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  1. The archaeal triphosphate tunnel metalloenzyme SaTTM defines structural determinants for the diverse activities in the CYTH protein family
  2. NMR solution structures of Runella slithyformis RNA 2′-phosphotransferase Tpt1 provide insights into NAD+ binding and specificity
  3. Structure of 3′-PO4/5′-OH RNA ligase RtcB in complex with a 5′-OH oligonucleotide
  4. The structure of the periplasmic FlaG–FlaF complex and its essential role for archaellar swimming motility
  5. Atomic structures of the RNA end-healing 5′-OH kinase and 2′,3′-cyclic phosphodiesterase domains of fungal tRNA ligase: conformational switches in the kinase upon binding of the GTP phosphate donor
  6. NAD+-dependent RNA terminal 2′ and 3′ phosphomonoesterase activity of a subset of Tpt1 enzymes
  7. Structure of tRNA splicing enzyme Tpt1 illuminates the mechanism of RNA 2′-PO4 recognition and ADP-ribosylation
  8. Structure and two-metal mechanism of fungal tRNA ligase
  9. Crystal structure of Archaeal Biofilm Regulator (AbfR2) from Sulfolobus acidocaldarius
  10. Crystal structure of an Lrs14-like archaeal biofilm regulator fromSulfolobus acidocaldarius
  11. NAD+-dependent synthesis of a 5′-phospho-ADP-ribosylated RNA/DNA cap by RNA 2′-phosphotransferase Tpt1
  12. Structural and evolutionary aspects of algal blue light receptors of the cryptochrome and aureochrome type
  13. Wing phosphorylation is a major functional determinant of the Lrs14-type biofilm and motility regulator AbfR1 in Sulfolobus acidocaldarius
  14. Allosteric communication between DNA-binding and light-responsive domains of diatom class I aureochromes
  15. Structure of a Native-like Aureochrome 1a LOV Domain Dimer from Phaeodactylum tricornutum
  16. ATP binding by FlaH is important for its binding to FlaI
  17. FlaF Is a β-Sandwich Protein that Anchors the Archaellum in the Archaeal Cell Envelope by Binding the S-Layer Protein
  18. Insights into subunit interactions in the Sulfolobus acidocaldarius archaellum cytoplasmic complex
  19. FlaX, A Unique Component of the Crenarchaeal Archaellum, Forms Oligomeric Ring-shaped Structures and Interacts with the Motor ATPase FlaI