241 results on '"McBride, Mark J."'
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2. Bacteria that Glide with Helical Tracks
3. Bacteroidetes Gliding Motility and the Type IX Secretion System
4. The Family Cytophagaceae
5. The Family Flavobacteriaceae
6. Nonflagellar Bacterial Motility
7. Secreted peptidases contribute to virulence of fish pathogen Flavobacterium columnare
8. The unusual cellulose utilization system of the aerobic soil bacterium Cytophaga hutchinsonii
9. Flavobacterium columnare ferric iron uptake systems are required for virulence
10. Siderophores Produced by the Fish Pathogen Flavobacterium columnare Strain MS-FC-4 Are Not Essential for Its Virulence
11. A Multi-Rail Structure in the Cell Envelope for the Bacteroidetes Gliding Machinery
12. Germination and physiological properties of Frankia spores
13. Helical flow of surface protein required for bacterial gliding motility
14. Outer membrane proteins related to SusC and SusD are not required for Cytophaga hutchinsonii cellulose utilization
15. Type B CTD Proteins Secreted by the Type IX Secretion System Associate with PorP-like Proteins for Cell Surface Anchorage
16. Dynamic proton-dependent motors power type IX secretion and gliding motility in Flavobacterium
17. A Protein Secretion System Linked to Bacteroidete Gliding Motility and Pathogenesis
18. Type IX Secretion System Effectors and Virulence of the Model Flavobacterium columnare Strain MS-FC-4
19. Deletion of the Cytophaga hutchinsonii type IX secretion system gene sprP results in defects in gliding motility and cellulose utilization
20. In situ imaging of bacterial outer membrane projections and associated protein complexes using electron cryo-tomography
21. ``Frizzy'' Aggregation Genes of the Gliding Bacterium Myxococcus xanthus Show Sequence Similarities to the Chemotaxis Genes of Enteric Bacteria
22. Author response: In situ imaging of bacterial outer membrane projections and associated protein complexes using electron cryo-tomography
23. Author Reply to Peer Reviews of In situ imaging of bacterial membrane projections and associated protein complexes using electron cryo-tomography
24. In situ imaging of bacterial membrane projections and associated protein complexes using electron cryo-tomography
25. The Monoheme c Subunit of Respiratory Alternative Complex III Is Not Essential for Electron Transfer to Cytochrome aa 3 in Flavobacterium johnsoniae
26. Flavobacterium johnsoniae gldN and gldO are partially redundant genes required for gliding motility and surface localization of Spr
27. Cooperation between Different CRISPR-Cas Types Enables Adaptation in an RNA-Targeting System
28. SprB is a cell surface component of the Flavobacterium johnsoniae gliding motility machinery
29. Cell surface filaments of the gliding bacterium Flavobacterium johnsoniae revealed by cryo-electron tomography
30. Flavobacterium johnsoniae SprA is a cell surface protein involved in gliding motility
31. In situ structure and organisation of the type IX secretion system
32. Mutations in Flavobacterium johnsoniae secDF result in defects in gliding motility and chitin utilization
33. Flavobacterium johnsoniae gliding motility genes identified by mariner mutagenesis
34. Flavobacterium johnsoniae GldJ is a lipoprotein that is required for gliding motility
35. GldI is a lipoprotein that is required for Flavobacterium johnsoniae gliding motility and chitin utilization
36. Flavobacterium johnsoniae GldH is a lipoprotein that is required for gliding motility and chitin utilization
37. Mutations in Flavobacterium johnsoniae gldF and gldG disrupt gliding motility and interfere with membrane localization of GldA
38. Cloning and characterization of the Flavobacterium johnsoniae gliding motility genes gldD and gldE
39. Bacterial Gliding Motility: Multiple Mechanisms for Cell Movement over Surfaces
40. The Type IX Secretion System Is Required for Virulence of the Fish Pathogen Flavobacterium psychrophilum
41. Cooperation between CRISPR-Cas types enables adaptation in an RNA-targeting system
42. Transposon insertions in the Flavobacterium johnsoniae ftsX gene disrupt gliding motility and cell division
43. Cloning and characterization of the Flavobacterium johnsoniae gliding-motility genes gldB and gldC
44. Cloning and characterization of the Flavobacterium johnsoniae (Cytophaga johnsonae) gliding motility gene, gldA
45. Development of Techniques to genetically manipulate members of the genera Cytophaga, Flavobacterium, Flexibacter, and Sporocytophaga
46. FrzCD, a methyl-accepting taxis protein from Myxococcus xanthus, shows modulated methylation during fruiting body formation
47. Methylation of FrzCD, a methyl-accepting taxis protein of Myxococcus xanthus, is correlated with factors affecting cell behavior
48. The Carboxy-Terminal Region of Flavobacterium johnsoniae SprB Facilitates Its Secretion by the Type IX Secretion System and Propulsion by the Gliding Motility Machinery
49. Carrageenan catabolism is encoded by a complex regulon in marine heterotrophic bacteria
50. Draft Genome Sequence of the Fish Pathogen Flavobacterium columnare Strain MS-FC-4
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