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1. An exhaustive multiple knockout approach to understanding cell wall hydrolase function in Bacillus subtilis

2. Clonal population expansion of Staphylococcus aureus occurs due to escape from a finite number of intraphagocyte niches

3. The roles of GpsB and DivIVA in Staphylococcus aureus growth and division

4. The Staphylococcus aureus cell division protein, DivIC, interacts with the cell wall and controls its biosynthesis

5. Penicillin-Binding Protein 1 (PBP1) of Staphylococcus aureus Has Multiple Essential Functions in Cell Division

6. The W-Acidic Motif of Histidine Kinase WalK Is Required for Signaling and Transcriptional Regulation in Streptococcus mutans

7. The Role of Macrophages in Staphylococcus aureus Infection

8. Identification of a Quorum Sensing-Dependent Communication Pathway Mediating Bacteria-Gut-Brain Cross Talk

9. Scratching the Surface: Bacterial Cell Envelopes at the Nanoscale

10. Molecular imaging of glycan chains couples cell-wall polysaccharide architecture to bacterial cell morphology

11. A Genome-Wide Screen Identifies Factors Involved in S. aureus-Induced Human Neutrophil Cell Death and Pathogenesis

12. Impact of the β-Lactam Resistance Modifier (−)-Epicatechin Gallate on the Non-Random Distribution of Phospholipids across the Cytoplasmic Membrane of Staphylococcus aureus

13. Coordination of Chromosome Segregation and Cell Division in Staphylococcus aureus

14. Rpi-vnt1.1, a Tm-22 Homolog from Solanum venturii, Confers Resistance to Potato Late Blight

15. Mapping and Cloning of Late Blight Resistance Genes from Solanum venturii Using an Interspecific Candidate Gene Approach

16. Bacterial Cell Enlargement Requires Control of Cell Wall Stiffness Mediated by Peptidoglycan Hydrolases

18. Antibiotics Limit Adaptation of Drug-Resistant Staphylococcus aureus to Hypoxia

19. Correlative Super-Resolution Optical and Atomic Force Microscopy Reveals Relationships Between Bacterial Cell Wall Architecture and Synthesis in Bacillus subtilis

20. An Interplay of Multiple Positive and Negative Factors Governs Methicillin Resistance in Staphylococcus aureus

21. The Architecture of the Gram Positive Bacterial Cell Wall

23. Demonstration of the role of cell wall homeostasis in Staphylococcus aureus growth and the action of bactericidal antibiotics

24. PBP1 of Staphylococcus aureus has multiple essential functions in cell division

25. Correlative Super-Resolution Optical and Atomic Force Microscopy Reveals Relationships Between Bacterial Cell Wall Architecture and Synthesis in

26. Commensal bacteria augment Staphylococcus aureus infection by inactivation of phagocyte-derived reactive oxygen species

27. Evolution of tetracycline resistant S. aureus in hypoxia

28. Staphylococcus aureus: setting its sights on the human innate immune system

29. Demonstration of the role of cell wall homeostasis in

30. Human-specific staphylococcal virulence factors enhance pathogenicity in a humanised zebrafish C5a receptor model

31. Mononuclear ruthenium(ii) theranostic complexes that function as broad-spectrum antimicrobials in therapeutically resistant pathogens through interaction with DNA

32. Evolving MRSA: High-level β-lactam resistance in Staphylococcus aureus is associated with RNA Polymerase alterations and fine tuning of gene expression

33. Neutrophils use selective autophagy receptor Sqstm1/p62 to target Staphylococcus aureus for degradation in vivo in zebrafish

34. Polymersomes Eradicating Intracellular Bacteria

35. Human-specific staphylococcal virulence factors enhance pathogenicity in a humanised zebrafish C5a receptor model

36. Ruthenium based antimicrobial theranostics – using nanoscopy to identify therapeutic targets and resistance mechanisms in staphylococcus aureus

37. The Impact of Hypoxia on the Host-Pathogen Interaction between Neutrophils and

38. SosA inhibits cell division in Staphylococcus aureus in response to DNA damage

39. Neutrophils use selective autophagy receptor p62/SQSTM1 to target Staphylococcus aureus for degradation in vivo in zebrafish

40. Augmenting Staphylococcal infection: the importance of timing

41. A transgenic zebrafish line for in vivo visualisation of neutrophil myeloperoxidase

42. Staphylococcus aureus cell wall structure and dynamics during host-pathogen interaction

43. 2601. Identification of Staphylococcus aureus Genetic Factors Associatiated with the Subversion of Macrophage Phagosomal Acidification

44. Molecular imaging of glycan chains couples cell-wall polysaccharide architecture to bacterial cell morphology

45. Molecular coordination of Staphylococcus aureus cell division

46. Heterogeneous localisation of membrane proteins in Staphylococcus aureus

47. Construction and Use of Staphylococcus aureus Strains to Study Within-Host Infection Dynamics

48. Use of Larval Zebrafish Model to Study Within-Host Infection Dynamics

50. Use of Larval Zebrafish Model to Study Within-Host Infection Dynamics

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