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1. Genome‐scale metabolic modeling reveals key features of a minimal gene set

2. Bacterial fitness landscapes stratify based on proteome allocation associated with discrete aero-types.

3. Adaptations of Escherichia coli strains to oxidative stress are reflected in properties of their structural proteomes

4. Structure of galactarate dehydratase, a new fold in an enolase involved in bacterial fitness after antibiotic treatment

5. Expanding the uses of genome‐scale models with protein structures

6. Cellular responses to reactive oxygen species are predicted from molecular mechanisms

7. A computational knowledge-base elucidates the response of Staphylococcus aureus to different media types.

8. Mechanisms for Benzene Dissociation through the Excited State of T4 Lysozyme L99A Mutant

9. Machine learning applied to enzyme turnover numbers reveals protein structural correlates and improves metabolic models.

10. Escherichia coli B2 strains prevalent in inflammatory bowel disease patients have distinct metabolic capabilities that enable colonization of intestinal mucosa

11. Systematic discovery of uncharacterized transcription factors in Escherichia coli K-12 MG1655

12. Machine learning and structural analysis of Mycobacterium tuberculosis pan-genome identifies genetic signatures of antibiotic resistance.

13. ssbio: a Python framework for structural systems biology

14. Recon3D enables a three-dimensional view of gene variation in human metabolism.

15. The Staphylococcus aureus Two-Component System AgrAC Displays Four Distinct Genomic Arrangements That Delineate Genomic Virulence Factor Signatures

16. Thermosensitivity of growth is determined by chaperone-mediated proteome reallocation

17. Global transcriptional regulatory network for Escherichia coli robustly connects gene expression to transcription factor activities

18. Unique attributes of cyanobacterial metabolism revealed by improved genome-scale metabolic modeling and essential gene analysis

19. Systems biology of the structural proteome

20. A Multi-scale Computational Platform to Mechanistically Assess the Effect of Genetic Variation on Drug Responses in Human Erythrocyte Metabolism.

21. Probing the Selectivity and Protein⋅Protein Interactions of a Nonreducing Fungal Polyketide Synthase Using Mechanism-Based Crosslinkers

24. Understanding genetic variation in the proteome: a multi-scale structural systems biology toolkit

25. Genome-scale metabolic modeling reveals key features of a minimal gene set

27. Systematic discovery of uncharacterized transcription factors inEscherichia coliK-12 MG1655

30. Cellular responses to reactive oxygen species can be predicted on multiple biological scales from molecular mechanisms

33. Thermosensitivity of growth is determined by chaperone-mediated proteome reallocation.

34. Global transcriptional regulatory network for Escherichia coli robustly connects gene expression to transcription factor activities.

39. <italic>Escherichia coli</italic> B2 strains prevalent in inflammatory bowel disease patients have distinct metabolic capabilities that enable colonization of intestinal mucosa.

41. Establishing comprehensive quaternary structural proteomes from genome sequence.

42. Establishing comprehensive quaternary structural proteomes from genome sequence.

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