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1. Going around the Kok cycle of the water oxidation reaction with femtosecond X-ray crystallography

2. Capturing the sequence of events during the water oxidation reaction in photosynthesis using XFELs

3. Untangling the sequence of events during the S 2 → S 3 transition in photosystem II and implications for the water oxidation mechanism

4. Structural isomers of the S 2 state in photosystem II: do they exist at room temperature and are they important for function?

5. Reply to Wang et al.: Clear evidence of binding of Ox to the oxygen-evolving complex of photosystem II is best observed in the omit map

6. Structural dynamics in the water and proton channels of photosystem II during the S2 to S3 transition

7. A Z‐Scheme‐Inspired Photobioelectrochemical H 2 O/O 2 Cell with a 1 V Open‐Circuit Voltage Combining Photosystem II and PbS Quantum Dots

8. Protein crystallization and initial neutron diffraction studies of the photosystem II subunit PsbO

9. Structural basis of light-harvesting in the photosystem II core complex

10. Assessment of the manganese cluster’s oxidation state via photoactivation of photosystem II microcrystals

11. Investigating the Structure and Dynamics of Apo‐Photosystem II

12. Crystallographic and Computational Analysis of the Barrel Part of the PsbO Protein of Photosystem II: Carboxylate–Water Clusters as Putative Proton Transfer Relays and Structural Switches

13. Front Cover: pH‐Dependent Protonation of Surface Carboxylate Groups in PsbO Enables Local Buffering and Triggers Structural Changes (ChemBioChem 11/2020)

14. Dynamic water bridging and proton transfer at a surface carboxylate cluster of photosystem II

15. Structures of the intermediates of Kok’s photosynthetic water oxidation clock

16. Concentric-flow electrokinetic injector enables serial crystallography of ribosome and photosystem II

17. Optimizing Crystal Size of Photosystem II by Macroseeding: Toward Neutron Protein Crystallography

18. Structural insights into the light-driven auto-assembly process of the water-oxidizing Mn4CaO5-cluster in photosystem II

20. Role of missing carotenoid in reducing the fluorescence of single monomeric photosystem II core complexes

21. Native-like Photosystem II Superstructure at 2.44 Å Resolution through Detergent Extraction from the Protein Crystal

22. Spectroscopic properties of photosystem II core complexes from Thermosynechococcus elongatus revealed by single-molecule experiments

23. Structural Changes of the Oxygen-evolving Complex in Photosystem II during the Catalytic Cycle

24. Simulations of the polarisation-dependent Raman intensity of -carotene in photosystem II crystals

25. Structure of photosystem II and substrate binding at room temperature

26. Structural Basis of Cyanobacterial Photosystem II Inhibition by the Herbicide Terbutryn

27. Polarised Raman measurements of β-carotene encapsulated in SWNTs

28. Crystal Structure of Monomeric Photosystem II from Thermosynechococcus elongatus at 3.6-Å Resolution

29. Recent Progress in the Crystallographic Studies of Photosystem II

30. Polarised Raman measurements on the core complex of crystallised photosystem II

31. Probing the Accessibility of the Mn4Ca Cluster in Photosystem II: Channels Calculation, Noble Gas Derivatization, and Cocrystallization with DMSO

32. Crystal structure of cyanobacterial photosystem II at 3.0 Å resolution: A closer look at the antenna system and the small membrane-intrinsic subunits

33. Cytochrome b 559 in Photosystem II

34. Spare quinones in the QB cavity of crystallized photosystem II from Thermosynechococcus elongatus

35. Where Water Is Oxidized to Dioxygen: Structure of the Photosynthetic Mn 4 Ca Cluster

36. Towards complete cofactor arrangement in the 3.0 Å resolution structure of photosystem II

37. The Antenna System of Photosystem II From Thermosynechococcus elongatus at 3.2 Å Resolution

38. Cyanobacterial Photosystem II at 3.2 Å resolution - the plastoquinone binding pockets

39. Purification, characterisation and crystallisation of photosystem II from Thermosynechococcus elongatus cultivated in a new type of photobioreactor

40. Crystal structure of cyanobacterial photosystem II at 3.2 Å resolution: a closer look at the Mn-cluster

41. Nitric Oxide-Induced Formation of the S-2 State in the Oxygen-Evolving Complex of Photosystem II from Synechococcus elongatus

42. Improvements in serial femtosecond crystallography of photosystem II by optimizing crystal uniformity using microseeding procedures

43. Room-temperature femtosecond X-ray crystallography of photosystem II

44. Taking snapshots of photosynthetic water oxidation using femtosecond X-ray diffraction and spectroscopy

45. Photosystem II single crystals studied by EPR spectroscopy at 94 GHz: The tyrosine radical Y\documentclass[12pt]{minimal}\usepackage{amsmath}\usepackage{wasysym} \usepackage{amsfonts} \usepackage{amssymb} \usepackage{amsbsy}\usepackage{mathrsfs}\setlength{\oddsidemargin}{-69pt}\begin{document}\begin{equation*}{\mathrm{_{D}^{{\bullet}}}}\end{equation*}\end{document}

46. Simultaneous femtosecond X-ray spectroscopy and diffraction of photosystem II at room temperature

47. Room temperature femtosecond X-ray diffraction of photosystem II microcrystals

48. Light-induced water oxidation in photosystem II

49. Light-induced quinone reduction in photosystem II

50. High-field 2H-Mims-ENDOR spectroscopy on PSII single crystals: hydrogen bonding of YD*

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