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39 results on '"Joanna, Skorko-Glonek"'

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1. There Are No Insurmountable Barriers: Passage of the Helicobacter pylori VacA Toxin from Bacterial Cytoplasm to Eukaryotic Cell Organelle

2. Chaperone activity of serine protease HtrA of Helicobacter pylori as a crucial survival factor under stress conditions

3. Functional analysis and cryo-electron microscopy of Campylobacter jejuni serine protease HtrA

4. E-Cadherin Orthologues as Substrates for the Serine Protease High Temperature Requirement A (HtrA)

5. Properties of the HtrA Protease From Bacterium Helicobacter pylori Whose Activity Is Indispensable for Growth Under Stress Conditions

6. The Periplasmic Oxidoreductase DsbA Is Required for Virulence of the Phytopathogen

7. Analysis of the link between the redox state and enzymatic activity of the HtrA (DegP) protein from Escherichia coli.

8. Structural and Functional Analysis of Human HtrA3 Protease and Its Subdomains.

9. SurA-like and Skp-like Proteins as Important Virulence Determinants of the Gram Negative Bacterial Pathogens

10. SecA - a multidomain and multitask bacterial export protein

11. Functional analysis and cryo-electron microscopy of Campylobacter jejuni serine protease HtrA

12. Importance of two PDZ domains for the proteolytic and chaperone activities of Helicobacter pylori serine protease HtrA

13. Lon Protease Is Important for Growth Under Stressful Conditions and Pathogenicity of the Phytopathogen, Bacterium

14. The Periplasmic Oxidoreductase DsbA Is Required for Virulence of the Phytopathogen Dickeya solani

15. Establishment of serine protease htrA mutants in Helicobacter pylori is associated with secA mutations

16. The Role of Proteases in the Virulence of Plant Pathogenic Bacteria

17. Intra- and intersubunit changes accompanying thermal activation of the HtrA2(Omi) protease homotrimer

18. Immune response against HtrA proteases in children with cutaneous mastocytosis

19. Chlorophyll catabolites in conditioned media of green microalga Desmodesmus subspicatus

20. The LA Loop as an Important Regulatory Element of the HtrA (DegP) Protease from Escherichia coli

21. The LD loop as an important structural element required for transmission of the allosteric signal in the HtrA (DegP) protease from Escherichia coli

22. Different Contributions of HtrA Protease and Chaperone Activities to Campylobacter jejuni Stress Tolerance and Physiology

23. Extracellular HtrA serine proteases: An emerging new strategy in bacterial pathogenesis

24. Temperature-induced conformational changes within the regulatory loops L1–L2–LA of the HtrA heat-shock protease from Escherichia coli

25. The proteolytic activity of the HtrA (DegP) protein from Escherichia coli at low temperatures

26. Structural and Functional Analysis of Human HtrA3 Protease and Its Subdomains

27. Analysis of the link between the redox state and enzymatic activity of the HtrA (DegP) protein from Escherichia coli

28. The LA loop as an important regulatory element of the HtrA (DegP) protease from Escherichia coli: structural and functional studies

29. HtrA Heat Shock Protease Interacts with Phospholipid Membranes and Undergoes Conformational Changes

30. Temperature-induced changes of HtrA2(Omi) protease activity and structure

31. Degradation by proteases Lon, Clp and HtrA, of Escherichia coli proteins aggregated in vivo by heat shock; HtrA protease action in vivo and in vitro

32. Site-directed mutagenesis of the HtrA(DegP) serine protease, whose proteolytic activity is indispensable for Escherichia coli survival at elevated temperatures

33. Comparison of the Structure of Wild-type HtrA Heat Shock Protease and Mutant HtrA Proteins

34. Changes in expression of human serine protease HtrA1, HtrA2 and HtrA3 genes in benign and malignant thyroid tumors

35. HTRA1 (HtrA serine peptidase 1)

36. Expression of human HtrA1, HtrA2, HtrA3 and TGF-beta1 genes in primary endometrial cancer

37. Characterization of disulfide exchange between DsbA and HtrA proteins from Escherichia coli

38. The DnaK chaperones from the archaeon Methanosarcina mazei and the bacterium Escherichia coli have different substrate specificities

39. Structural basis of the interspecies interaction between the chaperone DnaK(Hsp70) and the co-chaperone GrpE of archaea and bacteria

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