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1. In silico analysis of the HSP90 chaperone system from the African trypanosome, Trypanosoma brucei

2. Screening for Small Molecule Modulators of Trypanosoma brucei Hsp70 Chaperone Activity Based upon Alcyonarian Coral-Derived Natural Products

3. Hsp70/J-protein machinery from Glossina morsitans morsitans, vector of African trypanosomiasis.

4. The Malarial Exported PFA0660w Is an Hsp40 Co-Chaperone of PfHsp70-x.

5. Plasmodium falciparum Hep1 Is Required to Prevent the Self Aggregation of PfHsp70-3.

6. Investigating the Chaperone Properties of a Novel Heat Shock Protein, Hsp70.c, from Trypanosoma brucei

7. Screening for small molecule modulators of trypanosoma brucei HSP70 chaperone activity based upon alcyonarian coral-derived natural products

9. Chaperonin: Co-chaperonin Interactions

10. Biological Characterization of Plasmodium falciparum Mitochondrial Heat Shock Protein PfHsp70-3: Possible Involvement in Malaria Pathogenesis

11. General Structural and Functional Features of Molecular Chaperones

12. Characterization of an Atypical Trypanosoma brucei Hsp70 Demonstrates Its Cytosolic-Nuclear Localization and Modulation by Quercetin and Methylene Blue

13. Characterization of an Atypical

14. The Hsp90 chaperone system from the African trypanosome, Trypanosoma brucei

15. The Hsp70/J-protein machinery of the African trypanosome, Trypanosoma brucei

16. Hsp70 Escort Protein: More Than a Regulator of Mitochondrial Hsp70

17. Challenges and Curriculum Transformation in the Higher Education Sector in South Africa: A Case Study in WASH to Improve the Training of Pharmacists

18. Screening for Small Molecule Modulators of

19. Trypanosoma brucei J-Protein 2 Functionally Co-Operates with the Cytosolic Hsp70 and Hsp70.4 Proteins

20. Trypanosoma bruceiJ protein 2 functionally cooperates with the cytosolic Hsp70.4 and Hsp70 proteins

21. PFB0595w is a Plasmodium falciparum J protein that co-localizes with PfHsp70-1 and can stimulate its in vitro ATP hydrolysis activity

22. Hsp70/J-protein machinery from Glossina morsitans morsitans, vector of African trypanosomiasis

23. Selective modulation of plasmodial Hsp70s by small molecules with antimalarial activity

24. Plasmodium falciparum Hep1 Is Required to Prevent the Self Aggregation of PfHsp70-3

25. The Malarial Exported PFA0660w Is an Hsp40 Co-Chaperone of PfHsp70-x

26. Current perspectives of the Escherichia coli RNA degradosome

27. Localisation of Theiler's murine encephalomyelitis virus protein 2C to the Golgi apparatus using antibodies generated against a peptide region

28. The Agrobacterium tumefaciens DnaK: ATPase cycle, oligomeric state and chaperone properties

29. Chaperonin-co-chaperonin interactions

30. Chaperonin—Co-chaperonin Interactions

31. Trypanosoma brucei J protein 2 is a stress inducible and essential Hsp40

32. Biotransformation of phenols using immobilised polyphenol oxidase

33. Immobilisation of polyphenol oxidase on nylon and polyethersulphone membranes: Effect on product formation

34. General Structural and Functional Features of Molecular Chaperones

35. Rolls and sandwiches: cages and Barrels

36. The druggable antimalarial target PfDXR: overproduction strategies and kinetic characterization

37. Enhanced activity of chaperonin GroEL in the presence of platinum nanoparticles

38. The structural and functional diversity of Hsp70 proteins from Plasmodium falciparum

39. Approaches to the isolation and characterization of molecular chaperones

40. Plasmodium falciparum heat shock protein 70 is able to suppress the thermosensitivity of an Escherichia coli DnaK mutant strain

41. The in vivo and in vitro characterization of DnaK from Agrobacterium tumefaciens RUOR

42. Rational mutagenesis of a 40 kDa heat shock protein from Agrobacterium tumefaciens identifies amino acid residues critical to its in vivo function

43. Overproduction, purification, and characterization of the Plasmodium falciparum heat shock protein 70

44. Optimization of catechol production by membrane-immobilized polyphenol oxidase: a modeling approach

45. Plasmodium falciparum heat shock protein 70 is able to suppress the thermosensitivity of an Escherichia coli DnaK mutant strain.

46. Cytosolic and ER J-domains of mammalian and parasitic origin can functionally interact with DnaK

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