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1. Molecular and cellular processes underlying Unverricht-Lundborg disease—prospects for early interventions and a cure

2. Editorial: Women in molecular neuroscience

4. Human stefin B: from its structure, folding, and aggregation to its function in health and disease

5. Protein Condensates and Protein Aggregates: In Vitro, in the Cell, and In Silico

6. Amyloid Formation of Stefin B Protein Studied by Infrared Spectroscopy

7. Prediction of Transmembrane Regions, Cholesterol, and Ganglioside Binding Sites in Amyloid-Forming Proteins Indicate Potential for Amyloid Pore Formation

8. Viroporins vs. Other Pore-Forming Proteins: What Lessons Can We Take?

9. Synergy of the Inhibitory Action of Polyphenols Plus Vitamin C on Amyloid Fibril Formation: Case Study of Human Stefin B

11. Assessing Autophagy in Archived Tissue or How to Capture Autophagic Flux from a Tissue Snapshot

12. The effect of tyrosine residues on α-synuclein fibrillation

13. Possible Mechanisms by which Stefin B could Regulate Proteostasis and Oxidative Stress

14. Human stefin B role in cell's response to misfolded proteins and autophagy.

15. USING STEFIN B AS A MODEL AMYLOIDOGENIC PROTEIN –OVERVIEW

17. Amyloid Fibrils of Stefin B Show Anisotropic Properties

18. From Oxidative Stress Damage to Pathways, Networks, and Autophagy via MicroRNAs

19. The effect of three polyphenols and some other antioxidant substances on amyloid fibril formation by Human cystatin C

20. Prolines Affect the Nucleation Phase of Amyloid Fibrillation Reaction; Mutational Analysis of Human Stefin B

21. Inhibition of Protein Aggregation by Several Antioxidants

22. Transautophagy: Research and Translation of Autophagy Knowledge

23. Proline Residues as Switches in Conformational Changes Leading to Amyloid Fibril Formation

24. Gain in toxic function of stefin B EPM1 mutants aggregates: Correlation between cell death, aggregate number/size and oxidative stress

25. Amyloid fibrils compared to peptide nanotubes

26. The Role of Initial Oligomers in Amyloid Fibril Formation by Human Stefin B

27. Co-chaperoning by amyloid-forming proteins: cystatins vs. crystallins

28. Putative alternative functions of human stefin B (cystatin B): binding to amyloid-beta, membranes, and copper

29. Mechanisms of amyloid fibril formation - focus on domain-swapping

30. Intracellular aggregation of human stefin B: confocal and electron microscopy study

31. Stefin B Interacts with Histones and Cathepsin L in the Nucleus

32. Interactions of alkylureas with l-valine, l-valyl-l-valine, l-leucine, and l-leucyl-l-leucine

33. Assembly of Stefin B into Polymorphic Oligomers Probed by Discrete Molecular Dynamics

34. A single prion protein peptide can elicit a panel of isoform specific monoclonal antibodies

35. Interaction of human stefin B in the prefibrillar oligomeric form with membranes

36. Protein aggregation as a possible cause for pathology in a subset of familial Unverricht–Lundborg disease

38. Major differences in stability and dimerization properties of two chimeric mutants of human stefins

39. On the mechanism of human stefin B folding: II. Folding from GuHCl unfolded, TFE denatured, acid denatured, and acid intermediate states

40. Refolding of recombinant sulphonated procathepsin S and of reduced chicken cystatin; implications for renaturation experiments

41. Impaired autophagy: a link between neurodegenerative and neuropsychiatric diseases

42. Contributors

43. On Possible Function and Toxicity of Multiple Oligomeric/Conformational States of a Globular Protein – Human Stefin B

44. Partial rotational lattice order-disorder in stefin B crystals

45. Membrane damage by an alpha-helical pore-forming protein, Equinatoxin II, proceeds through a succession of ordered steps

46. Influence of partial unfolding and aggregation of human stefin B (cystatin B) EPM1 mutants G50E and Q71P on selective cleavages by cathepsins B and S

47. The cross-road between the mechanisms of protein folding and aggregation; study of human stefin B and its H75W mutant

48. Mechanisms of amyloid fibril formation--focus on domain-swapping

49. Binding of amyloid peptides to domain-swapped dimers of other amyloid-forming proteins may prevent their neurotoxicity

50. Modulation of contact order effects in the two-state folding of stefins A and B

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