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1. Titan cells formation in Cryptococcus neoformans is finely tuned by environmental conditions and modulated by positive and negative genetic regulators.

2. Life Science's Average Publishable Unit (APU) Has Increased over the Past Two Decades.

3. A role for LHC1 in higher order structure and complement binding of the Cryptococcus neoformans capsule.

4. Capsules from pathogenic and non-pathogenic Cryptococcus spp. manifest significant differences in structure and ability to protect against phagocytic cells.

5. Histoplasma capsulatum heat-shock 60 orchestrates the adaptation of the fungus to temperature stress.

6. Characterization of yeast extracellular vesicles: evidence for the participation of different pathways of cellular traffic in vesicle biogenesis.

7. Comparative Molecular and Immunoregulatory Analysis of Extracellular Vesicles from Candida albicans and Candida auris

8. Cryptococcus neoformans Secretes Small Molecules That Inhibit IL-1β Inflammasome-Dependent Secretion

9. Melanin protects Cryptococcus neoformans from spaceflight effects

10. Fungal Melanins and Applications in Healthcare, Bioremediation and Industry

11. The hypothermic nature of fungi

12. Melaninization Reduces Cryptococcus neoformans Susceptibility to Mechanical Stress

13. The Role of Melanin in Fungal Disease

14. Beat the heat: correlates, compounds, and mechanisms involved in fungal thermotolerance

15. Cryptococcus neoformans capsule regrowth experiments reveal dynamics of enlargement and architecture

16. Exploring Cryptococcus neoformans capsule structure and assembly with a hydroxylamine-armed fluorescent probe

17. Comparative Molecular and Immunoregulatory Analysis of Extracellular Vesicles from Candida albicans and Candida auris

18. Histoplasma capsulatum Glycans From Distinct Genotypes Share Structural and Serological Similarities to Cryptococcus neoformans Glucuronoxylomannan

19. Cryptococcus neoformans Secretes Small Molecules That Inhibit IL-1β Inflammasome-Dependent Secretion

20. Fungi are colder than their surroundings

21. The capsule of Cryptococcus neoformans

22. Cell-wall dyes interfere with Cryptococcus neoformans melanin deposition

23. Melanin for space travel radioprotection

24. Melanization in Cryptococcus neoformans Requires Complex Regulation

25. The Third International Symposium on Fungal Stress – ISFUS

26. Melanin deposition in two Cryptococcus species depends on cell-wall composition and flexibility

27. Exploring Cryptococcus neoformans capsule structure and assembly with a hydroxylamine-armed fluorescent probe

28. Functions of fungal melanin beyond virulence

29. The structural unit of melanin in the cell wall of the fungal pathogen Cryptococcus neoformans

30. Cryptococcus neoformans secretes small molecules that inhibit IL-1β inflammasome-dependent secretion

31. Melanin

32. The Buoyancy of Cryptococcus neoformans Is Affected by Capsule Size

33. The Buoyancy of

34. The Capsule of <named-content content-type='genus-species'>Cryptococcus neoformans</named-content> Modulates Phagosomal pH through Its Acid-Base Properties

35. The buoyant cell density ofCryptococcus neoformansis affected by capsule size

36. Impact of Yeast Pigmentation on Heat Capture and Latitudinal Distribution

37. Titan cells formation in Cryptococcus neoformans is finely tuned by environmental conditions and modulated by positive and negative genetic regulators

38. The capsule of

39. N-acetylglucosamine affects Cryptococcus neoformans cell-wall composition and melanin architecture

40. Melanin, Radiation, and Energy Transduction in Fungi

41. Microbial melanins for radioprotection and bioremediation

42. Global structures of IgG isotypes expressing identical variable regions

43. Alcohol impairs J774.16 macrophage-like cell antimicrobial functions inAcinetobacter baumanniiinfection

44. Allergen1regulates polysaccharide structure inCryptococcus neoformans

45. Melanin, Radiation, and Energy Transduction in Fungi

46. Antibody Binding to Cryptococcus neoformans Impairs Budding by Altering Capsular Mechanical Properties

47. A Monoclonal Antibody to Cryptococcus neoformans Glucuronoxylomannan Manifests Hydrolytic Activity for Both Peptides and Polysaccharides*

48. The benefits of scientific mobility and international collaboration

49. A Paracoccidioides brasiliensis glycan shares serologic and functional properties with cryptococcal glucuronoxylomannan

50. Blm10 Protein Promotes Proteasomal Substrate Turnover by an Active Gating Mechanism

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