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1. β-1,6-Glucan plays a central role in the structure and remodeling of the bilaminate fungal cell wall

2. Variations in candidalysin amino acid sequence influence toxicity and host responses

3. Metabolic reprogramming during Candida albicans planktonic-biofilm transition is modulated by the transcription factors Zcf15 and Zcf26.

4. Shotgun metagenomics reveals interkingdom association between intestinal bacteria and fungi involving competition for nutrients

5. A gain-of-function mutation in zinc cluster transcription factor Rob1 drives Candida albicans adaptive growth in the cystic fibrosis lung environment.

6. Use of the Fluorescent Dye Thioflavin T to Track Amyloid Structures in the Pathogenic Yeast Candida albicans

7. A CO2 sensing module modulates β-1,3-glucan exposure in Candida albicans

8. Unveiling Candida albicans intestinal carriage in healthy volunteers: the role of micro- and mycobiota, diet, host genetics and immune response

9. The Pga59 cell wall protein is an amyloid forming protein involved in adhesion and biofilm establishment in the pathogenic yeast Candida albicans

10. Integrated analysis of whole blood oxylipin and cytokine responses after bacterial, viral, and T cell stimulation reveals new immune networks

11. A phylogenetically-restricted essential cell cycle progression factor in the human pathogen Candida albicans

12. Candida albicans Adhesion Measured by Optical Nanomotion Detection

13. A Clinical Study Provides the First Direct Evidence That Interindividual Variations in Fecal β-Lactamase Activity Affect the Gut Mycobiota Dynamics in Response to β-Lactam Antibiotics

14. A protocol for ultrastructural study of Candida albicans biofilm using transmission electron microscopy

15. Functional Portrait of Irf1 (Orf19.217), a Regulator of Morphogenesis and Iron Homeostasis in Candida albicans

16. A conserved regulator controls asexual sporulation in the fungal pathogen Candida albicans

17. Candida albicans commensalism in the oral mucosa is favoured by limited virulence and metabolic adaptation.

18. Candidalysins Are a New Family of Cytolytic Fungal Peptide Toxins

19. Membrane protective role of autophagic machinery during infection of epithelial cells by Candida albicans

20. Multiple Stochastic Parameters Influence Genome Dynamics in a Heterozygous Diploid Eukaryotic Model

21. Identification and Characterization of Mediators of Fluconazole Tolerance in Candida albicans

22. Use of CRISPR-Cas9 To Target Homologous Recombination Limits Transformation-Induced Genomic Changes in Candida albicans

23. Candida albicans and Candida dubliniensis Show Different Trailing Effect Patterns When Exposed to Echinocandins and Azoles

24. A conserved fungal hub protein involved in adhesion and drug resistance in the human pathogen Candida albicans

25. Methodologies for in vitro and in vivo evaluation of efficacy of antifungal and antibiofilm agents and surface coatings against fungal biofilms

26. Gene flow contributes to diversification of the major fungal pathogen Candida albicans

27. Selective BET bromodomain inhibition as an antifungal therapeutic strategy

28. The Candida albicans biofilm gene circuit modulated at the chromatin level by a recent molecular histone innovation.

29. Identification of Recessive Lethal Alleles in the Diploid Genome of a Candida albicans Laboratory Strain Unveils a Potential Role of Repetitive Sequences in Buffering Their Deleterious Impact

30. A High-Throughput Candida albicans Two-Hybrid System

31. Of mice, flies – and men? Comparing fungal infection models for large-scale screening efforts

32. Combined bacterial and fungal intestinal microbiota analyses: Impact of storage conditions and DNA extraction protocols.

33. Analysis of Repair Mechanisms following an Induced Double-Strand Break Uncovers Recessive Deleterious Alleles in the Candida albicans Diploid Genome

34. Mechanisms Underlying the Delayed Activation of the Cap1 Transcription Factor in Candida albicans following Combinatorial Oxidative and Cationic Stress Important for Phagocytic Potency

35. Genetic Differences between Avian and Human Isolates of Candida dubliniensis

36. Comparison of E,E-Farnesol Secretion and the Clinical Characteristics of Candida albicans Bloodstream Isolates from Different Multilocus Sequence Typing Clades.

37. A single nucleotide polymorphism uncovers a novel function for the transcription factor Ace2 during Candida albicans hyphal development.

38. A human-curated annotation of the Candida albicans genome.

39. Targeted changes of the cell wall proteome influence Candida albicans ability to form single- and multi-strain biofilms.

40. Microevolution of Candida albicans in macrophages restores filamentation in a nonfilamentous mutant.

41. One small step for a yeast--microevolution within macrophages renders Candida glabrata hypervirulent due to a single point mutation.

42. Systematic phenotyping of a large-scale Candida glabrata deletion collection reveals novel antifungal tolerance genes.

43. ChIP-Seq in Candida albicans

44. A comprehensive functional portrait of two heat shock factor-type transcriptional regulators involved in Candida albicans morphogenesis and virulence.

45. Rbt1 protein domains analysis in Candida albicans brings insights into hyphal surface modifications and Rbt1 potential role during adhesion and biofilm formation.

46. Antifungal activity of fused Mannich ketones triggers an oxidative stress response and is Cap1-dependent in Candida albicans.

47. Gymnemic acids inhibit hyphal growth and virulence in Candida albicans.

48. A versatile overexpression strategy in the pathogenic yeast Candida albicans: identification of regulators of morphogenesis and fitness.

49. The NDR/LATS kinase Cbk1 controls the activity of the transcriptional regulator Bcr1 during biofilm formation in Candida albicans.

50. Early IFNβ secretion determines variable downstream IL-12p70 responses upon TLR4 activation

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