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Your search keyword '"amphipathic helix"' showing total 474 results

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474 results on '"amphipathic helix"'

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1. Insights into the distinct membrane targeting mechanisms of WDR91 family proteins.

2. Dual Antimicrobial and Anticancer Activity of Membrane-Active Peptide BP52.

3. WIPI2b recruitment to phagophores and ATG16L1 binding are regulated by ULK1 phosphorylation.

4. Ameloblastin and its multifunctionality in amelogenesis: A review.

5. The evolutionary origins and ancestral features of septins.

6. Molecular mechanisms of perilipin protein function in lipid droplet metabolism.

7. Adding hydrophobicity or positive charges to the cytosolic half of the α‐synuclein 3–11 helix increases membrane association and S129 phosphorylation.

8. The evolutionary origins and ancestral features of septins

9. The Amphipathic Helix in Visual Cycle Proteins: A Review

10. Impact of chemical modifications on the antimicrobial and hemolytic activity of helical amphipathic peptide Lasioglossin LL-III.

11. Identification of novel proteins regulating lipid droplet biogenesis in filamentous fungi.

12. Role of Lipids and Divalent Cations in Membrane Fusion Mediated by the Heptad Repeat Domain 1 of Mitofusin.

13. Independent Membrane Binding Properties of the Caspase Generated Fragments of the Beaded Filament Structural Protein 1 (BFSP1) Involves an Amphipathic Helix.

14. Molecular mechanism of GTP binding- and dimerization-induced enhancement of Sar1-mediated membrane remodeling.

15. Conformational ensemble of the TNF-derived peptide solnatide in solution

16. Coemergence of the Amphipathic Helix on Ameloblastin With Mammalian Prismatic Enamel.

17. Lunapark ubiquitinates atlastin-2 for the tubular network formation of the endoplasmic reticulum.

18. Cecropin a Improves the Antibacterial Activity of Hen Egg White Lysozyme against Challenging Salmonella enterica Serovars.

19. Role of Lipids and Divalent Cations in Membrane Fusion Mediated by the Heptad Repeat Domain 1 of Mitofusin

20. Independent Membrane Binding Properties of the Caspase Generated Fragments of the Beaded Filament Structural Protein 1 (BFSP1) Involves an Amphipathic Helix

21. The Nuclear Pore Complex: Birth, Life, and Death of a Cellular Behemoth.

22. Ab-Initio Membrane Protein Amphipathic Helix Structure Prediction Using Deep Neural Networks.

23. Identity Determinants of the Translocation Signal for a Type 1 Secretion System.

24. The CYTOLD and ERTOLD pathways for lipid droplet–protein targeting.

25. Hepatitis C virus core protein uses triacylglycerols to fold onto the endoplasmic reticulum membrane.

26. Identity Determinants of the Translocation Signal for a Type 1 Secretion System

27. The molecular basis for ER tubule formation

28. Stapled Anoplin as an Antibacterial Agent.

29. C‐terminal juxtamembrane region of full‐length M2 protein forms a membrane surface associated amphipathic helix

30. A conserved amphipathic helix is required for membrane tubule formation by Yop1p

31. Stapled Anoplin as an Antibacterial Agent

32. Cecropin A Improves the Antibacterial Activity of Hen Egg White Lysozyme against Challenging Salmonella enterica Serovars

33. The disassembly of lipid droplets in Chlamydomonas.

34. ReSMAP: Web Server for Predicting Residue-Specific Membrane-Association Propensities of Intrinsically Disordered Proteins

35. Exceptional stability of a perilipin on lipid droplets depends on its polar residues, suggesting multimeric assembly

36. The Canonical and Accessory Sec System of Gram-positive Bacteria

37. Twin-Arginine Protein Translocation

38. Identification of a Potential Membrane-Targeting Sequence in the C-Terminus of the F Plasmid Segregation Protein SopA.

39. Theater in the Self-Cleaning Cell: Intrinsically Disordered Proteins or Protein Regions Acting with Membranes in Autophagy

40. Reciprocal regulation between lunapark and atlastin facilitates ER three-way junction formation

41. Mechanisms of protein targeting to lipid droplets: A unified cell biological and biophysical perspective.

42. Involvement of a Membrane-Bound Amphiphilic Helix in Substrate Discrimination and Binding by an Escherichia coli S2P Peptidase RseP.

43. Membrane Lipids Assist Catalysis by CTP: Phosphocholine Cytidylyltransferase.

44. Atg3 promotes Atg8 lipidation via altering lipid diffusion and rearrangement.

45. M2 amphipathic helices facilitate pH-dependent conformational transition in influenza A virus.

46. Dunking into the Lipid Bilayer: How Direct Membrane Binding of Nucleoporins Can Contribute to Nuclear Pore Complex Structure and Assembly

47. The Molecular Basis for Erns Dimerization in Classical Swine Fever Virus

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