Chemical elements
  Vanadium
    Isotopes
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    PDB 1b8j-2i4e
    PDB 2jhr-6rsa
      2jhr
      2jj9
      2jlx
      2p7e
      2p8o
      2qwm
      2rar
      2rbk
      2v26
      2v6e
      2ycu
      3b5z
      3bz7
      3bz8
      3bz9
      3e81
      3f9b
      3gp5
      3gqi
      3gw8
      3i7z
      3i80
      3igc
      3mgv
      3myh
      3omx
      3p2u
      3qkq
      3rnt
      3zwu
      4dz6
      6rsa

Vanadium in PDB, part 2 (51-82), PDB files 2jhr - 6rsa






Experimental structures of coordination spheres of Vanadium (V) in bioorganic molecules from X-Ray and NMR experiments. Coordination spheres were calculated with 5.0 Angstroms radius around Vanadium atoms.
PDB files 51-82 (2jhr - 6rsa):
  1. 2jhr - Crystal Structure of Myosin-2 Motor Domain in Complex With Adp-Metavanadate and Pentabromopseudilin
  2. 2jj9 - Crystal Structure of Myosin-2 in Complex With Adp- Metavanadate
  3. 2jlx - Dengue Virus 4 NS3 Helicase in Complex With Ssrna and Adp- Vanadate
  4. 2p7e - Vanadate At the Active Site of A Small Ribozyme Suggests A Role For Water in Transition-State Stabilization
  5. 2p8o - Crystal Structure of A Benzohydroxamic Acid/Vanadate Complex Bound to Chymotrypsin A
  6. 2qwm - Crystal Structure of Bovine HSC70 (1-394AA)in the Adp*VI State
  7. 2rar - X-Ray Crystallographic Structures Show Conservation of A Trigonal- Bipyramidal Intermediate in A Phosphoryl-Transfer Superfamily.
  8. 2rbk - X-Ray Crystallographic Structures Show Conservation of A Trigonal- Bipyramidal Intermediate in A Phosphoryl-Transfer Superfamily.
  9. 2v26 - Myosin VI (Md) Pre-Powerstroke State (Mg.Adp.VO4)
  10. 2v6e - Protelomerase Telk Complexed With Substrate Dna
  11. 2ycu - Crystal Structure of Human Non Muscle Myosin 2C in Pre-Power Stroke State
  12. 3b5z - Crystal Structure of Msba From Salmonella Typhimurium With Adp Vanadate
  13. 3bz7 - Crystal Structures of (S)-(-)-Blebbistatin Analogs Bound to Dictyostelium Discoideum Myosin II
  14. 3bz8 - Crystal Structures of (S)-(-)-Blebbistatin Analogs Bound to Dictyostelium Discoideum Myosin II
  15. 3bz9 - Crystal Structures of (S)-(-)-Blebbistatin Analogs Bound to Dictyostelium Discoideum Myosin II
  16. 3e81 - Structure-Function Analysis of 2-Keto-3-Deoxy-D-Glycero-D-Galacto- Nononate-9-Phosphate (Kdn) Phosphatase Defines A New Clad Within the Type C0 Had Subfamily
  17. 3f9b - W354F Yersinia Enterocolitica Ptpase Complexed With Divanadate
  18. 3gp5 - Crystal Structure of Phosphoglyceromutase From Burkholderia Pseudomallei With 3-Phosphoglyceric Acid and Vanadate
  19. 3gqi - Crystal Structure of Activated Receptor Tyrosine Kinase in Complex With Substrates
  20. 3gw8 - Crystal Structure of Phosphoglyceromutase From Burkholderia Pseudomallei With Vanadate and Glycerol
  21. 3i7z - Protein Tyrosine Phosphatase 1B - Transition State Analog For the First Catalytic Step
  22. 3i80 - Protein Tyrosine Phosphatase 1B - Transition State Analog For the Second Catalytic Step
  23. 3igc - Smallpox Virus Topoisomerase-Dna Transition State
  24. 3mgv - Cre Recombinase-Dna Transition State
  25. 3myh - Insights Into The Importance Of Hydrogen Bonding in the Gamma- Phosphate Binding Pocket Of Myosin: Structural and Functional Studies of SER236
  26. 3omx - Crystal Structure of SSU72 With Vanadate Complex
  27. 3p2u - Crystal Structure of Phnp in Complex With Orthovanadate
  28. 3qkq - Protein Tyrosine Phosphatase 1B - W179F Mutant Bound With Vanadate
  29. 3rnt - Crystal Structure of Guanosine-Free Ribonuclease T1, Complexed With Vanadate(V), Suggests Conformational Change Upon Substrate Binding
  30. 3zwu - Pseudomonas Fluorescens Phox in Complex With Vanadate, A Transition State Analogue
  31. 4dz6 - Transition State Mimic of Nucleoside-Diphosphate Kinase From Borrelia Burgdorferi With Bound Vanadate and Adp
  32. 6rsa - Nuclear Magnetic Resonance and Neutron Diffraction Studies Of the Complex of Ribonuclease*A With Uridine Vanadate, A Transition-State Analogue


Acknowledgement

We would like to acknowledge that these pictures of PDB structures of Vanadium coordination spheres were produced with valuable advice from our colleagues from http://3dpdb.com.
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