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1. Carbon isotope fractionation by an ancestral rubisco suggests that biological proxies for CO 2 through geologic time should be reevaluated

3. Trajectories for the evolution of bacterial CO 2 -concentrating mechanisms

4. Trajectories for the evolution of bacterial CO

5. Optical O

6. Optical O2 sensors also respond to redox active molecules commonly secreted by bacteria

7. Uniform binding and negative catalysis at the origin of enzymes

8. Carbon isotope fractionation by an ancestral rubisco suggests biological proxies for CO2through geologic time should be re-evaluated

9. Trajectories for the evolution of bacterial CO2-concentrating mechanisms

10. Phosphoglycolate salvage in a chemolithoautotroph using the Calvin cycle

11. Cell biology of photosynthesis over geologic time

12. Microbial communities: The metabolic rate is the trait

13. Anthroponumbers.org: A quantitative database of human impacts on Planet Earth

14. eQuilibrator 3.0: a database solution for thermodynamic constant estimation

15. Tools for interpretation of wastewater SARS-CoV-2 temporal and spatial trends demonstrated with data collected in the San Francisco Bay Area

16. Protein cost minimization promotes the emergence of coenzyme redundancy

17. Interpretation of temporal and spatial trends of SARS-CoV-2 RNA in San Francisco Bay Area wastewater

18. Genome Sequencing of Sewage Detects Regionally Prevalent SARS-CoV-2 Variants

19. The total number and mass of SARS-CoV-2 virions

20. Functional reconstitution of a bacterial CO2 concentrating mechanism in Escherichia coli

22. Functional reconstitution of a bacterial CO2concentrating mechanism inE. coli

23. Photorespiration pathways in a chemolithoautotroph

25. DABs are inorganic carbon pumps found throughout prokaryotic phyla

26. Global characterization of in vivo enzyme catalytic rates and their correspondence to in vitro k cat measurements

27. Revisiting Trade-offs between Rubisco Kinetic Parameter

28. Genome-wide screening reveals a novel class of carbonic anhydrase-like inorganic carbon pumps in chemoautotrophic bacteria

29. Revisiting tradeoffs in Rubisco kinetic parameters

30. Learning to Build a β-Carboxysome

31. Quantum chemistry reveals the thermodynamic principles of redox biochemistry

32. The quantified cell

33. Design and analysis of metabolic pathways supporting formatotrophic growth for electricity-dependent cultivation of microbes

34. pH determines the energetic efficiency of the cyanobacterial CO 2 concentrating mechanism

35. The stringent response regulates adaptation to darkness in the cyanobacterium Synechococcus elongatus

36. Profiling of engineering hotspots identifies an allosteric CRISPR-Cas9 switch

37. Thermodynamic constraints shape the structure of carbon fixation pathways

38. Rethinking glycolysis: on the biochemical logic of metabolic pathways

39. An integrated open framework for thermodynamics of reactions that combines accuracy and coverage

40. eQuilibrator--the biochemical thermodynamics calculator

41. Quantum chemistry reveals thermodynamic principles of redox biochemistry

42. Rapid construction of metabolite biosensors using domain-insertion profiling

43. Visual account of protein investment in cellular functions

44. A note on the kinetics of enzyme action: a decomposition that highlights thermodynamic effects

45. Glycolytic strategy as a tradeoff between energy yield and protein cost

46. Hydrophobicity and charge shape cellular metabolite concentrations

47. Nearest Neighbor Networks: clustering expression data based on gene neighborhoods

48. Pathway Thermodynamics Highlights Kinetic Obstacles in Central Metabolism

49. Spanning high-dimensional expression space using ribosome-binding site combinatorics

50. Highly active rubiscos discovered by systematic interrogation of natural sequence diversity

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