168 results on '"Mileykovskaya, Eugenia"'
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2. Functional Roles of Individual Membrane Phospholipids in Escherichia coli and Saccharomyces cerevisiae
3. 2176. Cardiolipin Synthases Play Redundant Roles And Are Required for Membrane Remodeling in Daptomycin Resistant Enterococcus faecalis
4. Molecular Basis of Cell Membrane Adaptation in Daptomycin-ResistantEnterococcus faecalis
5. Nobiletin fortifies mitochondrial respiration in skeletal muscle to promote healthy aging against metabolic challenge
6. Altered Lipid Synthesis by Lack of Yeast Pah1 Phosphatidate Phosphatase Reduces Chronological Life Span
7. Disordered regions of respiratory supercomplexes offer new pathways for substrate channeling in crowded membranes
8. 140. Enterococcus faecalis CL Synthases Have Redundant Roles and Play A Major Role in Phospholipid Redistribution Associated with Daptomycin Resistance
9. Cardiolipin-dependent formation of mitochondrial respiratory supercomplexes
10. Lipids in the Assembly of Membrane Proteins and Organization of Protein Supercomplexes: Implications for Lipid-linked Disorders
11. Bacterial cell membranes and their role in daptomycin resistance: A review
12. Structural insights into cardiolipin stabilization of yeast respiratory supercomplexes revealed by Cryo-EM
13. Cardiolipin-dependent Reconstitution of Respiratory Supercomplexes from Purified Saccharomyces cerevisiae Complexes III and IV
14. Functional Roles of Individual Membrane Phospholipids in Escherichia coli and Saccharomyces cerevisiae
15. Arrangement of the Respiratory Chain Complexes in Saccharomyces cerevisiae Supercomplex III2IV2 Revealed by Single Particle Cryo-Electron Microscopy
16. Contributors
17. Functional Roles of Lipids in Membranes
18. Role of Cardiolipin in Mitochondrial Supercomplex Assembly
19. Adenine Nucleotide-dependent Regulation of Assembly of Bacterial Tubulin-like FtsZ by a Hypermorph of Bacterial Actin-like FtsA
20. Phosphatidic Acid and N-Acylphosphatidylethanolamine Form Membrane Domains in Escherichia coli Mutant Lacking Cardiolipin and Phosphatidylglycerol
21. Cardiolipin membrane domains in prokaryotes and eukaryotes
22. 1275. Dynamics of Enterococcus faecalis Cardiolipin Synthase Gene Expression Reveal Compensatory Roles in Daptomycin Resistance
23. Mutual effects of MinD-membrane interaction: II. Domain structure of the membrane enhances MinD binding
24. Mutual effects of MinD–membrane interaction: I. Changes in the membrane properties induced by MinD binding
25. Toward a hyperstructure taxonomy
26. Behaviour of bacterial division protein FtsZ under a monolayer with phospholipid domains
27. Functional roles of lipids in membranes
28. List of contributors**Authors’ names are followed by the starting page number(s) of their contribution(s).
29. 1446. Dynamics of Enterococcus faecalis Cardiolipin Synthase Gene Expression Reveal Compensatory Roles in Daptomycin Resistance
30. Cardiolipin Synthesis in Skeletal Muscle Is Rhythmic and Modifiable by Age and Diet
31. Visualization of phospholipid domains in Escherichia coli by using the cardiolipin-specific fluorescence dye 10-N-nonyl acridine orange
32. Cardiolipin Is Essential for Organization of Complexes III and IV into a Supercomplex in Intact Yeast Mitochondria
33. Role of membrane lipids in bacterial division-site selection
34. Subcellular localization of Escherichia coli osmosensory transporter ProP: focus on cardiolipin membrane domains
35. Localization and function of early cell division proteins in filamentous Escherichia coli cells lacking phosphatidylethanolamine
36. The Cpx two-component signal transduction pathway is activated in Escherichia coli mutant strains lacking phosphatidylethanolamine
37. Monoglucosyldiacylglycerol, a Foreign Lipid, Can Substitute for Phosphatidylethanolamine in Essential Membrane-associated Functions in Escherichia coli
38. A hypothesis to explain division site selection in Escherichia coli by combining nucleoid occlusion and Min
39. Diversity and versatility of lipid–protein interactions revealed by molecular genetic approaches
40. Cardiolipin Is Not Required to Maintain Mitochondrial DNA Stability or Cell Viability for Saccharomyces cerevisiae Grown at Elevated Temperatures
41. Effects of Phospholipid Composition on MinD-Membrane Interactions in Vitro and in Vivo
42. 602. Mechanism of LiaY-Mediated Daptomycin Resistance in Enterococcus faecalis
43. Gluing the Respiratory Chain Together: CARDIOLIPIN IS REQUIRED FOR SUPERCOMPLEX FORMATION IN THE INNER MITOCHONDRIAL MEMBRANE
44. Lack of Mitochondrial Anionic Phospholipids Causes an Inhibition of Translation of Protein Components of the Electron Transport Chain: A YEAST GENETIC MODEL SYSTEM FOR THE STUDY OF ANIONIC PHOSPHOLIPID FUNCTION IN MITOCHONDRIA
45. Cardiolipin binds nonyl acridine orange by aggregating the dye at exposed hydrophobic domains on bilayer surfaces
46. Structural Analysis of Saccharomyces cerevisiae Respiratory Supercomplex Composed of Complexes III and IV
47. A Requirement for Cardiolipin in the Organization and Function of Mitochondrial Supercomplexes
48. Chapter 1 - Functional Roles of Lipids in Membranes
49. The membrane: transertion as an organizing principle in membrane heterogeneity
50. N-acylated Peptides Derived from Human Lactoferricin Perturb Organization of Cardiolipin and Phosphatidylethanolamine in Cell Membranes and Induce Defects in Escherichia coli Cell Division
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