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3. In memoriam

6. Utilizing Ccw12 as an effective anchor for yeast surface display of diverse recombinant proteins

8. The Chloroquine Story in the First Year of the COVID-19 Pandemic

9. INCREASING THE EFFICIENCY OF PIR2-BASED YEAST SURFACE DISPLAY SYSTEM

10. Advancing Pir-based yeast surface display by reshuffling and truncating Pir2-β-lactamase constructs

11. Yeast cell wall protein Scw10 proteolytic processing

12. THE ROLE AND DIVERSITY OF PIR PROTEINS IN CELL WALLS OF BUDDING YEASTS

13. Altering the cell wall to increase cell surface display efficiency

14. Modifications of the UPR and ERAD Pathways to Improve Yeast Surface Display

15. Modification of protein synthesis and secretory pathway to improve surface display efficiency

16. Development of β-­lactamase based surface display systems in Saccharomyces cerevisiae for testing the effects of mutation in protein glycosylation on surface display efficiency

17. Comparative analysis of cell wall-related proteins of different yeasts

18. Effects of mutations in endocytosis and glycosylation on efficiency of surface display of recombinant proteins in yeast

22. Scw4 and Scw10 as new potential platforms for yeast cell surface expression systems

23. Overview of Catalytic Properties of Fungal Xylose Reductases and Molecular Engineering Approaches for Improved Xylose Utilisation in Yeast

24. Comparison of proteolytic processing of Saccharomyces cerevisiae cell wall proteins Scw4 and Scw10, and their evolutionary conservation among different yeast species

26. Overview of systems and techniques for surface display of recombinant proteins in yeast S. cerevisiae

27. Characetrisation of surface displayed recombinant xylose reductase in Saccharomyces cerevisiae

28. Surface display of recombinant xylose reductase in the Saccharomyces cerevisiae

29. Cell wall protein Scw4 as a base for development of new homologous and heterologous expression system models

30. Surface display of recombinant proteins in the Saccharomyces cerevisiae

31. Investigation of processing of the native and mutated forms of Saccharomyces cerevisiae cell wall protein Scw4p

32. Proteolytic processing of Saccharomyces cerevisiae cell wall proteins Scw4p and Scw10p

33. The role of Kex2p and yapsins in the proteolytic processing of Scw4p in the Saccharomyces cerevisiae cell wall

34. Surface display of proteins – potential in food processing and control

35. Surface display of proteins - decorating cells, not just for fun

36. Purification and Characterization of a Novel Cold-Active Lipase from the Yeast Candida zeylanoides

38. THE EFFECT OF PROTEOLYTIC PROCESSING ON THE LOCALIZATION AND PHYSIOLOGICAL ACTIVITY OF THE Saccharomyces cerevisiae CELL WALL PROTEIN Scw4p

39. Surface display of proteins in microorganisms – potential applications in food control and processing

40. Proteolytic processing of Saccharomyces cerevisiae cell wall protein Scw4p

41. Overview of Saccharomyces cerevisiae Ribonucleases

42. The role of proteolytic processing in the covalent attachment of Scw4p in the Saccharomyces cerevisiae cell wall

43. Effects of Dietary Lipids on Lipoprotein Profi le

44. Using S. cerevisiae cell wall protein Ccw12p as a anchor for expression of two yeast nucleases at the cell surface

45. Using S. cerevisiae cell wall proteins as a anchor for expression of heterologous proteins at the cell surface

46. Localization of yeast cell wall mannoproteins - impact on wall biogenesis

47. Alkali-extractable proteins in Saccharomyces cerevisiae cell wall

48. Expression of heterologous proteins at the S. cerevisiae cell surface using Pir4p as a cell wall anchor

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