX17-Retriever recycling pathway regulates synaptic function and plasticity
18. Actin and Myosin Function in Directed Vacuole Movement during Cell Division in Saccharomyces cerevisiae
19. Upregulation of the ESCRT pathway and multivesicular bodies accelerates degradation of proteins associated with neurodegeneration
20. Activity-dependent PI(3,5)P₂ synthesis controls AMPA receptor trafficking during synaptic depression
21. Myosin V
22. Genetically encoded fluorescent probe to visualize intracellular phosphatidylinositol 3,5-bisphosphate localization and dynamics
23. In vivo, Pikfyve generates PI(3,5)P₂, which serves as both a signaling lipid and the major precursor for PI5P
24. PIKFYVE-dependent regulation of MTORC1 and TFEB
25. Roles of PIKfyve in multiple cellular pathways
26. Myotubularin-related phosphatase 5 is a critical determinant of autophagy in neurons
27. A phosphoinositide cascade regulates a receptor recycling pathway
28. Myosin-Driven Peroxisome Partitioning in S. Cerevisiae
29. Pushing for Answers: Is Myosin V Directly Involved in Moving Mitochondria?
30. Loss of Vac14, a Regulator of the Signaling Lipid Phosphatidylinositol 3,5-Bisphosphate, Results in Neurodegeneration in Mice
31. PP2A-dependent TFEB activation is blocked by PIKfyve-induced mTORC1 activity
32. Lipid kinases VPS34 and PIKfyve coordinate a phosphoinositide cascade to regulate retriever-mediated recycling on endosomes
33. Author response: Lipid kinases VPS34 and PIKfyve coordinate a phosphoinositide cascade to regulate retriever-mediated recycling on endosomes
34. A Truncated Form of the Pho80 Cyclin Redirects the Pho85 Kinase to Disrupt Vacuole Inheritance in S. cerevisiae
35. Mutants of Saccharomyces cerevisiae that Block Intervacuole Vesicular Traffic and Vacuole Division and Segregation
36. Multiple Methods of Visualizing the Yeast Vacuole Permit Evaluation of Its Morphology and Inheritance during the Cell Cycle
37. Myotubularin-related phosphatase 5 is a critical determinant of autophagy in neurons
38. Modulation of synaptic function by VAC14, a protein that regulates the phosphoinositides PI(3,5)P2 and PI(5)P
39. Discovery of mutations in Saccharomyces cerevisiae by pooled linkage analysis and whole-genome sequencing
40. Phosphatidylinositol 3,5-bisphosphate: Low abundance, high significance
41. Deleterious variants of FIG4, a phosphoinositide phosphatase, in patients with ALS
42. VAC14 nucleates a protein complex essential for the acute interconversion of PI3P and PI(3,5)P2 in yeast and mouse
43. Structural basis for myosin V discrimination between distinct cargoes
44. The Vac 14p-Fig4p complex acts independently of Vac7p and couples PI3,[5P.sub.2] synthesis and turnover
45. Elevating PI3P drives select downstream membrane trafficking pathways
46. Roles and regulation of myosin V interaction with cargo
47. Apilimod alters TGFβ signaling pathway and prevents cardiac fibrotic remodeling
48. Yeast vacuole inheritance and dynamics
49. Cargo Release from Myosin V Requires the Convergence of Parallel Pathways that Phosphorylate and Ubiquitylate the Cargo Adaptor
50. Insights into Lysosomal PI(3,5)P2 Homeostasis from a Structural-Biochemical Analysis of the PIKfyve Lipid Kinase Complex
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