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4. Transcriptome analysis of sorbic acid-stressed Bacillus subtilis reveals a nutrient limitation response and indicates plasma membrane remodeling

5. Dissecting complex transcriptional responses using pathway-level scores based on prior information

8. Zinc stabilizes the SecB binding site of SecA

12. The low-affinity ATP binding site of the Escherichia coli secA dimer is localized at the subunit interface

13. Secondary transporters for citrate and the Mg2+-citrate complex in Bacillus subtilis are homologous proteins

19. In vitro data combined with human disease data to improve toxicological hazard assessment: the ASAT Knowledge Base

21. Comparative Analysis of Transcriptome and Fitness Profiles Reveals General and Condition-Specific Cellular Functions Involved in Adaptation to Environmental Change in Saccharomyces cerevisiae

29. List of Contributors

31. Cell wall construction in Saccharomyces cerevisiae.

32. Cellular Processes and Pathways That Protect Saccharomyces cerevisiaeCells against the Plasma Membrane-Perturbing Compound Chitosan

33. Transcriptional Response of Saccharomyces cerevisiaeto the Plasma Membrane-Perturbing Compound Chitosan

34. PrlA4 prevents the rejection of signal sequence defective preproteins by stabilizing theSecA-SecY interaction during the initiation of translocation.

35. Comparative analysis of transcriptome and fitness profiles reveals general and condition-specific cellular functions involved in adaptation to environmental change in Saccharomyces cerevisiae.

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