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Article title matches

  1. Category:Photodissociation (48 bytes)
    1: List of pages with the keyword Photodissociation
  2. Category:Co photodissociation (51 bytes)
    1: List of pages with the keyword Co photodissociation

Page text matches

  1. 1dy7 (5,090 bytes)
    24: ...(0.5 proton per active site at pH 7.5-8.5). After photodissociation, the CO ligand recombined at a rate of 12 s(-1) (...
  2. 2bw9 (4,888 bytes)
    24: ...Mb) mutant L29W from nanoseconds to seconds after photodissociation of carbon monoxide (CO) from the heme iron by nan...
  3. 2bwh (4,915 bytes)
    24: ...Mb) mutant L29W from nanoseconds to seconds after photodissociation of carbon monoxide (CO) from the heme iron by nan...
  4. 1j3y (7,584 bytes)
    26: ... human Hb at cryogenic temperatures (25-35 K). On photodissociation of CO, structural changes involving the heme and ...
  5. 1j3z (7,589 bytes)
    26: ... human Hb at cryogenic temperatures (25-35 K). On photodissociation of CO, structural changes involving the heme and ...
  6. 1j40 (7,590 bytes)
    26: ... human Hb at cryogenic temperatures (25-35 K). On photodissociation of CO, structural changes involving the heme and ...
  7. 1j41 (7,585 bytes)
    26: ... human Hb at cryogenic temperatures (25-35 K). On photodissociation of CO, structural changes involving the heme and ...
  8. 2grf (4,115 bytes)
    24: ...in real time, from 5 ns to 80 micros after ligand photodissociation. A tertiary intermediate structure forms rapidly ...
  9. 2grh (4,144 bytes)
    24: ...in real time, from 5 ns to 80 micros after ligand photodissociation. A tertiary intermediate structure forms rapidly ...
  10. 2grz (4,069 bytes)
    24: ...in real time, from 5 ns to 80 micros after ligand photodissociation. A tertiary intermediate structure forms rapidly ...
  11. 1abs (4,103 bytes)
    24: ...nd unligated myoglobin structures reveals that on photodissociation of the CO, the haem 'domes', the iron moves parti...
  12. 1ajg (3,946 bytes)
    24: ... and molecular dynamics simulations of the ligand photodissociation and binding processes in haem proteins.
  13. 1ajh (3,962 bytes)
    24: ... and molecular dynamics simulations of the ligand photodissociation and binding processes in haem proteins.
  14. 1do1 (4,529 bytes)
    24: ...ind by thermally activated barrier crossing. Upon photodissociation above 180 K, ligands escape from the distal pocke...
  15. 1do3 (4,486 bytes)
    24: ...ind by thermally activated barrier crossing. Upon photodissociation above 180 K, ligands escape from the distal pocke...
  16. 1do4 (4,550 bytes)
    24: ...ind by thermally activated barrier crossing. Upon photodissociation above 180 K, ligands escape from the distal pocke...
  17. 1do7 (4,572 bytes)
    24: ...ind by thermally activated barrier crossing. Upon photodissociation above 180 K, ligands escape from the distal pocke...
  18. 2r4w (4,218 bytes)
    24: ...hemoglobin of Scapharca inaequivalvis (HbI) after photodissociation. By combining these studies with X-ray crystallog...
  19. 2r4x (4,221 bytes)
    24: ...hemoglobin of Scapharca inaequivalvis (HbI) after photodissociation. By combining these studies with X-ray crystallog...
  20. 2r4y (4,162 bytes)
    24: ...hemoglobin of Scapharca inaequivalvis (HbI) after photodissociation. By combining these studies with X-ray crystallog...

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