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1. Physicochemical homeostasis in bacteria.

2. In silico method for selecting residue pairs for single-molecule microscopy and spectroscopy.

3. (Membrane) Protein Production in Context.

4. How crowded is the prokaryotic cytoplasm?

5. Quantitative Analysis of Membrane Protein Transport Across the Nuclear Pore Complex.

6. Functional reconstitution and osmoregulatory properties of the ProU ABC transporter from Escherichia coli.

7. Hydrophobie gating of mechanosensitive channel of large conductance evidenced by single-subunit resolution.

8. The transport of integral membrane proteins across the nuclear pore complex.

9. Macromolecule diffusion and confinement in prokaryotic cells

10. The Role of Biomacromolecular Crowding, Ionic Strength, and Physicochemical Gradients in the Complexities of Life's Emergence.

11. In Vitro Functional Characterization of BtuCD-F, the Escherichia coli ABC Transporter for Vitamin B12 Uptake.

12. Electrochemical structure of the crowded cytoplasm

13. Substrate Specificity and Ionic Regulation of GlnPQ from Lactococcus lactis.

14. Bacterial osmosensing: roles of membrane structure and electrostatics in lipid–protein and protein–protein interactions

15. How do membrane proteins sense water stress?

16. Osmoregulated ABC-transport system of Lactococcus lactis senses water stress via changes in the physical state of the membrane.

17. A spectroscopic assay for the analysis of carbohydrate transport reactions.

18. Glycine betaine transport in Lactococcus lactis is osmotically regulated at the level of....

19. Uniport of monoanionic L-malate in membrane vesicles from Leuconostoc oenos.

20. The location of redox-sensitive groups in the carrier protein of proline at the outer and inner surface of the membrane in <em>Escherichia coli</em>.

21. Uniport of citrate and proton consumption in citrate metabolism generates a proton motive force...

22. Regulation of compatible solute accumulation in bacteria.

23. High-throughput cloning and expression in recalcitrant bacteria.

24. A Missing Link in Membrane Protein Evolution.

25. Fitness landscape of substrate-adaptive mutations in evolved amino acidpolyamine-organocation transporters.

26. The substrate-binding domains of the osmoregulatory ABC importer OpuA transiently interact.

27. The F- or V-type Na+-ATPase of the thermophilic bacterium Clostridium fervidus.

28. Energy coupling of membrane transport and efficiency of sucrose dissimilation in yeast.

29. Dynamic structure of E. coli cytoplasm: supramolecular complexes and cell aging impact spatial distribution and mobility of proteins.

30. Macromolecular Crowding, Phase Separation, and Homeostasis in the Orchestration of Bacterial Cellular Functions.

32. Kinetic Modelling of Transport Inhibition by Substrates in ABC Importers.

33. Organic field-effect transistor-based biosensors functionalized with protein receptors.

34. Coupling efficiency of secondary active transporters.

35. Response.

36. Simulation-based Reconstructed Diffusion unveils the effect of aging on protein diffusion in Escherichia coli.

37. Ribosome surface properties may impose limits on the nature of the cytoplasmic proteome.

38. An updated structural classification of substrate-binding proteins.

40. 9th International Symposium on Lactic Acid Bacteria.

41. Super-resolving microscopy reveals the localizations and movement dynamics of stressosome proteins in Listeria monocytogenes.

42. Ergosterol promotes aggregation of natamycin in the yeast plasma membrane.

43. The Structure and Function of the Bacterial Osmotically Inducible Protein Y.

44. Emergence of life: Physical chemistry changes the paradigm.

45. On the role of individual subunits in MscL gating: "All for one, one for all?".

46. Genome Sequences of Lactococcus lactis MG1363 (Revised) and NZ9000 and Comparative Physiological Studies.

47. Evolved Lactococcus lactis Strains for Enhanced Expression of Recombinant Membrane Proteins

49. Engineering of Ion Sensing by the Cystathionine β-Synthase Module of the ABC Transporter OpuA.

50. Domain complementation studies reveal residues critical for the activity of the mannitol permease from Escherichia coli

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