231 results on '"Sorg, Joseph A."'
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2. The small acid-soluble proteins of spore-forming organisms: similarities and differences in function
3. Clostridioides difficile spore germination: initiation to DPA release
4. Clostridioides difficile bile salt hydrolase activity has substrate specificity and affects biofilm formation
5. The Impact of YabG Mutations on Clostridioides difficile Spore Germination and Processing of Spore Substrates.
6. The small acid-soluble proteins of Clostridioides difficile regulate sporulation in a SpoIVB2-dependent manner.
7. Cleavage of an engulfment peptidoglycan hydrolase by a sporulation signature protease in Clostridioides difficile.
8. Terbium chloride influences Clostridium difficile spore germination
9. A sporulation signature protease is required for assembly of the spore surface layers, germination and host colonization in Clostridioides difficile
10. Hierarchical recognition of amino acid co-germinants during Clostridioides difficile spore germination
11. A Clostridium difficile alanine racemase affects spore germination and accommodates serine as a substrate
12. The small acid-soluble proteins of Clostridioides difficile regulate sporulation in a SpoIVB2-dependent manner
13. Plasmid Sequence and Availability for an Improved Clostridioides difficile CRISPR-Cas9 Mutagenesis System
14. Clostridium difficile spore biology: sporulation, germination, and spore structural proteins
15. Editorial: Pathogenic clostridia
16. Small molecule inhibitor of lipoteichoic acid synthesis is an antibiotic for Gram-positive bacteria
17. Regulatory transcription factors of Clostridioides difficile pathogenesis with a focus on toxin regulation.
18. Clostridioides difficile bile salt hydrolase activity has substrate specificity and affects biofilm formation
19. Gut associated metabolites and their roles in Clostridioides difficile pathogenesis
20. Imaging Clostridioides difficile Spore Germination and Germination Proteins
21. Regulatory transcription factors of Clostridioides difficile pathogenesis with a focus on toxin regulation
22. Correction to: Protease-stable DARPins as promising oral therapeutics
23. Secretion Signal Recognition by YscN, the Yersinia Type III Secretion ATPase
24. Bile acid-independent protection against Clostridioides difficile infection
25. The small acid-soluble proteins of Clostridioides difficile are important for UV resistance and serve as a check point for sporulation
26. Clostridioides difficile SpoVAD and SpoVAE interact and are required for DPA uptake into spores
27. Inhibiting the initiation of clostridium difficile spore germination using analogs of chenodeoxycholic acid, a bile acid
28. Clostridioides difficile SpoVAD and SpoVAE interact and are required for DPA packaging into spores
29. The Selenophosphate Synthetase Gene, selD , Is Important for Clostridioides difficile Physiology
30. Impassable YscP substrates and their impact on the Yersinia enterocolitica type III secretion pathway
31. Bile salts and glycine as cogerminants for Clostridium difficile spores
32. Rejection of impassable substrates by Yersinia type III secretion machines
33. The secretion signal of YopN, a regulatory protein of the Yersinia enterocolitica type III secretion pathway
34. Binding of SycH chaperone to YscM1 and YscM2 activates effector yop expression in Yersinia enterocolitica
35. Microbial Bile Acid Metabolic Clusters: The Bouncers at the Bar
36. The selenophosphate synthetase, selD, is important for Clostridioides difficile physiology
37. Protease-stable DARPins as promising oral therapeutics
38. Reuterin disrupts Clostridioides difficile metabolism and pathogenicity through reactive oxygen species generation
39. Factors and Conditions That Impact Electroporation of Clostridioides difficile Strains
40. Regulation of peroxisome proliferator-activated receptor-β/δ by the APC/β-CATENIN pathway and nonsteroidal antiinflammatory drugs
41. Yersinia enterocolitica type III secretion of YopR requires a structure in its mRNA
42. Chenodeoxycholate is an inhibitor of Clostridium dificile spore germination
43. CRISPR Genome Editing Systems in the Genus Clostridium : a Timely Advancement
44. Editorial: Alternative Therapeutic Approaches For Multidrug Resistant Clostridium difficile
45. The requirement for co-germinants during Clostridium difficile spore germination is influenced by mutations in yabG and cspA
46. Role of the global regulator Rex in control of NAD+‐regeneration in Clostridioides (Clostridium) difficile
47. Role of Bile in Infectious Disease: the Gall of 7α-Dehydroxylating Gut Bacteria
48. Reuterin disrupts Clostridioides difficile metabolism and pathogenicity through reactive oxygen species generation.
49. Conservation of the “Outside-in” Germination Pathway in Paraclostridium bifermentans
50. The requirement for the amino acid co-germinant duringC. difficilespore germination is influenced by mutations inyabGandcspA
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