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1. Intranasal delivery of Salmonella OMVs decorated with Chlamydia trachomatis antigens induces specific local and systemic immune responses

2. Overproducing the BAM complex improves secretion of difficult-to-secrete recombinant autotransporter chimeras

3. Heterologous Display of Chlamydia trachomatis PmpD Passenger at the Surface of Salmonella OMVs

4. Exploring metal availability in the natural niche of Streptococcus pneumoniae to discover potential vaccine antigens

5. Overexpression of the Bam Complex Improves the Production of Chlamydia trachomatis MOMP in the E. coli Outer Membrane

6. Combining Protein Ligation Systems to Expand the Functionality of Semi-Synthetic Outer Membrane Vesicle Nanoparticles

7. Mutagenesis-Based Characterization and Improvement of a Novel Inclusion Body Tag

8. Comparing autotransporter β-domain configurations for their capacity to secrete heterologous proteins to the cell surface.

9. Overproducing the BAM complex improves secretion of difficult-to-secrete recombinant autotransporter chimeras

10. Inhibition of autotransporter biogenesis by small molecules

11. Exploring metal availability in the natural niche of Streptococcus pneumoniae to discover potential vaccine antigens

12. On display

13. Bacterial inclusion bodies function as vehicles for dendritic cell-mediated T cell responses

14. Mutagenesis-Based Characterization and Improvement of a Novel Inclusion Body Tag

15. Highly conserved nucleotide phosphatase essential for membrane lipid homeostasis inStreptococcus pneumoniae

16. Display of recombinant proteins on bacterial outer membrane vesicles by using protein ligation

17. Comparing autotransporter β-domain configurations for their capacity to secrete heterologous proteins to the cell surface

18. Salmonella outer membrane vesicles displaying high densities of pneumococcal antigen at the surface offer protection against colonization

19. Autotransporter-based antigen display in bacterial ghosts

20. Application of an E. coli signal sequence as a versatile inclusion body tag

21. Highly conserved nucleotide phosphatase essential for membrane lipid homeostasis in Streptococcus pneumoniae

22. A conserved aromatic residue in the autochaperone domain of the autotransporter Hbp is critical for initiation of outer membrane translocation

23. The Bam (Omp85) complex is involved in secretion of the autotransporter haemoglobin protease

24. An autotransporter display platform for the development of multivalent recombinant bacterial vector vaccines

25. Decoration of outer membrane vesicles with multiple antigens using an autotransporter approach

26. A structurally informed autotransporter platform for efficient heterologous protein secretion and display

27. Extracellular production of recombinant proteins using bacterial autotransporters

28. YidC is in involved in the biogenesis of the secreted autotransporter Hemoglobin Protease

29. Trigger factor interacts with the signal peptide of nascent Tat substrates but does not play a critical role in tat-mediated export

30. Type V secretion: From biogenesis to biotechnology

32. Overexpression of the Bam Complex Improves the Production of Chlamydia trachomatis MOMP in the E. coli Outer Membrane.

33. Combining Protein Ligation Systems to Expand the Functionality of Semi-Synthetic Outer Membrane Vesicle Nanoparticles.

34. Inhibition of autotransporter biogenesis by small molecules.

35. Comparing autotransporter β-domain configurations for their capacity to secrete heterologous proteins to the cell surface.

36. Highly conserved nucleotide phosphatase essential for membrane lipid homeostasis in Streptococcus pneumoniae.

37. The high prevalence of serine protease autotransporters of Enterobacteriaceae (SPATEs) in Escherichia coli causing neonatal septicemia.

38. Intradermal administration of novel particulate Chlamydia trachomatis vaccine candidates drives protective immune responses.

39. Reports from Abera Bioscience AB Add New Data to Research in Chlamydia trachomatis (Overexpression of the Bam Complex Improves the Production of * * Chlamydia trachomatis* * MOMP in the * * E. coli* * Outer Membrane)

40. Abera Bioscience AB Researchers Have Published New Study Findings on Vaccines (Combining Protein Ligation Systems to Expand the Functionality of Semi-Synthetic Outer Membrane Vesicle Nanoparticles)

41. Study Results from Abera Bioscience AB Broaden Understanding of Biotechnology (Mutagenesis-Based Characterization and Improvement of a Novel Inclusion Body Tag)

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