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32 results on '"Adam Driks"'

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1. Characterization of Bacillus anthracis Spore Proteins Using a Nanoscaffold Vaccine Platform

2. Coordinated Assembly of the Bacillus anthracis Coat and Exosporium during Bacterial Spore Outer Layer Formation

3. An experimentally supported model of the Bacillus subtilis global transcriptional regulatory network

4. The Direct Interaction between Two Morphogenetic Proteins Is Essential for Spore Coat Formation in Bacillus subtilis.

5. Role of novel polysaccharide layers in assembly of the exosporium, the outermost protein layer of the Bacillus anthracis spore

6. Diversity and evolutionary dynamics of spore-coat proteins in spore-forming species of Bacillales

7. Characterization of Bacillus anthracis Spore Proteins Using a Nanoscaffold Vaccine Platform

8. Contributions of crust proteins to spore surface properties inBacillus subtilis

9. Poly(3-hydroxybutyrate) fuels the tricarboxylic acid cycle andde novolipid biosynthesis duringBacillus anthracissporulation

10. Enhancement of antigen-specific CD4+ and CD8+ T cell responses using a self-assembled biologic nanolipoprotein particle vaccine

11. Expansion of the Spore Surface Polysaccharide Layer in Bacillus subtilis by Deletion of Genes Encoding Glycosyltransferases and Glucose Modification Enzymes

12. Culturability of Bacillus spores on aerosol collection filters exposed to airborne combustion products of Al, Mg, and B·Ti

13. Coordinated Assembly of the Bacillus anthracis Coat and Exosporium during Bacterial Spore Outer Layer Formation

14. Ultrastructural analysis of spores from diverse Bacillales species isolated from Brazilian soil

15. Protein Synthesis during Germination: Shedding New Light on a Classical Question

16. Poly(3-hydroxybutyrate) fuels the tricarboxylic acid cycle and de novo lipid biosynthesis during Bacillus anthracis sporulation

17. The Bacterial Spore : From Molecules to Systems

18. An improved protocol for harvesting Bacillus subtilis colony biofilms

19. Enhancement of antigen-specific CD4

20. Surviving Between Hosts: Sporulation and Transmission

22. The Spore Coat

23. Novel Formulation to Destroy Biothreat Agents

24. Genome Diversity of Spore-Forming Firmicutes

25. An experimentally supported model of the Bacillus subtilis global transcriptional regulatory network

26. Analysis of Bacterial Communities during Clostridium difficile Infection in the Mouse

27. The Direct Interaction between Two Morphogenetic Proteins Is Essential for Spore Coat Formation in Bacillus subtilis

28. Scaling up nanoscale water-driven energy conversion into evaporation-driven engines and generators

29. Involvement of Coat Proteins in Bacillus subtilis Spore Germination in High-Salinity Environments

30. Understanding of the importance of the spore coat structure and pigmentation in theBacillus subtilisspore resistance to low-pressure plasma sterilization

31. Use of biologic nanolipoprotein particles containing monophosphoryl lipid A as a novel intranasal vaccine platform for Bacillus anthracis

32. Understanding of the importance of the spore coat structure and pigmentation in the Bacillus subtilis spore resistance to low-pressure plasma sterilization.

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