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834 results on '"proton motive force"'

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1. Plasma membrane H+-ATPases in mineral nutrition and crop improvement.

3. Enhancing Escherichia coli abiotic stress resistance through ornithine lipid formation.

4. Molecular Genetic Dissection of the Regulatory Network of Proton Motive Force in Chloroplasts.

5. Citrate metabolism in lactic acid bacteria: is there a beneficial effect for Oenococcus oeni in wine?

6. Cellular and Enzymatic Determinants Impacting the Exolytic Action of an Anti-Staphylococcal Enzybiotic.

7. Auxin transport at the endoplasmic reticulum: roles and structural similarity of PIN-FORMED and PIN-LIKES.

8. Electrophysiological functions of microbes

9. Bioenergetics

10. ATPase

11. Proton Motive Force

12. Citrate metabolism in lactic acid bacteria: is there a beneficial effect for Oenococcus oeni in wine?

13. Antibacterial activity and mechanisms of α-terpineol against foodborne pathogenic bacteria.

14. Alkaline arginine promotes the gentamicin-mediated killing of drug-resistant Salmonella by increasing NADH concentration and proton motive force.

15. Substrate targeting and recognition in the flagellar type III secretion pathway

16. An overview of ATP synthase, inhibitors, and their toxicity

17. Host cell sensing and restoration of mitochondrial function and metabolism within Helicobacter pylori VacA intoxicated cells

18. Maintenance and generation of proton motive force are both essential for expression of phenotypic antibiotic tolerance in bacteria

19. Virulence and Metabolism Crosstalk: Impaired Activity of the Type Three Secretion System (T3SS) in a Pseudomonas aeruginosa Crc-Defective Mutant.

20. Ciprofloxacin and Tetracycline Resistance Cause Collateral Sensitivity to Aminoglycosides in Salmonella Typhimurium.

21. An update on ATP synthase inhibitors: A unique target for drug development in M. tuberculosis.

22. ATP yield of plant respiration: potential, actual and unknown.

23. Bacterial proton motive force as an unprecedented target to control antimicrobial resistance.

25. Torque generation mechanism in Fo motor of ATP synthase elucidated by free-energy and Coulomb-energy landscapes along the c-ring rotation.

26. A mini-review: environmental and metabolic factors affecting aminoglycoside efficacy.

27. Mechanism of Synergy between Piceatannol and Ciprofloxacin against Staphylococcus aureus.

31. Bioenergetic State of Escherichia coli Controls Aminoglycoside Susceptibility

32. Measuring Liver Mitochondrial Oxygen Consumption and Proton Leak Kinetics to Estimate Mitochondrial Respiration in Holstein Dairy Cattle.

33. Pixantrone Sensitizes Gram-Negative Pathogens to Rifampin

34. Activation mechanism of the bacterial flagellar dual-fuel protein export engine

35. Enhanced abundance and activity of the chloroplast ATP synthase in rice through the overexpression of the AtpD subunit.

36. Insights on the regulation of photosynthesis in pea leaves exposed to oscillating light.

37. Macromolecular condensation organizes nucleolar sub-phases to set up a pH gradient

38. Citrate metabolism in lactic acid bacteria: is there a beneficial effect for Oenococcus oeni in wine?

39. The interplay between LHCSR and PSBS proteins provides photoprotection in Chlamydomonas reinhardtii pgr5 mutant under high light.

40. What causes cardiac mitochondrial failure at high environmental temperatures?

41. Translation arrest cancellation of VemP, a secretion monitor in Vibrio, is regulated by multiple cis and trans factors, including SecY.

44. Clostridioides difficile Modifies its Aromatic Compound Metabolism in Response to Amidochelocardin-Induced Membrane Stress

45. Ciprofloxacin and Tetracycline Resistance Cause Collateral Sensitivity to Aminoglycosides in Salmonella Typhimurium

46. Virulence and Metabolism Crosstalk: Impaired Activity of the Type Three Secretion System (T3SS) in a Pseudomonas aeruginosa Crc-Defective Mutant

47. ATP is not essential for cadaverine production by Escherichia coli whole-cell bioconversion.

49. Interaction between glycolipid MPIase and proteinaceous factors during protein integration into the cytoplasmic membrane of E. coli

50. Proton Motive Force Inhibitors Are Detrimental to Methicillin-Resistant Staphylococcus aureus Strains

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