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2. Mechanosensitive channel gating by delipidation

8. The role of lipids in mechanosensation

11. How Functional Lipids Affect the Structure and Gating of Mechanosensitive MscS-like Channels.

13. Identification of two tetranuclear FeS clusters on the ferredoxin-type subunit of NADH:ubiquinone oxidoreductase (complex I)

14. Controlling Supramolecular Structures of Drugs by Light.

15. More Than Just Closed and Open: Unraveling a Mechanosensor.

16. The role of tryptophan residues in the function and stability of the mechanosensitive channel MscS from Escherichia coli

17. Structure of the Mechanosensitive Channel MscS Embedded in the Membrane Bilayer.

18. Interaction of the Mechanosensitive Channel, MscS, with the Membrane Bilayer through Lipid Intercalation into Grooves and Pockets.

19. Cell entry of a host-targeting protein of oomycetes requires gp96.

20. The Cryptococcus neoformans Titan cell is an inducible and regulated morphotype underlying pathogenesis.

21. Adenosine Monophosphate Binding Stabilizes the KTN Domain of the Shewanella denitrificans Kef Potassium Efflux System.

22. How do mechanosensitive channels sense membrane tension?

23. Properties of the Mechanosensitive Channel MscS Pore Revealed by Tryptophan Scanning Mutagenesis.

25. Salt Bridges Regulate Both Dimer Formation and Monomeric Flexibility in HdeB and May Have a Role in Periplasmic Chaperone Function

26. Sensing bilayer tension: bacterial mechanosensitive channels and their gating mechanisms.

27. Tryptophan in the Pore of the Mechanosensitive Channel MscS: ASSESSMENT OF PORE CONFORMATIONS BY FLUORESCENCE SPECTROSCOPY.

28. Structural basis for the oxidation of thiosulfate by a sulfur cycle enzyme.

29. The Catalytic Center in Nitrous Oxide Reductase, Cu[sub z], Is a Copper--Sulfide Cluster.

30. Search for novel redox groups in mitochondrial NADH: Ubiquinone oxidoreductase (complex I) by diode array UV/VIS spectroscopy.

31. Homologous bd oxidases share the same architecture but differ in mechanism.

33. Physiological Analysis of Bacterial Mechanosensitive Channels.

35. The Structure of YnaI Implies Structural and Mechanistic Conservation in the MscS Family of Mechanosensitive Channels.

36. KefF, the Regulatory Subunit of the Potassium Efflux System KefC, Shows Quinone Oxidoreductase Activity.

37. KTN (RCK) Domains Regulate K+ Channels and Transporters by Controlling the Dimer-Hinge Conformation

38. Long-term sublethal effects of carbon dioxide on Atlantic salmon smolts (Salmo salar L.): ion regulation, haematology, element composition, nephrocalcinosis and growth parameters

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